Result of GENSCAN for pF1KE1027
GENSCAN 1.0	Date run:  5-Nov-116	Time: 07:29:15

Sequence gi568815591r:100581722_100788111 : 206390 bp : 53.43% C+G : Isochore 3 (51 - 57 C+G%)

Parameter matrix: HumanIso.smat

Predicted genes/exons:

Gn.Ex Type S .Begin ...End .Len Fr Ph I/Ac Do/T CodRg P.... Tscr..
----- ---- - ------ ------ ---- -- -- ---- ---- ----- ----- ------

 1.04 Intr -    161     56  106  2  1   76  100   135 0.502  13.79
 1.03 Intr -    446    320  127  1  1   97   42   256 0.999  23.09
 1.02 Intr -    738    594  145  1  1   96   91   154 0.999  16.35
 1.01 Init -   4379   4160  220  2  1   53  105   311 0.976  26.28
 1.00 Prom -   6626   6587   40                              -9.26

 2.00 Prom +   6751   6790   40                              -6.20
 2.01 Init +   7920   7922    3  2  0   96   42     0 0.368  -3.87
 2.02 Intr +   8256   8354   99  2  0   85  105    35 0.976   5.71
 2.03 Intr +   8453   8594  142  1  1  124  -15    64 0.708   0.14
 2.04 Intr +   9148   9228   81  2  0   91   60    26 0.514   0.21
 2.05 Intr +   9946  10181  236  2  2  105   76   268 0.908  25.24
 2.06 Intr +  11062  11296  235  0  1   62   64   231 0.465  15.89
 2.07 Intr +  12662  12820  159  0  0   86   80   201 0.982  19.57
 2.08 Intr +  13381  13502  122  2  2   53  102    21 0.883   0.72
 2.09 Intr +  13854  13985  132  2  0   54   94   143 0.999  12.85
 2.10 Intr +  18310  18480  171  0  0   88   77   162 0.972  15.75
 2.11 Term +  18813  19178  366  2  0   99   36   294 0.875  20.26
 2.12 PlyA +  19378  19383    6                               1.05

 3.00 Prom +  20116  20155   40                              -5.71
 3.01 Init +  20736  20830   95  2  2   89   96   207 0.999  19.41
 3.02 Intr +  21709  21817  109  1  1  132   93    89 0.999  14.59
 3.03 Intr +  22238  22496  259  1  1   87   85   372 0.993  34.37
 3.04 Intr +  22707  22781   75  1  0  114  113     5 0.965   5.58
 3.05 Intr +  23370  23494  125  1  2  126   86   141 0.999  18.51
 3.06 Intr +  23955  24091  137  2  2   58   60   327 0.998  26.77
 3.07 Intr +  24695  24909  215  2  2   59  105   164 0.999  14.08
 3.08 Intr +  25731  25802   72  1  0  116   91    48 0.990   7.77
 3.09 Intr +  25916  26086  171  0  0  103   87   159 0.984  17.73
 3.10 Term +  26216  26382  167  0  2   95   53   139 0.994   9.49
 3.11 PlyA +  26432  26437    6                               1.05

 4.00 Prom +  29361  29400   40                              -4.91
 4.01 Init +  31071  31275  205  2  1   57   88   116 0.906   5.73
 4.02 Intr +  31473  31548   76  1  1   83   84    81 0.650   6.27
 4.03 Intr +  31786  31985  200  1  2   25   75   179 0.479   9.82
 4.04 Intr +  33077  33310  234  0  0   53   68   226 0.572  15.29
 4.05 Term +  33431  33462   32  0  2  129   49    37 0.957   2.20
 4.06 PlyA +  33631  33636    6                               1.05

 5.24 PlyA -  38721  38716    6                               1.05
 5.23 Term -  39405  39136  270  0  0  141   54   457 0.999  43.42
 5.22 Intr -  44435  44400   36  2  0   58   92    45 0.488   0.84
 5.21 Intr -  45182  45042  141  2  0   91   76   214 0.977  21.56
 5.20 Intr -  45770  45543  228  2  0   86   21   451 0.844  36.79
 5.19 Intr -  45940  45856   85  0  1   62   78    87 0.770   5.42
 5.18 Intr -  46099  46023   77  1  2   84   78    52 0.718   2.61
 5.17 Intr -  46585  46503   83  2  2  136   44    62 0.612   6.45
 5.16 Intr -  47651  47532  120  0  0   50  103   105 0.993   9.17
 5.15 Intr -  49331  49168  164  1  2  122   85   195 0.999  22.73
 5.14 Intr -  50224  50085  140  1  2   91   78    36 0.996   2.67
 5.13 Intr -  50477  50361  117  2  0   87   84    94 0.997  10.07
 5.12 Intr -  51402  51280  123  0  0   94  115   275 0.994  32.09
 5.11 Intr -  51619  51508  112  0  1   55  101   233 0.999  22.18
 5.10 Intr -  51835  51695  141  0  0   46   75   189 0.209  13.38
 5.09 Intr -  59151  58965  187  1  1   -5   91   208 0.726  11.07
 5.08 Intr -  59507  59255  253  2  1   83   64   226 0.666  17.24
 5.07 Intr -  64614  64528   87  0  0   73   85   140 0.957  12.86
 5.06 Intr -  64925  64830   96  2  0  128   74   112 0.999  14.51
 5.05 Intr -  65110  65030   81  1  0   82   93   147 0.999  14.93
 5.04 Intr -  65364  65250  115  2  1   41   42   224 0.899  14.05
 5.03 Intr -  65563  65502   62  1  2   50   79   118 0.978   5.12
 5.02 Intr -  65812  65723   90  1  0   71   56    57 0.728   1.49
 5.01 Init -  67203  66835  369  0  0   61   81   348 0.619  28.41
 5.00 Prom -  67760  67721   40                              -7.20

 6.06 PlyA -  67888  67883    6                               1.05
 6.05 Term -  68414  68301  114  2  0  103   49   160 0.999  12.47
 6.04 Intr -  73398  73298  101  1  2   74  117   143 0.946  16.13
 6.03 Intr -  73865  73700  166  2  1   78   52   240 0.914  19.45
 6.02 Intr -  74158  74082   77  2  2   74  105    67 0.642   6.73
 6.01 Init -  74633  74609   25  2  1   76   83    75 0.669   5.44
 6.00 Prom -  75150  75111   40                              -3.31

 7.00 Prom +  86307  86346   40                              -5.31
 7.01 Init +  94545  94601   57  2  0   96   76    77 0.415   8.56
 7.02 Intr +  94814  94852   39  1  0  104   94    42 0.972   5.31
 7.03 Intr +  94972  95078  107  0  2   91   93    69 0.974   7.21
 7.04 Intr +  95631  95694   64  0  1   72   97   107 0.995   9.21
 7.05 Intr +  95777  95939  163  1  1  140   81   225 0.999  27.06
 7.06 Intr +  96031  96097   67  2  1   53   81   112 0.953   5.46
 7.07 Intr +  96377  96578  202  2  1   87   68   292 0.999  26.91
 7.08 Intr +  96677  96893  217  1  1   87   61   583 0.999  54.10
 7.09 Term +  96974  97080  107  0  2  117   39   223 0.999  19.17
 7.10 PlyA +  98445  98450    6                              -0.45

