Result of GENSCAN for pF1KB6787
GENSCAN 1.0	Date run:  4-Nov-116	Time: 15:15:04

Sequence gi568815587r:118915848_119118054 : 202207 bp : 50.62% C+G : Isochore 2 (43 - 51 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..
----- ---- - ------ ------ ---- -- -- ---- ---- ----- ----- ------

 1.05 PlyA -   1476   1471    6                               1.05
 1.04 Term -  12305  12232   74  0  2  132   47    45 0.305   2.87
 1.03 Intr -  14702  14634   69  0  0   82   58    55 0.161   1.05
 1.02 Intr -  30380  30267  114  0  0   21  116    39 0.089   0.42
 1.01 Init -  32221  32173   49  1  1   23  110    57 0.136   2.51
 1.00 Prom -  33737  33698   40                              -2.46

 2.00 Prom +  34029  34068   40                              -6.46
 2.01 Init +  40504  40579   76  0  1   90   20   192 0.968  11.85
 2.02 Intr +  41036  41167  132  0  0   57   52   127 0.874   6.62
 2.03 Intr +  42250  42382  133  2  1   95   80   172 0.135  16.80
 2.04 Intr +  45114  45239  126  0  0   80   40    87 0.040   2.89
 2.05 Intr +  45950  46127  178  2  1   53   50    55 0.009  -1.88
 2.06 Intr +  55773  56145  373  2  1   58   92   183 0.871  10.34
 2.07 Intr +  62935  63009   75  2  0   87   88    38 0.899   3.19
 2.08 Intr +  63110  63357  248  0  2   73   69   172 0.985  10.98
 2.09 Intr +  63595  63821  227  0  2   90   88   108 0.994   7.78
 2.10 Intr +  64643  64881  239  2  2  114   64    88 0.873   6.26
 2.11 Term +  65361  65389   29  1  2  135   40    21 0.903   0.24
 2.12 PlyA +  72663  72668    6                               1.05

 3.00 Prom +  74412  74451   40                              -4.46
 3.01 Init +  82351  82470  120  0  0   75   80   166 0.980  14.77
 3.02 Intr +  82583  82746  164  1  2  100   94   290 0.999  29.57
 3.03 Intr +  83164  83262   99  1  0   80  101    85 0.985   8.23
 3.04 Intr +  94917  94983   67  0  1   94  107   106 0.975  12.01
 3.05 Intr +  95374  95436   63  0  0   73   73    70 0.814   2.91
 3.06 Intr +  97385  97415   31  1  1   77  110    28 0.993   1.60
 3.07 Intr +  99147  99236   90  1  0   71  106    92 0.989   9.27
 3.08 Intr +  99460  99592  133  2  1   24   91   117 0.780   5.30
 3.09 Term +  99691  99751   61  1  1  114   37    27 0.788  -2.52
 3.10 PlyA +  99873  99878    6                               1.05

 4.05 PlyA -  99886  99881    6                               1.05
 4.04 Term - 100092  99998   95  1  2  116   42    50 0.996   1.19
 4.03 Intr - 101698 101515  184  1  1   44  100   137 0.968   9.86
 4.02 Intr - 102206 102111   96  2  0   70   70   202 0.999  16.81
 4.01 Init - 102437 102435    3  2  0   57  103     0 0.999  -1.60
 4.00 Prom - 102667 102628   40                              -7.26

 5.00 Prom + 102709 102748   40                             -15.42
 5.01 Init + 102949 103123  175  0  1  108   64   203 0.995  19.41
 5.02 Intr + 103296 103470  175  1  1   61   99   258 0.929  23.20
 5.03 Intr + 104303 104406  104  2  2   54   85   109 0.988   7.02
 5.04 Intr + 105913 106039  127  2  1   79  111    63 0.897   7.44
 5.05 Term + 107474 107552   79  2  1   46   44   102 0.874  -1.16
 5.06 PlyA + 107796 107801    6                               1.05

 6.35 PlyA - 108287 108282    6                              -1.95
 6.34 Term - 109229 109063  167  0  2   72   49   198 0.999  12.38
 6.33 Intr - 109482 109344  139  0  1   90  115   109 0.999  13.84
 6.32 Intr - 110233 110120  114  1  0   59   86   152 0.992  12.74
 6.31 Intr - 110841 110756   86  1  2   99  105   144 0.997  16.74
 6.30 Intr - 111248 111090  159  0  0   96   82   180 0.998  18.16
 6.29 Intr - 112025 111875  151  2  1   92  -50    90 0.008  -4.66
 6.28 Intr - 112579 112347  233  2  2  105  113   189 0.994  20.59
 6.27 Intr - 113515 113375  141  2  0   54   80   197 0.569  15.82
 6.26 Intr - 113717 113545  173  1  2  132   58   -15 0.510  -0.51
 6.25 Intr - 114622 114323  300  0  0   87   57    75 0.181   0.15
 6.24 Intr - 115001 114725  277  0  1   76   47   142 0.075   5.48
 6.23 Intr - 130620 130570   51  1  0  116  105    52 0.991   8.58
 6.22 Intr - 130955 130715  241  2  1   84   94   322 0.999  29.52
 6.21 Intr - 131971 131887   85  0  1  107   24   100 0.979   5.32
 6.20 Intr - 132233 132100  134  2  2   56   63   164 0.999  10.14
 6.19 Intr - 132523 132401  123  1  0   91   65   191 0.969  17.88
 6.18 Intr - 132716 132629   88  1  1  138   82   133 0.968  17.67
 6.17 Intr - 133039 132867  173  1  2   83  100   195 0.999  18.94
 6.16 Intr - 133356 133171  186  0  0   66   99   244 0.997  23.19
 6.15 Intr - 133788 133709   80  1  2   90  109    81 0.997   9.67
 6.14 Intr - 133990 133930   61  1  1   93   63    53 0.941   1.61
 6.13 Intr - 135326 135188  139  1  1  113   76   209 0.988  22.67
 6.12 Intr - 135778 135591  188  1  2   59   85   319 0.999  27.19
 6.11 Intr - 136104 135972  133  2  1   36  105   221 0.978  19.25
 6.10 Intr - 136325 136243   83  2  2   92   89    94 0.999   8.34
 6.09 Intr - 136582 136448  135  1  0   75   93   165 0.975  16.46
 6.08 Intr - 136982 136790  193  1  1  109   49   241 0.976  21.79
 6.07 Intr - 138389 138274  116  2  2   76  110   137 0.932  13.95
 6.06 Intr - 138828 138647  182  1  2   74   99   269 0.999  26.19
 6.05 Intr - 139213 139137   77  0  2  113  109    55 0.999   9.26
 6.04 Intr - 139492 139338  155  1  2  112   80   170 0.999  17.47
 6.03 Intr - 139724 139646   79  1  1   80   89    80 0.954   6.85
 6.02 Intr - 139996 139903   94  2  1  108   50   146 0.999  11.82
 6.01 Init - 141357 141306   52  0  1   42   73   126 0.860   5.86
 6.00 Prom - 149548 149509   40                              -4.56

