Result of GENSCAN for pF1KB6389
GENSCAN 1.0	Date run:  5-Nov-116	Time: 00:33:48

Sequence gi568815581r:63902750_64106691 : 203942 bp : 49.80% 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..
----- ---- - ------ ------ ---- -- -- ---- ---- ----- ----- ------

 1.06 PlyA -   1008   1003    6                               1.05
 1.05 Term -   7159   6962  198  1  0   72   50   308 0.999  22.80
 1.04 Intr -   7577   7413  165  2  0  102   60   353 0.971  34.06
 1.03 Intr -   7717   7671   47  2  2   99   75    58 0.981   3.73
 1.02 Intr -   8175   7996  180  1  0  117   41    58 0.541   3.84
 1.01 Init -   8447   8438   10  2  1   93  115    12 0.998   4.85
 1.00 Prom -   8545   8506   40                              -0.06

 2.11 PlyA -  13572  13567    6                               1.05
 2.10 Term -  14757  14560  198  0  0   90   37   340 0.999  26.50
 2.09 Intr -  15175  15011  165  1  0  103   60   381 0.985  36.96
 2.08 Intr -  15387  15268  120  0  0   72   75    47 0.839   2.49
 2.07 Intr -  15757  15597  161  2  2  113   52   165 0.992  15.11
 2.06 Intr -  26575  26500   76  1  1   82   71   129 0.751   9.69
 2.05 Intr -  26726  26685   42  2  0  125   94    40 0.977   6.74
 2.04 Intr -  27139  27021  119  2  2  131   53   283 0.999  29.28
 2.03 Intr -  27636  27325  312  1  0   79   57   469 0.962  39.06
 2.02 Intr -  28639  28586   54  2  0   79   86    68 0.736   4.65
 2.01 Init -  29512  29446   67  1  1  106   92   131 0.999  14.56
 2.00 Prom -  31642  31603   40                              -9.06

 3.13 PlyA -  33699  33694    6                               1.05
 3.12 Term -  39244  38022 1223  2  2   89   43  2472 0.990 234.59
 3.11 Intr -  40347  40077  271  0  1   59   80   714 0.852  64.81
 3.10 Intr -  41097  40997  101  1  2   56   92   145 0.780  11.53
 3.09 Intr -  42061  41920  142  1  1   84  -57   384 0.779  23.43
 3.08 Intr -  42311  42258   54  2  0   71  105    96 0.987   8.78
 3.07 Intr -  42889  42611  279  1  0   62   89   542 0.973  49.37
 3.06 Intr -  44418  44296  123  0  0  126   59   142 0.957  15.88
 3.05 Intr -  45314  45141  174  2  0   81   76   482 0.963  46.44
 3.04 Intr -  46016  45862  155  0  2   64   70   211 0.842  16.69
 3.03 Intr -  46604  46512   93  0  0  112   -7    85 0.462   1.34
 3.02 Intr -  46779  46644  136  0  1   90   72   214 0.797  20.14
 3.01 Init -  49160  48675  486  2  0   71  105   976 0.957  90.85
 3.00 Prom -  51039  51000   40                              -2.16

 4.18 PlyA -  51187  51182    6                              -1.95
 4.17 Term -  51939  51802  138  0  0   84   40   154 0.581   8.16
 4.16 Intr -  54769  54413  357  1  0  117   89   710 0.987  69.45
 4.15 Intr -  56689  56516  174  1  0   78   46   266 0.697  21.54
 4.14 Intr -  58682  58444  239  0  2   85   58   424 0.987  36.43
 4.13 Intr -  60891  60838   54  1  0   59  113    33 0.782   1.85
 4.12 Intr -  61191  60923  269  2  2   22  113   204 0.756  13.48
 4.11 Intr -  61928  61630  299  2  2  103   72   495 0.577  45.07
 4.10 Intr -  63494  63353  142  1  1   93   52   209 0.998  18.16
 4.09 Intr -  63795  63732   64  1  1   80   92   119 0.983   9.28
 4.08 Intr -  65606  65274  333  0  0   93  116   630 0.997  61.84
 4.07 Intr -  68504  68413   92  1  2   96   84   160 0.999  16.04
 4.06 Intr -  69087  68973  115  1  1   62   43   211 0.397  13.51
 4.05 Intr -  69721  69571  151  1  1   92    8   157 0.831   7.84
 4.04 Intr -  70101  69820  282  0  0   46   47   473 0.804  36.62
 4.03 Intr -  70767  70208  560  1  2  120   78    85 0.097   3.25
 4.02 Intr -  76677  76607   71  2  2   61   48   106 0.188   2.73
 4.01 Init -  80107  80058   50  1  2   95   67    67 0.784   5.72
 4.00 Prom -  82770  82731   40                              -7.46

 5.10 PlyA -  88844  88839    6                               1.05
 5.09 Term -  89381  89305   77  0  2  106   48   107 0.729   6.50
 5.08 Intr -  90114  89919  196  0  1  123   90   -34 0.422  -0.71
 5.07 Intr -  94676  94563  114  2  0   85   81    26 0.008   2.24
 5.06 Intr -  96412  96221  192  1  0   90   30   113 0.001   5.39
 5.05 Intr - 100176 100043  134  1  2  107   37   256 0.009  22.76
 5.04 Intr - 101215 100895  321  2  0  135   77   284 0.997  27.83
 5.03 Intr - 102624 102358  267  1  0  103   84   246 0.827  23.20
 5.02 Intr - 103986 103882  105  1  0   93  115    45 0.131   7.89
 5.01 Init - 124473 124404   70  0  1   64   48   123 0.867   7.11
 5.00 Prom - 125106 125067   40                              -5.86