 8.31 PlyA -  99587  99582    6                              -0.45
 8.30 Term - 100050  99998   53  1  2   51   47   112 0.939   1.28
 8.29 Intr - 100272 100143  130  0  1  124   80   135 0.998  17.07
 8.28 Intr - 100514 100351  164  0  2  103   94   307 0.956  33.01
 8.27 Intr - 100761 100601  161  2  2  104   64   287 0.994  28.04
 8.26 Intr - 101056 100869  188  1  2   74   80    84 0.751   5.21
 8.25 Intr - 101509 101291  219  1  0   85   77   255 0.998  23.13
 8.24 Intr - 101723 101583  141  2  0   44   44   304 0.531  22.66
 8.23 Intr - 101911 101829   83  2  2  134   87   -42 0.562   0.15
 8.22 Intr - 102197 102097  101  1  2   37   89    41 0.615  -0.65
 8.21 Intr - 102436 102299  138  0  0   91   96   232 0.937  24.39
 8.20 Intr - 102616 102516  101  1  2   20   80   195 0.903  11.31
 8.19 Intr - 102895 102729  167  2  2  102   93   184 0.953  20.49
 8.18 Intr - 103173 103002  172  0  1   65   77   279 0.996  24.53
 8.17 Intr - 103425 103328   98  1  2  111   64   109 0.999  11.03
 8.16 Intr - 103760 103623  138  0  0  125   97    49 0.999  10.44
 8.15 Intr - 104391 104253  139  0  1   86   99   164 0.836  17.84
 8.14 Intr - 104712 104459  254  1  2   91   65   222 0.807  17.89
 8.13 Intr - 105098 104928  171  0  0  118   85   181 0.999  21.23
 8.12 Intr - 105325 105285   41  0  2   95   80    45 0.694   2.75
 8.11 Intr - 105685 105577  109  2  1   90   75   149 0.688  13.64
 8.10 Intr - 105895 105784  112  1  1  103   65    22 0.689   1.86
 8.09 Intr - 106162 106067   96  1  0   33   75   174 0.995  11.31
 8.08 Intr - 106389 106260  130  2  1  107   98   183 0.986  22.40
 8.07 Intr - 106586 106565   22  0  1  136   30    36 0.725  -0.32
 8.06 Intr - 106794 106730   65  2  2  104  109    35 0.660   6.05
 8.05 Intr - 108350 108182  169  0  1   37   72    62 0.028  -0.98
 8.04 Intr - 112351 112216  136  1  1   53   90    87 0.151   6.05
 8.03 Intr - 112463 112389   75  2  0   45  103    27 0.079   0.11
 8.02 Intr - 112725 112552  174  0  0    5   42   151 0.115   2.85
 8.01 Init - 119802 119800    3  0  0  108   81     0 0.200   1.23
 8.00 Prom - 121156 121117   40                              -3.41

 9.00 Prom + 121843 121882   40                              -4.21
 9.01 Sngl + 125110 125532  423  0  0   76   32   742 0.511  64.04
 9.02 PlyA + 125742 125747    6                               1.05

10.00 Prom + 137973 138012   40                              -2.51
10.01 Init + 138988 139205  218  0  2   71   58   161 0.692   9.83
10.02 Intr + 139931 139982   52  2  1   65   93    53 0.741   2.90
10.03 Intr + 140241 140327   87  2  0   88  105    25 0.966   4.86
10.04 Intr + 140943 141122  180  2  0   88  109   220 0.999  24.68
10.05 Term + 141257 141412  156  1  0   97   47   148 0.999   9.85
10.06 PlyA + 144500 144505    6                               1.05

11.00 Prom + 145983 146022   40                              -4.01
11.01 Init + 152448 152500   53  2  2   58  115   107 0.977   8.98
11.02 Intr + 153999 154051   53  0  2   15   74    65 0.868  -3.16
11.03 Intr + 154762 154908  147  2  0   95   78   174 0.981  17.82
11.04 Intr + 155088 155359  272  1  2   96   90   114 0.999  10.20
11.05 Intr + 155541 155628   88  2  1  100  101    79 0.999  10.44
11.06 Intr + 156740 156892  153  0  0   90   67   123 0.905  10.96
11.07 Intr + 163717 163863  147  2  0   62   70    45 0.470   0.82
11.08 Intr + 164817 164948  132  1  0  109   21   117 0.658   8.22
11.09 Intr + 165829 165920   92  2  2  114   92    88 0.990  12.01
11.10 Intr + 166416 166494   79  2  1  112   64    66 0.993   6.22
11.11 Intr + 166603 166749  147  2  0   73   94   107 0.990  10.52
11.12 Intr + 168991 169175  185  2  2   96   94    53 0.468   6.73
11.13 Intr + 169461 169545   85  2  1  103  110    39 0.996   7.49
11.14 Intr + 169991 171508 1518  0  0   98   80  1838 0.741 174.41
11.15 Intr + 173505 173689  185  1  2   62   99   103 0.669   8.83
11.16 Intr + 176481 176622  142  2  1   97   93   106 0.999  12.44
11.17 Intr + 176810 176929  120  0  0   83   96   118 0.772  13.07
11.18 Intr + 178000 178124  125  2  2  100   93   159 0.993  18.41
11.19 Intr + 178670 178815  146  1  2  117  110    82 0.999  12.89
11.20 Intr + 180494 180637  144  2  0  110   38   244 0.997  21.51
11.21 Intr + 182306 182475  170  2  2  102   78   181 0.999  18.61
11.22 Intr + 183631 183833  203  2  2   78  105   140 0.915  14.23
11.23 Intr + 184804 184945  142  0  1  114  105    91 0.999  13.84
11.24 Intr + 185289 185536  248  1  2  118   64   273 0.862  25.61
11.25 Intr + 186110 186290  181  1  1  125   89   193 0.998  23.06
11.26 Intr + 186889 187000  112  2  1   89   80   126 0.999  11.84
11.27 Intr + 188159 188253   95  2  2   90   90    37 0.994   4.21
11.28 Intr + 190123 190299  177  2  0  154   78   127 0.999  18.71
11.29 Intr + 191564 191772  209  0  2   93   97   114 0.999  12.12
11.30 Intr + 192000 192144  145  2  1   94   91   165 0.999  17.77
11.31 Intr + 193607 193854  248  0  2  101   49   288 0.713  23.91
11.32 Intr + 193948 194112  165  0  0  112  100   204 0.997  24.67
11.33 Intr + 194719 194843  125  0  2   77   67   192 0.952  15.89
11.34 Intr + 197725 198029  305  1  2   89   78   277 0.964  23.58
11.35 Intr + 202902 203113  212  1  2  138   76   134 0.999  16.36
11.36 Intr + 204276 204420  145  2  1  105   70    83 0.832   8.57
11.37 Intr + 206168 206289  122  0  2   80    1   216 0.588  12.82

Suboptimal exons with probability > 0.800

Exnum Type S .Begin ...End .Len Fr Ph B/Ac Do/T CodRg P.... Tscr..
----- ---- - ------ ------ ---- -- -- ---- ---- ----- ----- ------

S.001 Term -  61605  61525   81  0  0   92   45   117 0.800   5.79


Predicted peptide sequence(s):

Predicted coding sequence(s):


>gi568815591r:100581722_100788111|GENSCAN_predicted_peptide_1|200_aa
MAAAVAAPLAAGGEEAAATTSVPGSPGLPGRRSAERALEEAVATGTLNLSNRRLKHFPRG
AARSYDLSDITQADLSRNRFPEVPEAACQLVSLEGLSLYHNCLRCLNPALGNLTALTYLN
LSRNQLSLLPPYICQLPLRVLIVSNNKLGALPPDIGTLGSLRQLDVSSNELQSLPSELCG
LSSLRDLNVRRNQLSTLPEX

>gi568815591r:100581722_100788111|GENSCAN_predicted_CDS_1|600_bp
atggcggcggccgtagcggctccactcgccgccgggggtgaggaggcggcagccacgacc
tccgtgcccgggtctccaggtctgccggggagacgcagtgcagagcgggccctagaggag
gccgtggccaccgggaccctgaacctgtctaaccggcgcttgaagcacttcccccggggc
gcggcccgtagctacgacctgtcagacatcacccaggctgacctgtcccggaaccggttt
cccgaggtgcccgaggcggcgtgccagctggtgtccctggagggcctgagcctctaccac
aattgcctgagatgcctgaacccagccttggggaatctcacagccctcacctacctcaac
ctcagccgaaaccagctgtcgctgctgccaccctacatctgccagctgcccctgagggtc
ctcatcgtcagcaacaacaagctgggagccctgccccctgacatcggcaccctgggaagc
ctgcgacagcttgacgtgagcagcaacgagctccaatccctgccctcggaactgtgtggc
ctctcttccctgcgggacctcaatgtccggaggaaccagctcagtacgctgcccgaagnn

>gi568815591r:100581722_100788111|GENSCAN_predicted_peptide_2|581_aa
MVKRSCPSCGSELGVEEKRGKGNPISIQLFPPELVEHIISFLPVRDLVALGQTCRYFHEV
CDGEGVWRRICRRLSPRLQDQGIPQGVLLTLTGRLKEKGDPENRSKARDTKGLYFQAFGG
RRRCLSKSVAPLLAHGYRRFLPTKDHVFILDYVGTLFFLKNALVSTLGQMQWKRACRYVV
LCRGAKDFASDPRCDTVYRKYLYVLATREPQEVVGTTSSRACDCVEVYLQSSGQRVFKMT
FHHSMTFKQIVLVGQETQRALLLLTEEGKIYSLVVNETQLDQPRSYTVQLALRKVSHYLP
HLRVACMTSNQSSTLYVTDQGGVYFEVHTPGVYRDLFGTLQAFDPLDQQMPLALSLPAKI
LFCALGYNHLGLVDEFGRIFMQGNNRYGQLGTGDKMDRGEPTQVCYLQRPITLWCGLNHS
LVLSQSSEFSKELLGCGCGAGGRLPGWPKGSASFVKLQVKVPLCACALCATRECLYILSS
HDIEQHAPYRHLPASRVVGTPEPSLGARAPQDPGGMAQACEEYLSQIHSCQTLQDRTEKM
KEIVGWMPLMAAQKDFFWEALDMLQRAEGGGGGVGPPAPET