 7.00 Prom + 150620 150659   40                              -8.56
 7.01 Init + 151977 152215  239  2  2  109  -13   238 0.760  13.28
 7.02 Intr + 153326 153497  172  2  1   28   97   129 0.766   7.75
 7.03 Intr + 153595 153730  136  0  1   51   25    76 0.995  -2.26
 7.04 Intr + 154387 154550  164  2  2  123   80   133 0.999  15.69
 7.05 Intr + 155749 155996  248  0  2   75   80   325 0.991  26.66
 7.06 Intr + 157351 157510  160  1  1   93    3   217 0.997  13.69
 7.07 Intr + 157953 158104  152  2  2  116   77   148 0.999  15.46
 7.08 Intr + 161050 161236  187  1  1   55   56   392 0.961  32.39
 7.09 Intr + 161654 161800  147  1  0  111  100   212 0.999  25.13
 7.10 Intr + 162031 162219  189  0  0   99   72   281 0.999  27.38
 7.11 Intr + 162326 162487  162  1  0  112   94   226 0.999  25.77
 7.12 Intr + 162718 162857  140  0  2  127   50   267 0.999  26.06
 7.13 Intr + 162948 163150  203  0  2   90   48   362 0.937  31.33
 7.14 Intr + 163282 163453  172  2  1   32   80   343 0.903  26.90
 7.15 Intr + 165245 165467  223  2  1   97   75   157 0.993  13.43
 7.16 Intr + 172408 172461   54  0  0   77   94    72 0.766   5.88
 7.17 Intr + 172788 172860   73  2  1   28   70    93 0.630   0.48
 7.18 Intr + 173235 173284   50  1  2   96   87    15 0.585   0.60
 7.19 Intr + 173340 173425   86  2  2   79   80    84 0.701   5.32
 7.20 Intr + 173836 173913   78  1  0   84   71    76 0.947   4.17
 7.21 Intr + 174143 174220   78  2  0  123  107    16 0.980   5.67
 7.22 Intr + 175553 175679  127  2  1   34   91   220 0.910  17.58
 7.23 Intr + 176278 176316   39  0  0  133   86    27 0.977   5.42
 7.24 Intr + 176557 176676  120  0  0   47   58   135 0.970   7.09
 7.25 Intr + 177088 177174   87  0  0  100   81    18 0.593   2.47
 7.26 Term + 177263 177436  174  1  0   77   36   223 0.999  13.76
 7.27 PlyA + 177681 177686    6                               1.05

 8.04 PlyA - 178051 178046    6                              -1.95
 8.03 Term - 178414 178179  236  2  2  108   37   141 0.956   7.48
 8.02 Intr - 178858 178650  209  0  2   81   64   136 0.959   9.22
 8.01 Init - 179547 179123  425  0  2   71  -30   936 0.954  75.92
 8.00 Prom - 179654 179615   40                              -4.66

 9.10 PlyA - 180293 180288    6                               1.05
 9.09 Term - 181216 181151   66  1  0   97   47   108 0.903   5.54
 9.08 Intr - 181450 181295  156  1  0  102   94   158 0.910  18.01
 9.07 Intr - 181704 181617   88  2  1  104   87    17 0.989   3.17
 9.06 Intr - 182196 182008  189  2  0  113   68    90 0.985   8.20
 9.05 Intr - 182640 182556   85  1  1  107  119   -45 0.976  -0.62
 9.04 Intr - 184561 184415  147  2  0  126  100   157 0.976  20.91
 9.03 Intr - 184980 184783  198  1  0   70   69   218 0.936  17.42
 9.02 Intr - 185291 185125  167  1  2   70   67    77 0.782   3.40
 9.01 Init - 185808 185648  161  0  2   88   50   293 0.988  22.80
 9.00 Prom - 188064 188025   40                              -5.36

10.00 Prom + 190472 190511   40                              -9.75
10.01 Init + 191895 192248  354  2  0   77   84   539 0.989  47.54
10.02 Intr + 194257 194352   96  0  0   76   91    40 0.877   3.31
10.03 Intr + 194714 194833  120  1  0   87   75   110 0.990  10.29
10.04 Intr + 195000 195110  111  2  0   76   94    78 0.995   7.78
10.05 Intr + 195205 195321  117  0  0  122  105   139 0.999  19.66
10.06 Intr + 195416 195527  112  1  1  105  100    77 0.974  10.55
10.07 Intr + 195674 195782  109  0  1   73   65   125 0.965   8.04
10.08 Intr + 196481 196545   65  2  2  138   98    58 0.908  10.16
10.09 Intr + 196635 196762  128  1  2   84   78   -25 0.649  -3.50
10.10 Intr + 196853 197027  175  1  1   72   71   227 0.996  18.91
10.11 Intr + 197764 197865  102  2  0   71   78   103 0.990   7.75
10.12 Intr + 198005 198141  137  0  2   47   87   172 0.712  13.29
10.13 Intr + 198233 198518  286  1  1   95   97   304 0.999  28.91
10.14 Term + 200198 200409  212  0  2  140   55   233 0.934  22.66
10.15 PlyA + 201800 201805    6                               1.05


Suboptimal exons with probability > 0.800

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

S.001 Term +  42250  42386  137  2  2   95   49   200 0.856  14.98
S.002 Intr - 111923 111781  143  1  2   33   84   133 0.988   7.40
S.003 Intr - 112025 111997   29  2  2   92   48    16 0.983  -5.09
S.004 Init + 169187 169219   33  1  0   82  101    58 0.862   6.39


Predicted peptide sequence(s):

Predicted coding sequence(s):


>gi568815587r:118915848_119118054|GENSCAN_predicted_peptide_1|101_aa
MCKDHSGNSVENGLAAERDPVSKNEKEKDKRKIRREWMESFKKEVSNSMKIRIEGRCCSR
KRHTLLSSPVFFFRESPWFHPELVAAQSSAPNPNLEPPLGE

>gi568815587r:118915848_119118054|GENSCAN_predicted_CDS_1|306_bp
atgtgtaaagatcattctggcaacagtgtggagaatggattggcagcagaaagagaccct
gtctccaaaaacgaaaaagaaaaagataagaggaaaatcaggagggagtggatggagagt
ttcaaaaaagaggtgtcaaatagtatgaagatcaggattgaaggaaggtgctgttcccgc
aagaggcacactctactgtcgtcgccagtgttcttcttccgcgaatccccatggttccac
ccagaacttgtggctgcccagagctcagctccgaatcccaacctggaacctccgctgggg
gaatga

>gi568815587r:118915848_119118054|GENSCAN_predicted_peptide_2|611_aa
MAPLLPIRTLPLILILLALLSPGAADFNISSLSGLLSPALTESLLVALPPCHLTGGNATL
MVRRANDSKGRNMESIGLGMARTGGMVVITVLLSVAMFLLVLGFIIALALGSRKSLKLSE
ERVAPLHQQVVSMALSREGTPSAAGCPIVTCYQQKGAGGLGLQLRLGGCSGSGSSLPNSE
GAGLPLAPQSMQTQPRLPAAADMMPAATAITGITDVLDPRHVRVESRRVFLSVPRRGPEE
IKGVKWTAPHLSCRQANSIRAGAFEKAPVRVAPQPPRSHSASPLRAAAPLPAPKVDVKLQ
HLDFWARLHGQVPGLLDWDMGNELFLAFTTSHLPLAEQKLARYKLRIVKPPKLPLEKKPN
PDKDGPDYEPNLWMWVNPNIVYPPGKLEVSGRRKREDLTSTLPSSQPPQKEEDASCSEAA
GVESLSQSSSKRSPPRKRFAFSPSTWELTEEEEAEDQEDSSSMALPSPHKRAPLQSRRLR
QASSQAGRLWSRPPLNYFHLIALALRNSSPCGLNVQQIYSFTRKHFPFFRTAPEGWKNTV
RHNLCFRDSFEKVPVSMQGGASTRPRSCLWKLTEEGHRRFAEEARALASTRLESIQQCMS
QPDVMPFLFDL

>gi568815587r:118915848_119118054|GENSCAN_predicted_CDS_2|1836_bp
atggcacccctgctgcccatccggaccttgcccttgatcctgattctgctggctctgctg
tccccaggggctgcagacttcaacatctcaagcctctctggtctgctgtccccggcgcta
acggagagcctgctggttgccttgcccccctgtcacctcacaggaggcaatgccacactg
atggtccggagagccaatgacagcaaaggaaggaacatggaatccattgggctgggtatg
gcccgcacagggggcatggtggtcatcacggtgctgctctctgtcgccatgttcctgctg
gtgctgggcttcatcattgccctggcactgggctcccgcaagtctctgaagctctcagaa
gagagggtagctcctctccaccagcaggtcgtctctatggctctcagcagagagggtaca
ccctccgcagctggttgtcccatcgtcacctgctatcagcagaaaggagcaggaggtctg
ggtctgcagctgcgtttgggtggctgcagcggctcggggagctcccttcccaactcagaa
ggggcagggctcccattggccccacagagtatgcagacccagccgcggttacctgctgca
gctgacatgatgccagcagccacggccatcactgggattacagatgtcctcgacccccgg
catgtaagggtagagtcaaggagggtcttcttaagcgttcctcggcgcggtcctgaagag
attaaaggcgtcaaatggaccgctccacacctgagctgccgccaagctaactcaatccga
gccggcgcatttgagaaggcgcctgtgagggtcgctcctcagccgccgcgctcccactcc
gcgtccccactccgcgccgccgcgcctctgccagccccgaaggtggacgtgaagctccaa
cacctcgacttctgggcccgcctccatggccaggtcccgggactgctggactgggacatg
gggaacgagctctttctggccttcaccacatctcacctccccttagcggagcagaaactt
gccaggtataaactccgaattgttaagccaccaaaattacccctagagaaaaaacccaac
cctgataaggatggtccagattatgagcccaacctctggatgtgggtaaatcccaacatt
gtgtatccccctggaaagctggaggtctcaggacgtaggaagagggaggacctgacaagc
acactcccctcctctcagccaccccagaaggaggaagatgccagctgctcagaggccgca
ggggtggaatcactgtcccagtcctccagcaagcggtctccccctcggaagcggtttgcc
ttttcccccagcacctgggagctcacagaagaggaggaggctgaggaccaggaagacagc
tcctctatggctctcccatcccctcacaaaagggcccccctccagagtcggaggcttcgg
caagccagcagccaggcggggaggctctggtcccggccccctctcaattacttccaccta
attgccctggcattaagaaacagttccccctgtggcctcaacgtgcaacagatctacagt
ttcactcgaaagcacttcccctttttccggacggccccggaaggctggaagaatactgtc
cgtcacaatctctgttttcgagacagctttgagaaagtgcctgtcagcatgcagggcggg
gccagcacacggcctcgatcttgcctctggaagttgaccgaggagggacaccgccgcttt
gcggaggaggcccgcgccttggcttccactcggctagaaagtatccaacagtgcatgagc
cagccagatgtgatgcccttcctctttgatctttaa

>gi568815587r:118915848_119118054|GENSCAN_predicted_peptide_3|275_aa
MAPAQRCPLCRQTFFCGRGHVYSRKHQRQLKEALERLLPQVEAARKAIRAAQVERYVPEH
ERCCWCLCCGCEVREHLSHGNLTVLYGGLLEHLASPEHKKATNKFWWENKAEVQMKEKFL
VTPQDYARFKKSMVKGLDSYEEKEDKVIKEMAAQIREVEQSRQEVVRSVLEDIPGVGNIH
SGATPPWMIQDEEYIAGNQEIGPSYEEFLKEKEKQKLKKLPPDRVGANFDHSSRTSAGWL
PSFGRVWNNGRRWQSRHQFKTEAAAMKKQSHTEKS

>gi568815587r:118915848_119118054|GENSCAN_predicted_CDS_3|828_bp
atggcgccggcgcagcgctgccctctgtgccgccagaccttcttctgtggtcgcgggcac
gtttacagccgcaagcaccagcggcagctgaaggaggctttggagaggctcctgccccag
gtggaggcggcccgcaaggccatccgcgccgctcaggtggagcgctatgtgcccgaacac
gagcgatgctgctggtgcctgtgctgcggctgtgaggtgcgggaacacctgagccatgga
aacctgacggtgctgtacggggggctgctggagcatctggccagcccagagcacaagaaa
gcaaccaacaaattctggtgggagaacaaagctgaggtccagatgaaagagaagtttctg
gtcactccccaggattatgcgcgattcaagaaatccatggtgaaaggtttggattcctat
gaagaaaaggaggataaagtgatcaaggagatggcagctcagatccgtgaggtggagcag
agccgacaggaggtggttcggtctgtcttagaggatataccaggagttggtaacatccac
tcaggtgccacacctccctggatgatccaagatgaagaatacattgctgggaaccaagaa
ataggaccatcctatgaagaatttcttaaagaaaaggaaaaacagaagttgaaaaaactc
cccccagaccgagttggggccaactttgatcacagctccaggaccagtgcaggctggctg
ccctcttttggccgcgtctggaataatggacgccgctggcagtccagacatcaattcaaa
actgaagctgcagcaatgaagaagcagtcacatacagaaaaaagctaa

>gi568815587r:118915848_119118054|GENSCAN_predicted_peptide_4|125_aa
MPPKDDKKKKDAGKSAKKDKDPVNKSGGKAKKKKWSKGKVRDKLNNLVLFDKATYDKLCK
EVPNYKLITPAVVSERLKIRGSLARAALQELLSKGLIKLVSKHRAQVIYTRNTKGGDAPA
AGEDA