>gi568815591r:100581722_100788111|GENSCAN_predicted_CDS_2|1746_bp
atggtgaagagaagctgcccttcttgtggctcggagcttggggttgaagagaagaggggg
aaaggaaatccgatttccatccagttgttccccccagagctggtggagcatatcatctca
ttcctcccagtcagagaccttgttgccctcggccagacctgccgctacttccacgaagtg
tgcgatggggaaggcgtgtggagacgcatctgtcgcagactcagtccgcgcctccaagat
caggggatcccccagggtgtacttcttacactcactgggagattaaaagagaagggggac
ccagaaaacagatccaaagctagggacacgaagggcctgtatttccaggcatttggaggc
cgccgccgatgtctcagcaagagcgtggcccccttgctagcccacggctaccgccgcttc
ttgcccaccaaggatcacgtcttcattcttgactacgtggggaccctcttcttcctcaaa
aatgccctggtctccaccctcggccagatgcagtggaagcgggcctgtcgctatgttgtg
ttgtgtcgtggagccaaggattttgcctcggacccaaggtgtgacacagtttaccgtaaa
tacctctacgtcttggccactcgggagccgcaggaagtggtgggtaccaccagcagccgg
gcctgtgactgtgttgaggtctatctgcagtctagtgggcagcgggtcttcaagatgaca
ttccaccactcaatgaccttcaagcagatcgtgctggttggtcaggagacccagcgggct
ctactgctcctcacagaggaaggaaagatctactctttggtagtgaatgagacccagctt
gaccagccacgctcctacacggttcagctggccctgaggaaggtgtcccactacctgcct
cacctgcgcgtggcctgcatgacttccaaccagagcagcaccctctacgtcacagaccag
gggggagtgtattttgaggtgcataccccaggggtgtatcgcgatctctttgggaccctt
caagcctttgaccccctggaccagcagatgccgcttgctctctcactgcctgccaagatc
ctattctgtgctcttggctacaaccaccttggcctggtggatgaatttggccgaatcttc
atgcaaggaaataacagatacgggcagctaggaacaggggacaaaatggaccgaggggaa
cccacacaggtttgttacctgcagcggcccatcaccctgtggtgcggcctcaaccactcc
ctggtgctgagccagagctcagagttcagcaaggagctgctgggctgcggctgtggggct
gggggccgcctcccaggctggcccaaggggagtgcctccttcgtcaagctccaagtcaag
gtccctctgtgtgcctgtgccctctgtgccaccagggagtgcctatacatcctgtccagc
cacgacattgagcagcacgccccctatcgccacctgccagccagcagggtggtggggact
cctgagcccagcctgggggccagagcaccccaggaccccggggggatggcccaggcctgc
gaggagtacctcagccagatccacagttgccaaacgttgcaggaccgcacggagaagatg
aaggagatcgtagggtggatgcccctgatggccgcacagaaggacttcttctgggaggcc
ctggacatgctgcagagggctgaaggaggcgggggtggtgtagggcccccagcccctgag
acctaa

>gi568815591r:100581722_100788111|GENSCAN_predicted_peptide_3|474_aa
MLPAATASLLGPLLTACALLPFAQGQTPNYTRPVFLCGGDVKGESGYVASEGFPNLYPPN
KECIWTITVPEGQTVSLSFRVFDLELHPACRYDALEVFAGSGTSGQRLGRFCGTFRPAPL
VAPGNQVTLRMTTDEGTGGRGFLLWYSGRATSGTGPPPGARRKWVTDPRVEWAAWGYWDE
HQFCGGRLEKAQGTLTTPNWPESDYPPGISCSWHIIAPPDQVIALTFEKFDLEPDTYCRY
DSVSVFNGAVSDDSRRLGKFCGDAVPGSISSEGNELLVQFVSDLSVTADGFSASYKTLPR
GTAKEGQGPGPKRGTEPKVKLPPKSQPPEKTEESPSAPDAPTCPKQCRRTGTLQSNFCAS
SLVVTATVKSMVREPGEGLAVTVSLIGAYKTGGLDLPSPPTGASLKFYVPCKQCPPMKKG
VSYLLMGQVEENRGPVLPPESFVVLHRPNQDQILTNLSKRKCPSQPVRAAASQD

>gi568815591r:100581722_100788111|GENSCAN_predicted_CDS_3|1425_bp
atgctgcctgcagccacagcctccctcctggggcccctcctcactgcctgcgccctgctg
ccttttgcccagggccagacccccaactacaccagacccgtgttcctgtgcggaggggat
gtgaagggggaatcaggttacgtggcaagtgaggggttccccaacctctacccccctaat
aaggagtgcatctggaccataacggtccccgagggccagactgtgtccctctcattccga
gtcttcgacctggagctgcaccccgcctgccgctacgatgctctggaggtcttcgctggg
tctgggacttccggccagcggctcggacgcttttgtgggaccttccggcctgcgccccta
gtcgcccccggcaaccaggtgaccctgaggatgacgacggatgagggcacaggaggacga
ggcttcctgctctggtacagcgggcgggccacctcgggcactgggccccccccaggcgcg
aggcggaaatgggtcaccgacccgcgggtggaatgggcggcctggggttactgggacgag
caccaattttgcggggggcggctggagaaggcccagggaaccctgaccacgcccaactgg
cccgagtccgattaccccccgggcatcagctgttcctggcacatcatcgcgcccccggac
caggtcatcgcgctgaccttcgagaagtttgacctggagccggacacctactgccgctat
gactcggtcagcgtgttcaacggagccgtgagcgacgactcccggaggctggggaagttc
tgcggcgacgcagtcccgggctccatctcctccgaagggaatgaactcctcgtccagttc
gtctcagatctcagtgtcaccgctgatggcttctcagcctcctacaagaccctgccgcgg
ggcactgccaaagaagggcaagggcccggccccaaacggggaactgagcctaaagtcaag
ctgccccccaagtcccaacctccggagaaaacagaggaatctccttcagcccctgatgca
cccacctgcccaaagcagtgccgccggacaggcaccttgcagagcaacttctgtgccagc
agccttgtggtgactgcgacagtgaagtccatggttcgggagccaggggagggccttgcc
gtgactgtcagtcttattggtgcttataaaactggaggactggacctgccttctccaccc
actggtgcctccctgaagttttacgtgccttgcaagcagtgcccccccatgaagaaagga
gtcagttatctgctgatgggccaggtagaagagaacagaggccccgtccttcctccagag
agctttgtggttctccaccggcccaaccaggaccagatcctcaccaacctaagcaagagg
aagtgcccctctcaacctgtgcgggctgctgcgtcccaggactga

>gi568815591r:100581722_100788111|GENSCAN_predicted_peptide_4|248_aa
MRRGAPQDQELVGPGPPGRGSRGAPPPLGPVVPVLVFPPDLVFRADQRSGPRQLLTLYNP
TGTALRFRVLCTAPAKYTVFDAEGYVKPQSCIDIHYDVQDRFRIELSEEGAEGRVVGRKD
ITSILRAPAYPLELQGQPDPAPRPGPPAGTPPPTARHFQERFSLEDLGWAGVGAAASDES
CFSDPRQQLATSSFLLFLLTGIVSVAFLLLPLPDELGSQLPQVLHVSLGQKLVAAYVLGL
LTMVFLRT