>gi568815587r:118915848_119118054|GENSCAN_predicted_CDS_4|378_bp
atgccgcctaaggacgacaagaagaagaaggacgctggaaagtcggccaagaaagacaaa
gacccagtgaacaaatccgggggcaaggccaaaaagaagaagtggtccaaaggcaaagtt
cgggacaagctcaataacttagtcttgtttgacaaagctacctatgataaactctgtaag
gaagttcccaactataaacttataaccccagctgtggtctctgagagactgaagattcga
ggctccctggccagggcagcccttcaggagctccttagtaaaggacttatcaaactggtt
tcaaagcacagagctcaagtaatttacaccagaaataccaagggtggagatgctccagct
gctggtgaagatgcatga

>gi568815587r:118915848_119118054|GENSCAN_predicted_peptide_5|219_aa
MAIFSVYVVNKAGGLIYQLDSYAPRAEAEKTFSYPLDLLLKLHDERVLVAFGQRDGIRVG
HAVLAINGMDVNGRYTADGKEVLEYLGNPANYPVSIRFGRPRLTSNEKLMLASMFHSLFA
IGSQLSPEQGSSGIEMLETDTFKLHCYQTLTGIKFVVLADPRQAGIDSLLRKIYEIYSDF
ALKNPFYSLEMPIRCELFDQNLKLALEVAEKAGTFGPGS

>gi568815587r:118915848_119118054|GENSCAN_predicted_CDS_5|660_bp
atggcgatttttagtgtgtatgtggtgaacaaagctggcggcttgatttaccagttggac
agctacgcgccacgggctgaggctgagaaaactttcagttatccgctggatctgctgctc
aagctacacgatgagcgtgtgttggttgctttcggccagcgggacggcatccgagtgggt
catgcagtgctggccatcaatggcatggacgtgaatggcaggtacacggccgacgggaaa
gaggtgctggagtatctgggtaaccctgctaattacccggtgtccattcgatttggccgg
ccccgcctcacttctaatgagaagcttatgctggcctccatgttccactcgctctttgcc
atcggctcccagctgtctcctgaacagggaagctcaggcattgagatgctggagacagac
acattcaaattgcactgctaccagacactgacagggatcaagtttgtggttctagcagat
cctaggcaagctggaatagattctcttctccgaaagatttatgagatttactcagacttt
gccctcaagaatccattctattccttagaaatgcctatcaggtgtgagctctttgaccag
aacctgaagctagctctggaggtggcagagaaggctggaacttttggacctgggtcatag

>gi568815587r:118915848_119118054|GENSCAN_predicted_peptide_6|1595_aa
MSARRVRGRLVRETPPRDTLAVMSVDLGSESMKVAIVKPGVPMEIVLNKESRRKTPVIVT
LKENERFFGDSAASMAIKNPKATLRYFQHLLGKQADNPHVALYQARFPEHELTFDPQRQT
VHFQISSQLQFSPEEVLGMVLNYSRSLAEDFAEQPIKDAVITVPVFFNQAERRAVLQAAR
MAGLKVLQLINDNTATALSYGVFRRKDINTTAQNIMFYDMGSGSTVCTIVTYQMVKTKEA
GMQPQLQIRGVGFDRTLGGLEMELRLRERLAGLFNEQRKGQRAKDVRENPRAMAKLLREA
NRLKTVLSANADHMAQIEGLMDDVDFKAKVTRVEFEELCADLFERVPGPVQQALQSAEMS
LDEIEQVILVGGATRVPRVQEVLLKAVGKEELGKNINADEAAAMGAVYQAAALSKAFKVK
PFVVRDAVVYPILVEFTREVEEEPGIHSLKHNKRVLFSRMGPYPQRKVITFNRYSHDFNF
HINYGDLGFLGPEDLRVFGSQNLTTVKLKGVGDSFKKYPDYESKGIKAHFNLDESGVLSL
DRVESVFETLVEDSAEEESTLTKLGNTISSLFGGGTTPDAKENGTDTVQEEEESPAEGSK
DEPGEQVELKEEAEAPVEDGSQPPPPEPKGDATPEGEKATEKENGDKSEAQKPSEKAEAG
PEGVAPAPEGEKKQKPARKRRMVEEIGVELVVLDLPDLPEDKLAQSVQKLQDLTLRDLEK
QEREKAANSLEAFIFETQDKLYQPEYQEVSTEEQREEISGKLSAASTWLEDEGVGATTVM
LKEKLAELRKLCQGLFFRVEERKKWPERLSALDNLLNHSSMFLKGARLIPEMDQIFTEVE
MTTLEKVINETWAWKNATLAEQAKLPATEKPVLLSKDIEAKMMALDREVQYLLNKAKFTK
PRPRPKDKNGTRAEPPLNASASDQGEKVIPPAGQTEDAEPISEPEKVETGRRRYAGEGSH
LRAGISGLGEPLLANPNFRYDPELFLQFQRQFMGLGATEALSLTTSTRPLSIAPVLWSPH
LSSSCTPGPRGSQPHSSVSWVALSLWVPEARGLRENTCGRPLRVRLRLLLQLLSQLSGKA
GACCRGPGRDGCALQPEARRGTFPPTSCPVPLLAAPANVPQVGNQTLQPPASPKEAQTDV
AGTLGPLGASPGLMIVQKAAIKGAWEAGWRREQKKPNSADLGTVRAASRNCGQRLCVLAA
QGYGYYRTVIFSAMFGGYSLYYFNRKTFSFVMPSLVEEIPLDKDDLGFITSSQSAAYAIS
KFVSGVLSDQMSARWLFSSGLLLVGLVNIFFAWSSTVPVFAALWFLNGLAQGLGWPPCGK
VLRKWFEPSQFGTWWAILSTSMNLAGGLGPILATILAQSYSWRSTLALSGALWCGSLKEE
STLQELLLSPYLWVLSTGYLVVFGVKTCCTDWGQFFLIQEKGQSALVGSSYMSALEVGGL
VGSIAAGYLSDRAMAKAGLSNYGNPRHGLLLFMMAGMTVSMYLFRVTVTSDSPKLWILVL
GAVFGFSSYGPIALFGVIANESAPPNLCGTSHAIVGLMANVGGFLAGLPFSTIAKHYSWS
TAFWVAEVICAASTAAFFLLRNIRTKMGRVSKKAE