>gi568815591r:100581722_100788111|GENSCAN_predicted_CDS_4|747_bp
atgcgccgtggggcgccccaggaccaggagctggtgggtccggggccccctgggcggggg
tcccggggcgcccctcctcccttgggacccgttgtcccggtcctggtctttcccccggat
ctagtattcagggcggaccagcggagcggaccccgacagctgctgaccctctataacccc
acaggaactgcgcttcgcttccgagtcctgtgcacagcacctgccaaatacacggtgttt
gacgcagagggatatgtgaagccccagtcttgcattgacatccactatgatgtccaggac
cgcttccgcattgagctgtctgaggaaggagctgagggccgagtggtgggacgcaaggac
attacctccattctgagagccccagcgtacccccttgagcttcagggacagccagatcca
gcgcctcgcccagggcctcctgctgggacaccaccacccacggccagacacttccaggag
cgcttctccctggaggacctgggctgggcaggagtgggggctgcagcatctgatgagtct
tgtttctcagacccccgccagcaactggccaccagctccttcctcctcttcttgctgacg
gggattgtgtctgtggccttcctgctgctcccactcccggacgaactcggcagccagctg
cctcaagtcctgcacgtctccctgggacaaaagttggtggccgcctacgtcttgggcctc
ctcaccatggtgttcctccggacctga

>gi568815591r:100581722_100788111|GENSCAN_predicted_peptide_5|1058_aa
MGWTPVEQRVTRQDLGPGPSLAAAVSLTYPSDASFANGRSTGLVLDSGATHTTAIPVHDG
YVLQQGGASAGGGGAPGGPGPDSAFLLGIVKSPLAGDFISMQCRELFQEMAIDIIPPYMI
AAKEPVREGAPPNWKKKEKLPQVSKSWHNYMCNEVIQDFQASVLQVSDSPYDEQVAAQMP
TVHYEMPNGYNTDYGAERLRIPEGLFDPSNVKGLSGNTMLGVGHVVTTSIGMCDIDIRPG
LYGSVIVTGGNTLLQGFTDRLNRELSQKTPPSMRLKLIASNSTMERKFSPWIGGSILASL
QQLSPRSSQTVYQRVEGPRKGHLEEEEEDGEEGAETLAHFCPMELRGPEPLGSRPRQPNL
IPWAAAGRRAAPYLVLTALLIFTGAFLLGYVAFRGSCQACGDSVLVVSEDVNYEPDLDFH
QGRLYWSDLQAMFLQFLGEGRLEDTIRQTSLRERVAGSAGMAALTQDIRAALSRQKLDHV
WTDTHYVGLQFPDPAHPNTLHWVDEAGKVGEQLPLEDPDVYCPYSAIGNVTGELVYAHYG
RPEDLQDLRARGVDPVGRLLLVRVGVISFAQKVTNAQDFGAQGVLIYPEPADFSQDPPKP
SLSSQQAVYGHVHLGTGDPYTPGFPSFNQTQFPPVASSGLPSIPAQPISADIASRLLRKL
KGPVAPQEWQGSLLGSPYHLGPGPRLRLVVNNHRTSTPINNIFGCIEGRSEPDHYVVIGA
QRDAWGPGAAKSAVGTAILLELVRTFSSMVSNGFRPRRSLLFISWDGGDFGSVGSTEWLE
VDSPNHSGQTLYEQVVFTNPSWDAEVIRPLPMDSSAYSFTAFVGVPAVEFSFMEDDQAYP
FLHTKEDTYENLHKVLQGRLPAVAQAVAQLAGQLLIRLSHDRLLPLDFGRYGDVVLRHIG
NLNEFSGDLKARGLTLQWVYSARGDYIRAAEKLRQEIYSSEERDERLTRMYNVRIMRNST
PQPFDVKKWVEFYFLSQYVSPADSPFRHIFMGRGDHTLGALLDHLRLLRSNSSGTPGATS
STGFQESRFRRQLALLTWTLQGAANALSGDVWNIDNNF

>gi568815591r:100581722_100788111|GENSCAN_predicted_CDS_5|3177_bp
atgggctggaccccggtagagcagagagtgaccagacaagatctgggcccaggcccctca
cttgctgctgctgtctctttgacttacccatccgatgccagctttgcaaacgggcggtcc
actggcctcgtgctggacagtggagccacccacaccacggccattccagtacatgacggc
tacgttctgcagcaaggtggggcttcggcagggggtgggggtgctccaggaggaccaggt
cctgacagtgccttccttctaggcatcgtcaagtcccctctggcaggggacttcatctcc
atgcagtgccgggagctgttccaggagatggccattgacatcatcccaccttacatgatc
gcagccaaggagcctgtccgggagggtgcccccccaaactggaagaagaaggagaagcta
ccccaggtctccaagtcctggcataactacatgtgtaatgaggtgatccaggacttccag
gcctccgtgctgcaggtctcagactccccctacgatgaacaggtggctgcacaaatgccc
acagtgcactacgagatgcccaatggctacaatacagactacggcgccgagcgactccgc
atccctgagggcctgtttgatccctcgaacgtcaagggcctgtcggggaacaccatgttg
ggtgtgggccacgtggtgaccaccagcatcggcatgtgtgacattgatattcgcccgggc
ctgtacgggagtgtcattgtcaccggcgggaacacactgctgcagggcttcactgacagg
ctcaatcgagagctttcccagaagaccccaccgagcatgcgactgaaactcattgccagc
aacagcaccatggagcgcaagttcagcccctggatcgggggttccatcctggcctcactg
caacaactgtccccaagatcctctcagaccgtctaccagcgtgtggaaggcccccggaaa
gggcacctggaggaggaagaggaagacggggaggagggggcggagacattggcccacttc
tgccccatggagctgaggggccctgagcccctgggctctagacccaggcagccaaacctc
attccctgggcggcagcaggacggagggctgccccctacctggtcctgacggccctgctg
atcttcactggggccttcctactgggctacgtcgccttccgagggtcctgccaggcgtgc
ggagactctgtgttggtggtcagtgaggatgtcaactatgagcctgacctggatttccac
cagggcagactctactggagcgacctccaggccatgttcctgcagttcctgggggagggg
cgcctggaggacaccatcaggcaaaccagccttcgggaacgggtggcaggctcggccggg
atggccgctctgactcaggacattcgcgcggcgctctcccgccagaagctggaccacgtg
tggaccgacacgcactacgtggggctgcaattcccggatccggctcaccccaacaccctg
cactgggtcgatgaggccgggaaggtcggagagcagctgccgctggaggaccctgacgtc
tactgcccctacagcgccatcggcaacgtcacgggagagctggtgtacgcccactacggg
cggcccgaagacctgcaggacctgcgggccaggggcgtggatccagtgggccgcctgctg
ctggtgcgcgtgggggtgatcagcttcgcccagaaggtgaccaatgctcaggacttcggg
gctcaaggagtgctcatatacccagagccagcggacttctcccaggacccacccaagcca
agcctgtccagccagcaggcagtgtatggacatgtgcacctgggaactggagacccctac
acacctggcttcccttccttcaatcaaacccagttccctccagttgcatcatcaggcctt
cccagcatcccagcccagcccatcagtgcagacattgcctcccgcctgctgaggaagctc
aaaggccctgtggccccccaagaatggcaggggagcctcctaggctccccttatcacctg
ggccccgggccacgactgcggctagtggtcaacaatcacaggacctccacccccatcaac
aacatcttcggctgcatcgaaggccgctcagagccagatcactacgttgtcatcggggcc
cagagggatgcatggggcccaggagcagctaaatccgctgtggggacggctatactcctg
gagctggtgcggaccttttcctccatggtgagcaacggcttccggccccgcagaagtctc
ctcttcatcagctgggacggtggtgactttggaagcgtgggctccacggagtggctagag
gtggattctcccaaccacagtgggcagactctctatgaacaggtggtgttcaccaatccc
agctgggatgctgaggtgatccggcccctacccatggacagcagtgcctattccttcacg
gcctttgtgggagtccctgccgtcgagttctcctttatggaggacgaccaggcctaccca
ttcctgcacacaaaggaggacacttatgagaacctgcataaggtgctgcaaggccgcctg
cccgccgtggcccaggccgtggcccagctcgcagggcagctcctcatccggctcagccac
gatcgcctgctgcccctcgacttcggccgctacggggacgtcgtcctcaggcacatcggg
aacctcaacgagttctctggggacctcaaggcccgcgggctgaccctgcagtgggtgtac
tcggcgcggggggactacatccgggcggcggaaaagctgcggcaggagatctacagctcg
gaggagagagacgagcgactgacacgcatgtacaacgtgcgcataatgcggaactcaacc
cctcaaccctttgatgtcaagaaatgggtggagttctacttcctttcccagtacgtgtcg
ccagccgactccccgttccgccacatcttcatgggccgtggagaccacacgctgggcgcc
ctgctggaccacctgcggctgctgcgctccaacagctccgggacccccggggccacctcc
tccactggcttccaggagagccgtttccggcgtcagctagccctgctcacctggacgctg
caaggggcagccaatgcgcttagcggggatgtctggaacattgataacaacttctga

>gi568815591r:100581722_100788111|GENSCAN_predicted_peptide_6|160_aa
MSGGVYGGDEVGALVFDIGSFSVRAGYAGEDCPKADFPTTVGLLAAEEGGGLELEGDKEK
KGKIFHIDTNALHVPRDGAEVMSPLKNGMIEDWECFRAILDHTYSKHVKSEPNLHPVLMS
EAPWNTRAKREKLTELMFEQYNIPAFFLCKTAVLTAYPLD

>gi568815591r:100581722_100788111|GENSCAN_predicted_CDS_6|483_bp
atgagcgggggcgtctacggcggagatgaggtgggggcgctggtctttgacattggctcc
ttctcagtccgcgctgggtacgctggggaggactgtcccaaggctgacttccccaccaca
gtggggctgctggccgcggaggaggggggcgggctggagctggagggggacaaagagaag
aaagggaagatcttccacatcgacaccaatgccctgcacgtgcctcgggatggagcggag
gtcatgtcgcccctcaagaatggcatgatcgaggactgggagtgcttccgagccatcctg
gatcacacctacagcaaacacgtcaagtctgagccaaacctgcacccagtgctcatgtcc
gaggctccgtggaacacacgggccaagcgggagaagctgacagagctgatgttcgagcag
tacaacattcctgccttcttcttatgcaagacggctgtgctcaccgcgtatcctctggac
tga

>gi568815591r:100581722_100788111|GENSCAN_predicted_peptide_7|340_aa
MSELEQLRQEAEQLRNQIRDARKACGDSTLTQITAGLDPVGRIQMRTRRTLRGHLAKIYA
MHWGTDSRLLVSASQDGKLIIWDSYTTNKVHAIPLRSSWVMTCAYAPSGNFVACGGLDNI
CSIYSLKTREGNVRVSRELPGHTGYLSCCRFLDDNQIITSSGDTTCALWDIETGQQTVGF
AGHSGDVMSLSLAPDGRTFVSGACDASIKLWDVRDSMCRQTFIGHESDINAVAFFPNGYA
FTTGSDDATCRLFDLRADQELLMYSHDNIICGITSVAFSRSGRLLLAGYDDFNCNIWDAM
KGDRAGVLAGHDNRVSCLGVTDDGMAVATGSWDSFLKIWN

>gi568815591r:100581722_100788111|GENSCAN_predicted_CDS_7|1023_bp
atgagtgagctggagcaactgagacaggaggccgagcagctccggaaccagatccgggat
gcccgaaaagcatgtggggactcaacactgacccagatcacagctgggctggacccagtg
gggagaatccagatgaggacccggaggaccctccgtgggcacctggcaaagatctatgcc
atgcactgggggaccgactcaaggctgctggtcagcgcctcccaggatgggaagctcatc
atctgggacagctacaccaccaacaaggtccacgccatcccgctgcgctcctcctgggta
atgacctgtgcctacgcgccctcagggaactttgtggcctgtggggggttggacaacatc
tgctccatctacagcctcaagacccgcgagggcaacgtcagggtcagccgggagctgcct
ggccacactgggtacctgtcgtgttgccgcttcctggatgacaaccaaatcatcaccagc
tctggggataccacctgtgccctgtgggacattgagacaggccagcagacagtgggtttt
gctggacacagtggggatgtgatgtccctgtccctggcccccgatggccgcacgtttgtg
tcaggcgcctgtgatgcctctatcaagctgtgggacgtgcgggattccatgtgccgacag
accttcatcggccatgaatccgacatcaatgcagtggctttcttccccaacggctacgcc
ttcaccaccggctctgacgacgccacgtgccgcctcttcgacctgcgggccgatcaggag
ctcctcatgtactcccatgacaacatcatctgtggcatcacctctgttgccttctcgcgc
agcggacggctgctgctcgctggctacgacgacttcaactgcaacatctgggatgccatg
aagggcgaccgtgcaggagtcctcgctggccacgacaaccgcgtgagctgcctcggggtc
accgacgatggcatggctgtggccacgggctcctgggactccttcctcaagatctggaac
taa

>gi568815591r:100581722_100788111|GENSCAN_predicted_peptide_8|1249_aa
MWRARHASSARGEVARAGAAEGGGGGGGGGGGGGGGGGGGGGGGGGGRGGPAAPRPRHVP
PSPSPAPARRAPPTPRDRTLAPPAPSPGAGPPPTPRRPRRARELEKRRSQRAGRQRGPSP
VSSPRPPQPVHSHWCAAMTTSGPRIPSSVEALDPSATAPCPLSPWWLPFYLPPSMSDCSR
DLMKEKSFTVWTHLWVTHGVSGHVAGSGVWTVNARLRALSGGGSVASPPPSPAMPKYKLA
DYRYGREEMLALYVKENKVPEELQDKEFAAVLQDEPLQPLALEPLTEEEQRNFSLSVNSV
AVLRLMGKGAGPPLAGTSRGRGSTRSRGRGRGDSCFYQRSIEEGDGAFGRSPREIQRSQS
WDDRGERRFEKSARRDGARCGFEEGGAGPRKEHARSDSENWRSLREEQEEEEEGSWRLGA
GPRRDGDRWRSASPDGGPRSAGWREHGERRRKFEFDLRGDRGGCGEEEGRGGGGSSHLRR
CRAPEGFEEDKDGLPEWCLDDEDEEMGTFDASGAFLPLKLFSAPHPGPMQKGPKEPIPEE
QELDFQGLEEEEEPSEGLEEEGPEAGGKELTPLPPQEEKSSSPSPLPTLGPLWGTNGDGD
ETAEKEPPAAEDDIRGIQLSPGVGSSAGPPGDLEDDEGLKHLQQEAEKLVASLQDSSLEE
EQFTAAMQTQGLRHSAAATALPLSHGAARKWFYKDPQGEIQGPFTTQEMAEWFQAGYFSM
SLLVKRGCDEGFQPLGEVIKMWGRVPFAPGPSPPPLLGNMDQERLKKQQELAAAALYQQL
QHQQFLQLVSSRQLPQCALREKAALGDLTPPPPPPPQQQQQQLTAFLQQLQALKPPRGGD
QNLLPTMSRSLSVPDSGRLWDVHTSASSQSGGEASLWDIPINSSTQGPILEQLQLQHKFQ
ERREVELRAKREEEERKRREEKRRQQQQEEQKRRQEEEELFRRKHVRQQELLLKLLQQQQ
AVPVPPAPSSPPPLWAGLAKQGLSMKTLLELQLEGERQLHKQPPPREPARAQAPNHRVQL
GGLGTAPLNQWVSEAGPLWGGPDKSGGGSSGLGLWEDTPKSGGSLVRGLGLKNSRSSPSL
SDSYSHLSGRPIRKKTEEEEKLLKLLQGIPRPQDGFTQWCEQMLHTLSATGSLDVPMAVA
ILKEVESPYDVHDYIRSCLGDTLEAKEFAKQFLERRAKQKASQQRQQQQEAWLSSASLQT
AFQANHSTKLGPGEGSKAKRRALMLHSDPSILGYSLHGSSGEIESVDDY