>gi568815587r:118915848_119118054|GENSCAN_predicted_CDS_6|4788_bp
atgagcgcgcgccgcgtccggggccggctggtgcgcgagacgccgccgagagatacactg
gcagtgatgtctgtggacctgggcagtgagtccatgaaggtggccattgtcaaacctgga
gtgcccatggaaattgtcttgaataaggaatctcggaggaaaacaccggtgatcgtgacc
ctgaaagaaaatgaaagattctttggagacagtgcagcaagcatggcgattaagaatcca
aaggctacgctacgttacttccagcacctcctggggaagcaggcagataacccccatgta
gctctttaccaggcccgcttcccggagcacgagctgactttcgacccacagaggcagact
gtgcactttcagatcagctcgcagctgcagttctcacctgaggaagtgttgggcatggtt
ctcaattattctcgttctctagctgaagattttgcagagcagcccatcaaggatgcagtg
atcaccgtgccagtcttcttcaaccaggccgagcgccgagctgtgctgcaggctgctcgt
atggctggcctcaaagtgctgcagctcatcaatgacaacaccgccactgccctcagctat
ggtgtcttccgccggaaagatattaacaccactgcccagaatatcatgttctatgacatg
ggctcaggcagcaccgtatgcaccattgtgacctaccagatggtgaagactaaggaagct
gggatgcagccacagctgcagatccggggagtaggatttgaccgtaccctggggggcctg
gagatggagctccggcttcgagaacgcctggctgggcttttcaatgagcagcgcaagggt
cagagagcaaaggatgtgcgggagaacccgcgtgccatggccaagctgctgcgtgaggct
aatcggctcaaaaccgtcctcagtgccaacgctgaccacatggcacagattgaaggcctg
atggatgatgtggacttcaaggcaaaagtgactcgtgtggaatttgaggagttgtgtgca
gacttgtttgagcgggtgcctgggcctgtacagcaggccctccagagtgccgaaatgagt
ctggatgagattgagcaggtgatcctggtgggtggggccactcgggtccccagagttcag
gaggtgctgctgaaggccgtgggcaaggaggagctggggaagaacatcaatgcagatgaa
gcagccgccatgggggcagtgtaccaggcagctgcgctcagcaaagcctttaaagtgaag
ccatttgtcgtccgagatgcagtggtctaccccatcctggtggagttcacgagggaggtg
gaggaggagcctgggattcacagcctgaagcacaataaacgggtactcttctctcggatg
gggccctaccctcaacgcaaagtcatcacctttaaccgctacagccatgatttcaacttc
cacatcaactacggcgacctgggcttcctggggcctgaagatcttcgggtatttggctcc
cagaatctgaccacagtgaagctaaaaggggtgggtgacagcttcaagaagtatcctgac
tacgagtccaagggcatcaaggctcacttcaacctggatgagagtggcgtgctcagtcta
gacagggtggagtctgtatttgagacactggtagaggacagcgcagaagaggaatctact
ctcaccaaacttggcaacaccatttccagcctgtttggaggcggtaccacaccagatgcc
aaggagaatggtactgatactgtccaggaggaagaggagagccctgcagaggggagcaag
gacgagcctggggagcaggtggagctcaaggaggaagctgaggccccagtggaggatggc
tctcagcccccaccccctgaacctaagggagatgcaacccctgagggagaaaaggccaca
gaaaaagaaaatggggacaagtctgaggcccagaaaccaagtgagaaggcagaggcaggg
cctgagggcgtcgctccagccccagagggagagaagaagcagaagcccgccaggaagcgg
cgaatggtagaggagatcggggtggagctggttgttctggacctgcctgacttgccagag
gataagctggctcagtcggtgcagaaacttcaggacttgacactccgagacctggagaag
caggaacgggaaaaagctgccaacagcttggaagcattcatatttgagacccaggacaag
ctgtaccagcccgagtaccaggaagtgtccacagaggagcagcgtgaggagatctctggg
aagctcagcgccgcatccacctggctggaggatgagggtgttggagccaccacagtgatg
ttgaaggagaagctggctgagctgaggaagctgtgccaagggctgttttttcgggtagag
gagcgcaagaagtggcccgaacggctgtctgccctcgataatctcctcaaccattccagc
atgttcctcaagggggcccggctcatcccagagatggaccagatcttcactgaggtggag
atgacaacgttagagaaagtcatcaatgagacctgggcctggaagaatgcaactctggcc
gagcaggctaagctgcccgccacagagaagcctgtgttgctctcaaaagacattgaagct
aagatgatggccctggaccgagaggtgcagtatctgctcaataaggccaagtttaccaag
ccccggccccggcctaaggacaagaatgggacccgggcagagccacccctcaatgccagt
gccagtgaccagggggagaaggtcatccctccagcaggccagactgaagatgcagagccc
atttcagaacctgagaaagtagagactggtaggaggcggtatgcgggggaggggagtcac
ctgagggcggggatctcaggtcttggggagccattgttggcgaaccccaacttccgatac
gacccggagctgttcctgcagttccagagacaattcatgggtcttggggccaccgaggcg
ctgtccctgaccaccagcacgagacccctttctatcgcgccagtcctgtggtctccgcac
ctctccagctcctgcacccccggcccccgtggttcccagccgcacagtagcgtgtcctgg
gtagcgctgagcctctgggtgccagaagcgcggggcctccgggagaatacgtgcggtcgc
ccgctccgcgtgcgcctacgccttctgctccagttgctttcccaattgagcggaaaagcc
ggggcatgttgccggggccctgggcgggacggttgtgccctgcagcccgaagcccgccgg
ggcaccttcccgcccacgagctgcccagtccctctgcttgcggcccctgccaacgtccca
caggttggaaaccagaccctgcagcccccagctagcccgaaggaagcccagactgacgtc
gcagggacactgggtccccttggagcctccccaggcttaatgattgtccagaaggcggct
ataaagggagcctgggaggctgggtggaggagggagcagaaaaaacccaactcagcagat
ctgggaactgtgagagcggcaagcaggaactgtggtcagaggctgtgcgtcttggctgcc
cagggctatggctattatcgcactgtgatcttctcagccatgtttgggggctacagcctg
tattacttcaatcgcaagaccttctcctttgtcatgccatcattggtggaagagatccct
ttggacaaggatgatttggggttcatcaccagcagccagtcggcagcttatgctatcagc
aagtttgtcagtggggtgctgtctgaccagatgagtgctcgctggctcttctcttctggg
ctgctcctggttggcctggtcaacatattctttgcctggagctccacagtacctgtcttt
gctgccctctggttccttaatggcctggcccaggggctgggctggcccccatgtgggaag
gtcctgcggaagtggtttgagccatctcagtttggcacttggtgggccatcctgtcaacc
agcatgaacctggctggagggctgggccctatcctggcaaccatccttgcccagagctac
agctggcgcagcacgctggccctatctggggcactgtggtgtggctccttgaaggaggag
agcaccctgcaggagctgctgctgtccccttacctgtgggtgctctccactggttacctt
gtggtgtttggagtaaagacctgctgtactgactggggccagttcttccttatccaggag
aaaggacagtcagcccttgtaggtagctcctacatgagtgccctggaagttgggggcctt
gtaggcagcatcgcagctggctacctgtcagaccgggccatggcaaaggcgggactgtcc
aactacgggaaccctcgccatggcctgttgctgttcatgatggctggcatgacagtgtcc
atgtacctcttccgggtaacagtgaccagtgactcccccaagctctggatcctggtattg
ggagctgtatttggtttctcctcgtatggccccattgccctgtttggagtcatagccaac
gagagtgcccctcccaacttgtgtggcacctcccacgccattgtgggactcatggccaat
gtgggcggctttctggctgggctgcccttcagcaccattgccaagcactacagttggagc
acagccttctgggtggctgaagtgatttgtgcggccagcacggctgccttcttcctccta
cgaaacatccgcaccaagatgggccgagtgtccaagaaggctgagtga