>gi568815591r:100581722_100788111|GENSCAN_predicted_CDS_8|3750_bp
atgtggcgcgcgcggcacgcgagcagcgcacgaggagaggtggcgcgggccggagccgcg
gagggaggcggcggcggcggcggcggcggcggcggcggcggcggcggcggcggcggcggc
ggcggcggcggcggcggtggaaggggcggccccgcggccccgcgtccgcgtcacgtgccg
ccgtcgccgtccccggcccccgcccgccgcgcgccgcccacgccccgggaccggaccctc
gcgccgcccgcgcccagccccggggcaggcccgcccccgacgccgcggcggccgcgccga
gcccgcgagctagagaagcgccggagccagcgcgcgggccgccagcgaggaccctccccc
gtctcctccccgaggccgccgcagcccgtacactcacattggtgtgcggccatgaccacc
agcggccccaggatcccctcctcagttgaggctctggacccttcagcaacagctccctgt
cccctcagcccctggtggctgcccttctaccttcctccctcaatgagtgactgctctaga
gacctcatgaaagagaagtctttcaccgtctggactcatctctgggtaactcatggtgtg
agtggccacgtggctggctcaggtgtttggacagtgaacgccaggctcagggccctgtcc
gggggcggcagcgtggcctccccacccccgtcccctgccatgcccaaatacaagctggct
gactaccgttatgggcgagaggaaatgctggctctctacgtcaaggagaacaaggtcccg
gaagagctgcaggacaaggagttcgccgcggtgctgcaggacgagccactgcagcccctg
gctctggagccgctgactgaggaggaacagagaaacttctccctgtcagtgaacagcgtg
gctgtgctgaggctgatggggaaaggggctggcccccccctggctggcacctcccgaggc
aggggcagcacgcggagccgaggccgcggccgtggtgacagctgcttttaccaaagaagc
atcgaagaaggcgatggggcctttggacgaagcccccgggaaatccagcgcagccagagc
tgggatgacagaggcgagaggcggtttgagaagtcagcaaggcgggatggagcacgatgt
ggctttgaggagggaggggctggcccaaggaaggagcacgcccgctcagacagcgagaac
tggcgctccctacgggaggaacaggaggaggaggaggagggcagctggaggctcggagca
gggccccggcgagacggcgaccgctggcgctccgccagccctgatggtggtccccgctct
gctggctggcgggaacatggggaacggcggcgcaagtttgaatttgatttgcgaggggat
cgaggagggtgtggtgaagaggaggggcggggagggggaggcagctctcacctgcggcgg
tgccgagcgcctgaaggctttgaggaggacaaggatgggctcccagagtggtgcctggac
gatgaggatgaagaaatgggcacctttgatgcctctggggccttcttgcctctcaagctg
ttctctgctccccaccccggccccatgcagaagggccccaaggagcccattcctgaggag
caggagctggacttccaagggttggaggaggaggaggaaccttccgaagggctagaggag
gaagggcctgaggcaggtgggaaagagctgaccccactgcctcctcaggaggagaagtcc
agctccccatccccactgcccaccctgggcccactctgggggacaaacggggatggggac
gaaactgcagagaaagagcccccagcggccgaagatgatattcgggggatccagctgagt
cccggggtgggctcctctgctggcccacccggagatctggaggatgatgaaggcttgaag
cacctgcagcaggaggcggagaagctggtggcctccctgcaggacagctccttggaggag
gagcagttcacggctgccatgcagacccagggcctgcgccactctgcagccgccactgcc
ctcccgctcagccatggggctgcccggaagtggttctacaaggacccacagggcgagatc
caaggccccttcacgacacaggagatggcagagtggttccaggccggctacttttccatg
tcactgctggtgaagcggggctgcgatgagggcttccagccgctgggcgaggtgatcaag
atgtggggccgcgtgccctttgccccagggccctcacctcccccactgctgggaaacatg
gaccaggagcggctgaagaagcaacaggagctggccgcggcggccttgtaccagcagctg
cagcaccagcagtttctccagctggtcagcagccgccagctcccacagtgcgcgctccga
gaaaaggcagctctgggggacctgacaccgccaccaccgccgccgccacagcagcagcag
cagcagctcacggcattcctgcagcagctccaggcgctcaaaccccccagaggcggggac
cagaacctgctcccgacgatgagccggtccttgtcggtgccagattcgggccgcctctgg
gacgtacatacctcagcctcatcacagtcaggtggtgaggccagtctttgggacatacca
attaactcttcgactcagggtccaattctagaacaactccagctgcaacataaattccag
gagcgcagagaagtggagctcagggcgaagcgggaggaagaggaacgcaagcgtcgagag
gagaagcgccgccagcagcagcaggaggagcagaagcggcggcaggaggaggaagagctg
tttcggcgcaagcacgtgcggcagcaggagctattgctgaagttgctacagcagcagcag
gcggtccctgtgccccccgcacccagctccccgcccccactctgggctggcctggccaag
caggggctgtccatgaagacgctcctggagttgcagctggagggcgagcggcagctgcac
aaacagcccccacctcgggagccagctcgggcccaggcccccaaccaccgagtgcagctt
gggggcctgggcactgcccccctgaaccagtgggtgtctgaggctgggccactgtggggc
gggccagacaagagtgggggcggcagcagcggcctggggctctgggaggacacccccaag
agcggcgggagcctggtccgtggcctcggcctgaagaacagccggagcagcccatctctc
agtgactcatacagccacctatcgggtcggcccattcgcaaaaagacggaggaagaagag
aagctgctgaagctgctgcagggcattcccaggccccaggacggcttcacccagtggtgc
gagcagatgctgcacacgctgagcgccacgggcagcctggacgtgcccatggctgtagcg
atcctcaaggaggtggaatccccctatgatgtccacgattatatccgttcctgcctgggg
gacacgctggaagccaaagaatttgccaaacaattcctggagcggagggccaagcagaaa
gccagccagcagcggcagcagcagcaggaggcatggctgagcagcgcctcgctgcagacg
gccttccaggccaaccacagcaccaaactcggccccggggagggcagcaaggccaagagg
cgggcactgatgctgcactcagaccccagcatcctggggtactccctgcacggatcttct
ggtgagatcgagagcgtggatgactactga

>gi568815591r:100581722_100788111|GENSCAN_predicted_peptide_9|140_aa
MAENREPRGAVEAELDPVEYTLRKRLPSRLPRRPNDIYVNMKTDFKAQLARCQKLLDGGA
RGQNACSEIYIHGLGLAINRAINIALQLQAGSFGSLQVAANTSTVELVDELEPETDTREP
LTRIRNNSAIHIRVFRVTPK

>gi568815591r:100581722_100788111|GENSCAN_predicted_CDS_9|423_bp
atggcagaaaaccgagagccccgcggtgctgtggaggctgaactggatccagtggaatac
acccttaggaaaaggcttcccagccgcctgccccggagacccaatgacatttatgtcaac
atgaagacggactttaaggcccagctggcccgctgccagaagctgctggacggaggggcc
cggggtcagaacgcgtgctctgagatctacattcacggcttgggcctggccatcaaccgc
gccatcaacatcgcgctgcagctgcaggcgggcagcttcgggtccttgcaggtggctgcc
aatacctccaccgtggagcttgttgatgagctggagccagagaccgacacacgggagcca
ctgactcggatccgcaacaactcagccatccacatccgagtcttcagggtcacacccaag
taa

>gi568815591r:100581722_100788111|GENSCAN_predicted_peptide_10|230_aa
MQITAPTPGQSRRVPGPPRPLAALRRTALSSRSRTGATAPALLRHRAPWTAALSSRPVGL
ALHRRASRDEGPRRVLERYLLEAKEAENITTGCAEHCSLNENITVPDTKVNFYAWKRMEV
GQQAVEVWQGLALLSEAVLRGQALLVNSSQPWEPLQLHVDKAVSGLRSLTTLLRALGAQK
EAISPPDAASAAPLRTITADTFRKLFRVYSNFLRGKLKLYTGEACRTGDR

>gi568815591r:100581722_100788111|GENSCAN_predicted_CDS_10|693_bp
atgcagataacagccccgacccccggccagagccgcagagtccctgggccaccccggccg
ctcgctgcgctgcgccgcaccgcgctgtcctcccggagccggaccggggccaccgcgccc
gctctgctccgacaccgcgccccctggacagccgccctctcctccaggcccgtggggctg
gccctgcaccgccgagcttcccgggatgagggcccccgccgagtcctggagaggtacctc
ttggaggccaaggaggccgagaatatcacgacgggctgtgctgaacactgcagcttgaat
gagaatatcactgtcccagacaccaaagttaatttctatgcctggaagaggatggaggtc
gggcagcaggccgtagaagtctggcagggcctggccctgctgtcggaagctgtcctgcgg
ggccaggccctgttggtcaactcttcccagccgtgggagcccctgcagctgcatgtggat
aaagccgtcagtggccttcgcagcctcaccactctgcttcgggctctgggagcccagaag
gaagccatctcccctccagatgcggcctcagctgctccactccgaacaatcactgctgac
actttccgcaaactcttccgagtctactccaatttcctccggggaaagctgaagctgtac
acaggggaggcctgcaggacaggggacagatga

>gi568815591r:100581722_100788111|GENSCAN_predicted_peptide_11|2339_aa
MVPPVWTLLLLVGAALFRKEKPPDQKLVVRSSRDNYVLTQCDFEDDAKPLCDWSQVSADD
EDWVRASGPSPTGSTGAPGGYPNGEGSYLHMESNSFHRGGVARLLSPDLWEQGPLCVHFA
HHMFGLSWGAQLRLLLLSGEEGRRPDVLWKHWNTQRPSWMLTTVTVPAGFTLPTRLMFEG
TRGSTAYLDIALDALSIRRGSCNRVCMMQTCSFDIPNDLCDWTWIPTASGAKWTQKKGSS
GKPGVGPDGDFSSPGIASPSEVHADWLSELGAEVVLGERGFASCSSVSEPLYLSPVCVNR
LCPAGGCYMLLDPKNARPGQKAVLLSPVSLSSGCLSFSFHYILRGQSPGSIRKHTLFSGQ
PGPNWQAVSVNYTAVGRIQFAVVGVFGKTPEPAVAVDATSIAPCGEGFPQCDFEDNAHPF
CDWVQTSGDGGHWALGHKNGPVHGMGPAGGFPNAGDICVEFAYHMYGLGEGTMLELLLGS
PAGSPPIPLWKRVGSQRPYWQNTSVTVPSGHQQPMQLIFKGIQGSNTASVVAMGFILINP
GTCPVKVLPELPPVSPVSSTGPSETTGLTENPTISTKKPTVSIEKPSVTTEKPTVPKEKP
TIPTEKPTISTEKPTIPSEKPNMPSEKPTIPSEKPTILTEKPTIPSEKPTIPSEKPTIST
EKPTVPTEEPTTPTEETTTSMEEPVIPTEKPSIPTEKPSIPTEKPTISMEETIISTEKPT
ISPEKPTIPTEKPTIPTEKSTISPEKPTTPTEKPTIPTEKPTISPEKPTTPTEKPTISPE
KLTIPTEKPTIPTEKPTIPTEKPTISTEEPTTPTEETTISTEKPSIPMEKPTLPTEETTT
SVEETTISTEKLTIPMEKPTISTEKPTIPTEKPTISPEKLTIPTEKLTIPTEKPTIPIEE
TTISTEKLTIPTEKPTISPEKPTISTEKPTIPTEKPTIPTEETTISTEKLTIPTEKPTIS
PEKLTIPTEKPTISTEKPTIPTEKLTIPTEKPTIPTEKPTIPTEKLTALRPPHPSPTATG
LAALVMSPHAPSTPMTSVILGTTTTSRSSTERCPPNARYESCACPASCKSPRPSCGPLCR
EGCVCNPGFLFSDNHCIQASSCNCFYNNDYYEPGAEWFSPNCTEHCRCWPGSRVECQISQ
CGTHTVCQLKNGQYGCHPYAGTATCLVYGDPHYVTFDGRHFGFMGKCTYILAQPCGNSTD
PFFRVTAKNEEQGQEGVSCLSKVYVTLPESTVTLLKGRRTLVGGQQVTLPAIPSKGVFLG
ASGRFVELQTEFGLRVRWDGDQQLYVTVSSTYSGKLCGLCGNYDGNSDNDHLKLDGSPAG
DKEELGNSWQTDQDEDQETCLLHVKAASFFDSCMLDMCGFQGLQHLLCTHMSTMTTTCQD
AGHAVKPWREPHFCPMACPPNSKYSLCAKPCPDTCHSGFSGMFCSDRCVEACECNPGFVL
SGLECIPRSQCGCLHPAGSYFKVGERWYKPGCKELCVCESNNRIRCQPWRCRAQEFCGQQ
DGIYGCHAQGAATCTASGDPHYLTFDGALHHFMGTCTYVLTRPCWSRSQDSYFVVSATNE
NRGGILEVSYIKAVHVTVFDLSISLLRGCKVMLNGHRVALPVWLAQGRVTIRLSSNLVLL
YTNFGLQVRYDGSHLVEVTVPSSYGGQLCGLCGNYNNNSLDDNLRPDRKLAGDSMQLGAA
WKLPESSEPGCFLVGGKPSSCQENSMADAWNKNCAILINPQGPFSQCHQVVPPQSSFASC
VHGQCGTKGDTTALCRSLQAYASLCAQAGQAPAWRNRTFCPMRCPPGSSYSPCSSPCPDT
CSSINNPRDCPKALPCAESCECQKGHILSGTSCVPLGQCGCTDPAGSYHPVGERWYTENT
CTRLCTCSVHNNITCFQSTCKPNQICWALDGLLHCRASGVGVCQLPGESHYVSFDGSNHS
IPDACTLVLVKVCHPAMALPFFKISAKHEKEEGGTEAFRLHEVYIDIYDAQVTLQKGHRV
LINSKQVTLPAISQIPGVSVKSSSIYSIVNIKIGVQVKFDGNHLLEIEIPTTYYGKVCGM
CGNFNDEEEDELMMPSDEVANSDSEFVNSWKDKDIDPSCQSLLVDEQQIPAEQQENPSGN
CRAADLRRAREKCEAALRAPVWAQCASRIDLTPFLVDCANTLCEFGGLYQALCQALQAFG
ATCQSQGLKPPLWRNSSFCPLECPAYSSYTNCLPSCSPSCWDLDGRCEGAKVPSACAEGC
ICQPGYVLSEDKCVPRSQCGCKDAHGGSIPLGKSWVSSGCTEKCVCTGGAIQCGDFRCPS
GSHCQLTSDNSNSNCVSDKSEQCSVYGDPRYLTFDGFSYRLQGRMTYVLIKTVDVLPEG