>gi568815587r:118915848_119118054|GENSCAN_predicted_peptide_7|1219_aa
MAAYLQWRRFVFFDKELVKEPLSNDGAAPGATPASGSAASKFLCLPPGITVCDSGRGSLV
FGDILRLELSFPSRDPEEIERLLDYPAHMEGQIWFLPRSLQLTGFQAYKLRVTHLYQLKQ
HNILASVGEDEEGINPLVKIWNLEKRDGGNPLCTRIFPAIPGTEPTVVSCLTVHENLNFM
AIGFTDGSVTLNKGDITRDRHSKTQILHKGNYPVTGLAFRQAGKTTHLFVVTTENVQSYI
VSGKDYPRVELDTHGCGLRCSALSDPSQDLQFIVAGDECVYLYQPDERGPCFAFEGHKLI
AHWFRGYLIIVSRDRKVSPKSEFTSRDSQSSDKQILNIYDLCNKFIAYSTVFEDVVDVLA
EWGSLYVLTRDGRMLFKKNLFEMAINLAKSQHLDSDGLAQIFMQYGDHLYSKGNHDGAVQ
QYIRTIGKLEPSYVIRKFLDAQRIHNLTAYLQTLHRQSLANADHTTLLLNCYTKLKDSSK
LEEFIKKKSESEVHFDVETAIKVLRQAGYYSHALYLAENHAHHEWYLKIQLEDIKNYQEA
LRYIGKLPFEQAESNMKRYGKILMHHIPEQTTQLLKGLCTDYRPSLEGRSDREAPGCRAN
SEEFIPIFANNPRELKAFLEHMSEVQPDSPQGIYDTLLELRLQNWAHEKDPQVKEKLHAE
AISLLKSGRFCDVFDKALVLCQMHDFQDGVLYLYEQGKLFQQIMHYHMQHEQYRQVISVC
ERHGEQDPSLWEQALSYFARKEEDCKEYVAAVLKHIENKNLMPPLLVVQTLAHNSTATLS
VIRDYLVQKLQKQSQQIAQDELRVRRYREETTRIRQEIQELKASPKIFQKTKCSICNSAL
ELPSVHFLCGHSFHQHCFESYSESDADCPTCLPENRKVMDMIRAQEQKRDLHDQFQHQEE
NSPKMRVIRVGTRKSQLARIQTDSVVATLKASYPGLQFEIIAMSTTGDKILDTALSKGFT
QALSVRQIGEKSLFTKELEHALEKNEVDLVVHSLKDLPTVLPPGFTIGAICKRENPHDAV
VFHPKFVGKTLETLPEKSNSPQRGNLNTRLRKLDEQQEFSAIILATAGLQRMGWHNRVGQ
ILHPEECMYAVGQGALGVEVRAKDQDILDLVGVLHDPETLLRCIAERAFLRHLLYLTGGV
WSLDGSDSIQETMQATIHVPAQHEDGPEDDPQLVGITARNIPRGPQLAAQNLGISLANLL
LSKGAKNILDVARQLNDAH

>gi568815587r:118915848_119118054|GENSCAN_predicted_CDS_7|3660_bp
atggcggcctacctgcagtggcggcgcttcgttttcttcgacaaggagctggtgaaggag
ccgctgagcaatgatggggccgctcccggggccacacctgcttctggatccgctgcttcc
aagttcctttgcctccctcctggcatcactgtctgcgactcaggccgagggagcctggtc
tttggagatatccttcgtttggagctgtcttttccctcccgggatcccgaagagatcgag
aggctccttgactaccctgcacatatggaaggccagatctggttcttgccacgttcccta
cagcttacaggcttccaagcctacaaactacgggtgacacacctgtaccaactgaagcag
cacaatattctggcatctgttggagaagatgaagagggcatcaaccccttggttaagatc
tggaacctggagaagagagatggtggcaatccactctgcactcgaatcttccctgctatt
ccaggaacagagccaactgttgtatcttgtttgactgtccatgaaaatctcaactttatg
gccattggtttcacagatggcagtgttacattgaacaaaggagacatcacccgggaccgg
catagcaagacccagattttgcacaagggcaactatcctgtaactggattggcctttcgc
caagcaggaaagaccactcacttgtttgttgtgacaacagagaacgtccagtcctatata
gtttctggaaaagactaccctcgcgtggagttggacacccatggttgtggcctgcgctgc
tcagccctaagtgacccttctcaggacctgcagttcattgtggccggggatgagtgtgtc
tacttgtaccagcctgatgaacgtgggccctgcttcgcctttgagggccataagctcatt
gcccactggtttagaggctaccttatcattgtctcccgtgaccggaaggtttctcccaag
tcagagtttaccagcagggattcacagagctccgacaagcagattctaaacatctatgac
ctgtgcaacaagttcatagcctatagcaccgtctttgaggatgtagtggatgtgcttgct
gagtggggctccctgtacgtgctgacgcgggatgggcggatgctgtttaagaagaaccta
tttgagatggcgattaaccttgccaagagccagcatctggacagtgatgggctggcccag
attttcatgcagtatggagaccatctctacagcaagggcaaccacgatggggctgtccag
caatatatccgaaccattggaaagttggagccatcctacgtgatccgcaagtttctggat
gcccagcgcattcacaacctgactgcctacctgcagaccctgcaccgacaatccctggcc
aatgccgaccataccaccctgctcctcaactgctataccaagctcaaggacagctcgaag
ctggaggagttcatcaagaaaaagagtgagagtgaagtccactttgatgtggagacagcc
atcaaggtcctccggcaggctggctactactcccatgccctgtatctggcggagaaccat
gcacatcatgagtggtacctgaagatccagctagaagacattaagaattatcaggaagcc
cttcgatacatcggcaagctgccttttgagcaggcagagagcaacatgaagcgctacggc
aagatcctcatgcaccacataccagagcagacaactcagttgctgaagggactttgtact
gattatcggcccagcctcgaaggccgcagcgatagggaggccccaggctgcagggccaac
tctgaggagttcatccccatctttgccaataacccgcgagagctgaaagccttcctagag
cacatgagtgaagtgcagccagactcaccccaggggatctacgacacactccttgagctg
cgactgcagaactgggcccacgagaaggatccacaggtcaaagagaagcttcacgcagag
gccatttccctgctgaagagtggtcgcttctgcgacgtctttgacaaggccctggtcctg
tgccagatgcacgacttccaggatggtgtcctttacctttatgagcaggggaagctgttc
cagcagatcatgcactaccacatgcagcacgagcagtaccggcaggtcatcagcgtgtgt
gagcgccatggggagcaggacccctccttgtgggagcaggccctcagctacttcgctcgc
aaggaggaggactgcaaggagtatgtggcagctgtcctcaagcatatcgagaacaagaac
ctcatgccacctcttctagtggtgcagaccctggcccacaactccacagccacactctcc
gtcatcagggactacctggtccaaaaactacagaaacagagccagcagattgcacaggat
gagctgcgggtgcggcggtaccgagaggagaccacccgtatccgccaggagatccaagag
ctcaaggccagtcctaagattttccaaaagaccaagtgcagcatctgtaacagtgccttg
gagttgccctcagtccacttcctgtgtggccactccttccaccaacactgctttgagagt
tactcggaaagtgatgctgactgccccacctgcctccctgaaaaccggaaggtcatggat
atgatccgggcccaggaacagaaacgagatctccatgatcaattccagcatcaggaagaa
aacagcccaaagatgagagtgattcgcgtgggtacccgcaagagccagcttgctcgcata
cagacggacagtgtggtggcaacattgaaagcctcgtaccctggcctgcagtttgaaatc
attgctatgtccaccacaggggacaagattcttgatactgcactctctaagggattcact
caggctctttctgtccggcagattggagagaaaagcctgtttaccaaggagcttgaacat
gccctggagaagaatgaagtggacctggttgttcactccttgaaggacctgcccactgtg
cttcctcctggcttcaccatcggagccatctgcaagcgggaaaaccctcatgatgctgtt
gtctttcacccaaaatttgttgggaagaccctagaaaccctgccagagaagagcaactct
ccacagcggggaaacctcaacacccggcttcggaagctggacgagcagcaggagttcagt
gccatcatcctggcaacagctggcctgcagcgcatgggctggcacaaccgggtggggcag
atcctgcaccctgaggaatgcatgtatgctgtgggccagggggccttgggcgtggaagtg
cgagccaaggaccaggacatcttggatctggtgggtgtgctgcacgatcccgagactctg
cttcgctgcatcgctgaaagggccttcctgaggcacctgctgtacctgactggaggagtc
tggagtctagacggctcagatagcatacaagagaccatgcaggctaccatccatgtccct
gcccagcatgaagatggccctgaggatgacccacagttggtaggcatcactgctcgtaac
attccacgagggccccagttggctgcccagaacttgggcatcagcctggccaacttgttg
ctgagcaaaggagccaaaaacatcctggatgttgcacggcagcttaacgatgcccattaa