>gi568815591r:100581722_100788111|GENSCAN_predicted_CDS_11|7017_bp
atggttcctccagtctggactctgctgcttctggtgggggctgcccttttcaggaaagag
aagcctccggaccagaagctggttgttcgcagctctagggacaactatgtcctcacccag
tgtgattttgaggatgacgccaaacccctctgtgactggtcccaagtgtccgcagacgat
gaagactgggttcgagccagtgggccctctcccaccggctccaccggggcccccgggggg
taccctaacggagagggcagctatctgcatatggaatcgaacagcttccaccgtggggga
gtggcccgcctgctcagccccgacctatgggagcaaggccccctctgtgtgcactttgcc
caccacatgttcgggctgtcttggggcgcccagctcaggctgctgctgctctcgggtgaa
gagggccgccgccccgatgtgctctggaaacactggaacacccagagaccctcctggatg
ctcaccaccgtcactgtgcccgcagggttcaccctgcccacccggctgatgtttgaggga
acacggggtagcactgcctacctggacatcgccctggatgccctctctatccgccggggc
tcctgtaatcgcgtctgtatgatgcaaacatgcagctttgacattccaaatgacctctgt
gactggacctggatcccaactgcctccggggccaagtggactcagaagaaagggtcatca
ggaaagccaggcgtggggcctgatggcgacttctctagccctggtattgcgtcacctagc
gaggtccacgctgattggctgtctgagctgggggccgaggtggtgttgggtgagaggggg
tttgcctcttgctcctctgtgtcagagccgctgtatctctcgccagtttgcgtgaatagg
ttatgtccagcgggtggctgctacatgctcctggaccccaagaatgcaagacctgggcag
aaagctgtcctcctgagccccgtgagcctgtcctctggctgtctgagcttttccttccac
tacatcctccggggccagtctcctgggagtatccggaaacacactctcttctcaggacaa
cctgggcccaactggcaggctgtttctgtcaattacacagccgtgggacggatacagttt
gccgtggtaggcgtttttggaaagaccccagagccagctgtggcagttgatgcaaccagc
attgctccttgtggggagggttttcctcagtgtgactttgaagacaacgcccatcccttc
tgtgactgggtccagacttccggggatggtggacactgggccctcggacataaaaatgga
cccgtccatggcatgggccctgcgggaggtttccctaatgcaggtgacatctgcgtggag
ttcgcataccacatgtatggccttggggagggtactatgctcgaactcctcctgggaagt
cctgcggggagtcccccgattcctctctggaaacgcgtggggtctcagcgcccttactgg
cagaacacctccgtcaccgtcccctcaggacaccaacagcccatgcagcttattttcaag
ggcatccagggaagcaacacggcctctgtggttgctatgggtttcatcttgatcaatcct
gggacttgtccagtaaaagtgctaccagagcttcctcccgtatctccagtttcttccact
ggcccttctgaaaccactggcctcacagaaaaccctacaatctccaccaagaaacctaca
gtttccatagaaaaacccagtgtcaccacagaaaagcccacagtccccaaagaaaagccc
accattcccacagaaaaacccaccatctccacagaaaaacccaccattccttcagaaaaa
cccaacatgccctcagaaaaacccaccattccctcagaaaaacccaccatcctcacagaa
aaacccaccattccctcagaaaaacccaccattccctcagaaaaacccaccatttccaca
gaaaaacccaccgtccccacagaagagcccaccacccccactgaggagaccaccacctcc
atggaagagcctgtcatccctacagaaaaacccagcatccctacagaaaaacccagcatc
cccacggaaaaacccaccatctccatggaagagactatcatctccacagaaaaacccacc
atctccccagaaaaacccaccatccccacagaaaaacccaccatccccacagaaaaatcc
accatctccccagaaaaacccaccacccccacagaaaaacccaccatccccacagaaaaa
cccaccatctccccagaaaaacccaccacccccacagaaaaacccaccatctccccagaa
aaactcaccatccccacagaaaaacccaccatccccacagaaaaacccaccattcccaca
gaaaaacccaccatctccacagaagagcccaccacccccactgaggagaccaccatctcc
acagaaaaacccagcatccccatggaaaaacccactctccccactgaagaaaccaccacc
tctgttgaagagactaccatctctacagaaaaactcaccatccccatggaaaaacccacc
atctccacagaaaaacccaccatccccacagaaaaacccaccatctccccagaaaaactc
accatccccacggaaaaactcaccatccccacggaaaaacccaccatccccattgaagag
actaccatctccacagaaaaactcaccatccccacagaaaaacccaccatctccccagaa
aaacccaccatctccacggaaaaacccaccatccccacggaaaaacccaccatccccact
gaagagactaccatctccacagaaaaactcaccatccccacagaaaaacccaccatctcc
ccagaaaaactcaccatccccacagaaaaacccaccatctccacggaaaaacccaccatc
cccacggaaaaacttaccatccccacggaaaaacccaccatccccacagaaaaacccacc
attcccacagagaagctcacagccctgaggccaccccatcccagccccacagccactggg
ctggcagccttggtgatgtctccacatgctccaagtacccctatgaccagtgtgattctg
ggcactaccacaacctccagatccagtacagagcgctgccctccaaatgcccgctacgaa
tcctgtgcttgtcctgcttcgtgcaagagccccaggcctagctgtgggcccctctgtcgg
gagggctgtgtctgcaaccctggctttttgtttagtgacaaccactgcatccaggcctct
tcctgcaattgcttctacaacaacgactactatgagcctggggcagagtggttcagcccc
aactgcacagaacattgccgctgctggcccggcagtcgggtcgagtgccagatctctcag
tgtgggacacacaccgtgtgccagcttaagaatggccagtatggatgccacccctacgca
ggcactgccacctgcttggtctacggagaccctcattatgtcacctttgacgggaggcac
tttggcttcatgggcaagtgcacttacatcttggcccagccctgtggcaactcaacagac
ccattcttcagggtgacagccaagaatgaggagcagggacaggaaggcgtgtcctgcctg
agcaaagtctacgtgaccctgcccgagagcaccgtcaccctgcttaagggcagacgcact
ctggttgggggtcagcaagttactctcccagccataccctctaaaggcgtcttcctgggt
gcaagcgggcggtttgtggagctgcagacggagttcggtttgcgggtgagatgggatggt
gaccagcagctgtatgttactgtgtccagcacatactctggcaaactctgtggtttgtgt
gggaactatgacggcaacagtgacaatgaccacctgaagttggacggcagcccagcagga
gacaaggaggagctggggaacagctggcagacggaccaggacgaggaccaggagacatgc
ctgctgcacgtgaaggccgcttccttcttcgacagctgcatgcttgatatgtgcggattc
caggggctgcagcacctgctgtgcacacacatgtccaccatgaccaccacctgccaggac
gcaggccacgctgtgaagccctggagggaaccccacttctgcccaatggcctgcccgccc
aacagcaagtactccctgtgtgcgaagccatgccctgacacctgccattcaggattctcc
ggcatgttctgctcagaccggtgcgtggaggcctgtgaatgcaatccgggcttcgtcctc
agtggcctcgagtgcatacctcgctcccagtgtgggtgcctccaccctgcaggcagctac
ttcaaggtaggggagcggtggtacaagccaggctgcaaagagttgtgcgtctgtgaaagc
aacaacagaattcgctgccagccctggaggtgtagggcccaggagttctgtggccaacag
gatggtatctatggctgccatgcccaaggtgccgccacctgcacagcctcgggtgacccc
cactacctgaccttcgatggcgccttgcaccacttcatgggcacctgcacctatgtcctg
acccggccttgctggtccaggtcccaagacagctattttgttgtgagcgccaccaacgag
aaccgcggggggatcctggaggtctcctacatcaaagccgtccacgtgacagtctttgac
ctcagcatctcactgctcagaggctgtaaggtcatgctgaatggccatcgggtggcccta
cctgtgtggcttgcacaaggccgggtgaccataaggctcagcagcaacctcgtcctcctc
tacacgaactttgggctccaagttcgctacgacgggagccacttggtggaagtgacagtc
ccctcctcctatggcggccagctctgtgggctgtgtgggaactacaacaacaacagcttg
gatgacaacctgcgccccgacagaaagcttgcaggcgattccatgcagctgggggccgcc
tggaagttacctgaatcctctgaacctggctgtttccttgtgggtggcaagccctccagc
tgccaggagaacagcatggcagacgcctggaacaagaactgtgcgatcttaataaaccct
cagggacccttctctcaatgtcaccaggtggtgcctccccagtccagctttgccagttgc
gtgcatggtcagtgtgggaccaagggcgacaccacagccctgtgccgctccctgcaggcc
tacgcgtccctgtgtgcccaggctggccaggcccctgcctggcggaacagaaccttctgc
cctatgaggtgcccacctggcagcagctacagcccctgcagcagcccctgcccagacacc
tgcagcagcataaacaacccgagggactgccccaaagcactgccctgtgctgagagctgt
gaatgtcagaaaggccacatcttgagtggaacctcctgcgtgccccttggccagtgtggc
tgcactgacccagcgggctcctaccacccggtcggggagcgctggtacacagagaacacc
tgcaccaggctctgcacctgctccgtccacaacaacatcacctgcttccagagcacctgc
aaacccaaccagatatgctgggccctggatgggctgctccattgtcgggcctcaggtgtg
ggagtgtgtcagctcccaggggagtcccactacgtgagctttgatggtagtaaccattct
atcccggacgcctgcactcttgtcctggtgaaagtgtgccaccccgccatggccttgccc
ttcttcaagatcagtgccaagcatgagaaggaggaaggtggaactgaggctttccgcctt
catgaggtctacattgacatctacgatgcccaggtcaccctgcagaagggccaccgtgtg
ctaatcaacagcaaacaggtcaccctccccgccatctcccagatccctggggtcagtgtc
aagtccagcagcatctacagcattgttaacatcaagatcggggtgcaagtcaagtttgac
gggaatcatctcttagagattgaaatccccacaacctactatggaaaggtctgcggcatg
tgtgggaacttcaatgatgaggaagaggacgaactaatgatgcccagcgatgaagtagca
aatagtgacagtgaatttgtgaacagttggaaagataaggacattgacccaagttgtcag
agtctcctggtagatgagcagcagattccagcggaacagcaggagaacccgagtggaaac
tgcagggcggccgacctccgcagggcgcgggaaaagtgcgaggcagcgctccgggctcct
gtgtgggcccagtgcgcctcccgcatagacctcacgcccttcctggtggactgtgcaaac
accctctgtgagttcggaggtctctaccaggccctctgccaggctctgcaagccttcggg
gccacctgccagagccaggggctcaagcccccactctggagaaacagcagcttctgccct
ctggaatgccctgcctacagcagctacaccaactgccttccctcctgctcaccctcctgc
tgggacctggatggccggtgtgagggcgccaaagtcccctctgcctgcgctgagggctgc
atttgtcagcccggctatgtgctgagtgaagacaagtgtgtccccagaagtcagtgtggc
tgcaaggatgcccatggtggctccatccctctgggcaagagctgggtctccagcggttgc
acggagaagtgtgtctgcacgggaggagccattcagtgcggggacttccgatgcccctct
gggtcccactgccagctcacttccgacaacagcaacagcaattgtgtctcagacaagtct
gaacaatgctcagtctatggcgacccccgttacctcacatttgacggcttcagctaccgc
ttgcaaggccgcatgacctatgttctgatcaagactgtggacgtactgcctgagggg
Inquiries or Suggestions ?
Send a message to flexiclone AT kazusagt.com