>gi568815587r:118915848_119118054|GENSCAN_predicted_peptide_8|289_aa
MSGRGKTGGKARAKAKSRSSRAGLQFPVGRVHRLLRKGHYAERVGAGAPVYLAAVLEYLT
AEILELAGNAARDNKKTRIIPRHLQLAIRNDEELNKLLGGVTIAQGGVLPNIQAVLLPKK
TSATVGPKAPSGGKKATQASQEVRAFRMRLGRSSGTSVARKTRACRGEAGGAAPARLGVR
DSAAPSRVAKGLRGGRSTFWKTWPSALTQGRGLRWGRDEALGNRHIFLPSDCLLGGHLGE
GRGLQFGFTAGYVDSKSRFRGSRLAARPVGPPDAAPFPFQQTQLGNPST

>gi568815587r:118915848_119118054|GENSCAN_predicted_CDS_8|870_bp
atgtcgggccgcggcaagactggcggcaaggcccgcgccaaggccaagtcgcgctcgtcg
cgcgccggcctccagttcccagtgggccgtgtacaccggctgctgcggaagggccactac
gccgagcgcgttggcgccggcgcgccagtgtacctggcggcagtgctggagtacctcacc
gctgagatcctggagctggcgggcaatgcggcccgcgacaacaagaagacgcgaatcatc
ccccgccacctgcagctggccatccgcaacgacgaggagctcaacaagctgctgggcggc
gtgacgatcgcccagggaggcgtcctgcccaacatccaggccgtgctgctgcccaagaag
accagcgccaccgtggggccgaaggcgccctcgggcggcaagaaggccacccaggcctcc
caggaggttcgggccttccggatgcggcttgggcgctcttcggggacctccgtggcgcgg
aagacccgagcctgccggggggaggccggcggcgccgcacctgcccgcctcggcgttcgt
gactcagccgccccatcccgagtcgctaaggggctgcggggaggccgcagcaccttctgg
aagacttggccttccgctctgacgcagggccgaggtctgcgctggggccgggacgaagca
cttggtaacaggcacatcttcctcccgagtgactgcctcctaggaggacatttaggggag
ggcagaggcctgcagtttggcttcacggctggctatgtggacagcaagagtcgttttcgc
ggaagccgactggcagccaggcctgtcgggccccccgacgccgccccatttcccttccag
caaactcaactcggcaatccaagcacctag

>gi568815587r:118915848_119118054|GENSCAN_predicted_peptide_9|418_aa
MWAFSELPMPLLINLIVSLLGFVATVTLIPAFRGHFIAARLCGQDLNKTSRQQIPESQGV
ISGAVFLIILFCFIPFPFLNCFVKEQCKAFPHHEVSGFVGVIACGWDLGGALLAICCMIF
LGFADDVLNLRWRHKLLLPTAASLPLLMVYFTNFGNTTIVVPKPFRPILGLHLDLGILYY
VYMGLLAVFCTNAINILAGINGLEAGQSLVISASIIVFNLVELEGDCRDDHVFSLYFMIP
FFFTTLGLLYHNWYPSRVFVGDTFCYFAGMTFAVVGILGHFSKTMLLFFMPQVFNFLYSL
PQLLHIIPCPRHRIPRLNIKTGKLEMSYSKFKTKSLSFLGTFILKVAESLQLVTVHQSET
EDGEFTECNNMTLINLLLKVLGPIHERNLTLLLLLLQILGSAITFSIRYQLVRLFYDV

>gi568815587r:118915848_119118054|GENSCAN_predicted_CDS_9|1257_bp
atgtgggccttctcggaattgcccatgccgctgctgatcaatttgatcgtctcgctgctg
ggatttgtggccacagtcaccctcatcccggccttccggggccacttcattgctgcgcgc
ctctgtggtcaggacctcaacaaaaccagccgacagcagatcccagaatcccagggagtg
atcagcggtgctgttttccttatcatcctcttctgcttcatccctttccccttcctgaac
tgctttgtgaaggagcagtgtaaggcattcccccaccatgaagtaagtgggttcgtgggg
gtgattgcctgtggctgggacctgggaggtgccctccttgccatctgctgcatgatcttc
ctgggctttgcggatgatgtactgaatctgcgctggcgccataagctgctgctacctaca
gctgcctcactacctctcctcatggtctatttcaccaactttggcaacacgaccattgtg
gtgcccaagcccttccgcccgatacttggcctgcatctggacttgggaatcctgtactat
gtctacatggggctgctggcagtgttctgtaccaatgccatcaatatcctagcaggaatt
aacggcctagaggctggccagtcactagtcatttctgcttccatcattgtcttcaacctg
gtagagttggaaggtgattgtcgggatgatcatgtcttttccctctacttcatgataccc
ttttttttcaccactttgggattgctctaccacaactggtacccatcacgggtgtttgtg
ggagataccttctgttactttgctggcatgacctttgccgtggtgggcatcttgggacac
ttcagcaagaccatgctactattcttcatgccccaggtgttcaacttcctctactcactg
cctcagctcctgcatatcatcccctgccctcgccaccgcatacccagactcaatatcaag
acaggcaaactggagatgagctattccaagttcaagaccaagagcctctctttcttgggc
acctttattttaaaggtggcagagagcctccagctggtgacagtacaccagagtgagact
gaagatggtgaattcactgaatgtaacaacatgaccctcatcaacttgctacttaaagtc
cttgggcccatacatgagagaaacctcacattgctcctgctgctgctgcagatcctgggc
agtgccatcaccttctccattcgatatcagctcgttcgactcttctatgatgtctga

>gi568815587r:118915848_119118054|GENSCAN_predicted_peptide_10|707_aa
MDPGWGQRDVGWAALLILFAASLLTVFAWLLQYARGLWLARARGDRGPGPALAGEPAGSL
RELGVWRSLLRLRATRAGAAEEPGVRGLLASLFAFKSFRENWQRAWVRALNEQACRNGSS
IQIAFEEVPQLPPRASISHVTCVDQSEHTMVLRCQLSAEEVRFPVSVTQQSPAAVSMETY
HVTLTLPPTQLEVNLEEIPGEGLLISWAFTDRPDLSLTVLPKLQARERGEEQVELSTIEE
LIKDAIVSTQPAMMVNLRACSAPGGLVPSEKPPMMPQAQPAIPRPNRLFLRQLRASHLGN
ELEGTEELCCVAELDNPMQQKWTKPARAGSEVEWTEDLALDLGPQSRELTLKVLRSSSCG
DTELLGQATLPVGSPSRPLSRRQLCPLTPGPGKALGPAATMAVELHYEEGSPRNLGTPTS
STPRPSITPTKKIELDRTIMPDGTIVTTVTTVQSRPRIDGKLDSPSRSPSKVEVTEKTTT
VLSESSGPSNTSHSSSPGDSHLSNGLDPVAETAIRQLTEPSGRVAKKTPTKRSTLIISGV
SKVPIAQDELALSLGYAASLEASVQDDAGTSGGPSSPPSDPPAMSPGPLDALSSPTSVQE
ADETTRSDISERPSVDDIESETGSTGALETRSLKDHKVSFLRSGTKLIFRRRPRQKEAGL
SQSHDDLSNATATPSVRKKAGSFSRRLIKRFSFKSKPKANGNPSPQL

>gi568815587r:118915848_119118054|GENSCAN_predicted_CDS_10|2124_bp
atggatccgggctgggggcagcgggacgtgggctgggcggccttgctgatcctcttcgcc
gcctcgctgctcacggtgttcgcctggctgctgcaatatgcccggggcttgtggctggcg
cgggcccgcggggaccggggcccgggacccgccttagccggggaacccgcgggttccctg
cgggagctgggcgtgtggcgctcgctgctgcggctgcgggcgactcgggctggcgccgcc
gaggagccaggagtccggggcctcctggcgtcactcttcgccttcaagtctttccgggag
aactggcagcgggcttgggtgcgagcgctgaacgagcaggcctgcagaaacgggagctcc
atccaaatcgcctttgaggaggtgccccaactcccacccagagccagcatcagtcatgtg
acctgcgtagaccaatctgagcataccatggtgctgcgttgccagctctctgctgaggag
gtgcggttcccagtctctgtgacccagcagtcccccgctgccgtctccatggagacctac
cacgtcactctgacactgccaccaacacagttggaagtcaacctggaggaaatccctggt
gaggggctgctcatatcctgggccttcactgatcgcccagatctcagcctaacggtgctt
cccaagcttcaggccagggagagaggtgaagaacaagtggagctctccacaattgaggaa
ctgatcaaggatgccatagtcagcacccagccagccatgatggtcaacctcagggcttgc
tctgccccaggaggcctggtacccagtgagaagccacccatgatgccccaggctcagcca
gccatccccagacctaaccggttattcctacggcagcttcgggcatctcacttgggaaat
gagctggaaggcaccgaggaactgtgctgtgtagctgaactcgacaaccccatgcagcag
aagtggaccaagcccgcgagggctggatccgaggtggagtggacagaagacctggcactg
gatctgggcccccagagccgggagctgaccctcaaagtgctgaggagcagcagctgtgga
gacaccgaactcctaggccaggccacactgcctgtgggctccccctccagaccactgtct
cgaagacagttgtgcccactcaccccagggccagggaaagccctgggaccagcagccacc
atggcagtggagcttcactatgaggagggctctccccggaacctgggtactcccacctcc
tccactccacgccccagcatcacacctaccaagaagattgagcttgaccggaccatcatg
cccgatggcaccattgtcaccacagtcaccactgtccagtcccggccccgtatagacggc
aaattagactccccctcccgctccccgtccaaggtggaggtgaccgagaagacgacaact
gtgctgagtgagagcagtggccccagcaatacctcccatagcagcagcccaggggacagc
cacctttccaacggcttggaccctgtagcagagacagcgattcgccagctgacagagccc
agtgggcgggtggccaagaagacacccaccaagcgcagcactctcatcatctctggtgtt
tccaaggtgcccattgctcaggacgagttggcgctatccctgggctatgcggcatccctg
gaagcctcagtgcaggatgatgcagggaccagcggaggcccctcttcacctccctcagac
ccaccagccatgtctccaggaccgctagatgccctctctagtcccacaagtgtccaggaa
gcagacgagacaacccgttcggatatttctgagaggccatctgtggatgatattgagtcg
gaaacggggtccactggtgccctggagacccgcagcctcaaggatcacaaagtgagtttc
ctgcgcagcggcactaagctcatcttccgccggaggcctaggcagaaggaagctggcctg
agccaatcacacgatgacctctccaacgcaacggccacgcccagtgtccgaaagaaggcc
ggcagcttttctcgccgccttatcaagcgcttttccttcaaatccaaacccaaggccaat
ggtaaccccagcccccagctctga
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