 6.21 PlyA - 125864 125859    6                               1.05
 6.20 Term - 141451 141239  213  1  0   87   53   326 0.977  26.23
 6.19 Intr - 142178 142111   68  0  2   94  121    43 0.998   6.82
 6.18 Intr - 142733 142610  124  2  1  126   58    94 0.908  10.36
 6.17 Intr - 145236 145109  128  1  2   85   80   132 0.999  12.50
 6.16 Intr - 146453 146306  148  2  1  117  101   150 0.998  19.01
 6.15 Intr - 150230 150031  200  0  2  -40   76   210 0.863   6.07
 6.14 Intr - 150622 150523  100  1  1  101   89   116 0.873  12.68
 6.13 Intr - 151690 151501  190  0  1  100   30   398 0.972  34.79
 6.12 Intr - 152079 151989   91  1  1   79  117    39 0.997   4.95
 6.11 Intr - 153199 152926  274  1  1   82   88   437 0.995  40.21
 6.10 Intr - 155244 155053  192  0  0   31   63   311 0.955  22.59
 6.09 Intr - 157838 157720  119  0  2   91   81    92 0.893   8.98
 6.08 Intr - 161402 161237  166  2  1  114   82   183 0.999  19.83
 6.07 Intr - 162538 162460   79  0  1   92  103    10 0.991   2.45
 6.06 Intr - 164183 163922  262  0  1   63   86   345 0.998  28.35
 6.05 Intr - 165542 165441  102  0  0   91   98   219 0.999  23.35
 6.04 Intr - 169354 169232  123  2  0  133  110    74 0.999  14.66
 6.03 Intr - 172498 172426   73  1  1   89   86    55 0.977   4.38
 6.02 Intr - 176985 176913   73  2  1   80  113    28 0.443   3.91
 6.01 Init - 178084 178026   59  1  2   70   89     8 0.175  -0.85
 6.00 Prom - 178614 178575   40                              -5.96

 7.00 Prom + 180750 180789   40                              -5.36
 7.01 Init + 182526 182689  164  2  2   76   72    61 0.510   2.50
 7.02 Intr + 185160 185298  139  0  1   59   55   133 0.739   7.57
 7.03 Intr + 188615 188719  105  1  0   49   60    66 0.386   0.31
 7.04 Intr + 191898 192026  129  2  0  105   44    92 0.994   7.39
 7.05 Term + 192841 192990  150  0  0  156   48    40 0.321   4.71
 7.06 PlyA + 193757 193762    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 Init -  16027  16018   10  1  1   81  115    -2 0.889   2.64
S.002 Intr +  98335  98561  227  0  2   82   78   148 0.955   9.98
S.003 Intr +  98718  98788   71  0  2   99   91    53 0.824   5.53
S.004 Term - 100176  99998  179  1  2  107   43   289 0.991  24.15


Predicted peptide sequence(s):

Predicted coding sequence(s):


>gi568815581r:63902750_64106691|GENSCAN_predicted_peptide_1|199_aa
MAAGSRTSLLLAFALLCLPWLQEAGAVQTVPLSRLFKEAMLQAHRAHQLAIDTYQEFISS
WGMDSIPTSSNMEETQQKSNLELLHISLLLIESRLEPVRFLRSTFTNNLVYDTSDSDDYH
LLKDLEEGIQMLMGRLEDGSHLTGQTLKQTYSKFDTNSHNHDALLKNYGLLHCFRKDMDK
VETFLRMVQCRSVEGSCGF

>gi568815581r:63902750_64106691|GENSCAN_predicted_CDS_1|600_bp
atggctgcaggctcccggacgtccctgctcctggcttttgccctgctctgcctgccctgg
cttcaagaggctggtgccgtccaaaccgttcccttatccaggctttttaaagaggctatg
ctccaagcccatcgcgcacaccagctggccattgacacctaccaggagtttataagctct
tggggaatggactctattccgacatcctccaacatggaggaaacgcagcagaaatccaac
ttagagctgctccacatctccctgctgctcatcgagtcgcggctggagcccgtgcggttc
ctcaggagtaccttcaccaacaacctggtgtatgacacctcggacagcgatgactatcac
ctcctaaaggacctagaggaaggcatccaaatgctgatggggaggctggaagacggcagc
cacctgactgggcagaccctcaagcagacctacagcaagtttgacacaaactcgcacaac
catgacgcactgctcaagaactacgggctgctccactgcttcaggaaggacatggacaag
gtcgagacattcctgcgcatggtgcagtgccgctctgtggagggcagctgtggcttctag

>gi568815581r:63902750_64106691|GENSCAN_predicted_peptide_2|437_aa
MARLALSPVPSHWMVALLLLLSAAEPVPAARSEDRYRNPKGSACSRIWQSPRFIARKRGF
TVKMHCYMNSASGNVSWLWKQEMDENPQQLKLEKGRMEESQNESLATLTIQGIRFEDNGI
YFCQQKCNNTSEVYQGCGTELRVMGFSTLAQLKQRNTLKDGIIMIQTLLIILFIIVPIFL
LLDKDDSKAGMEEDHTYEGLDIDQTATYEDIVTLRTGEVKWSVGSRTSLLLAFGLLCLPW
LQEGSAFPTIPLSRLFDNAMLRAHRLHQLAFDTYQEFEEAYIPKEQKYSFLQNPQTSLCF
SESIPTPSNREETQQKSNLELLRISLLLIQSWLEPVQFLRSVFANSLVYGASDSNVYDLL
KDLEEGIQTLMGRLEDGSPRTGQIFKQTYSKFDTNSHNDDALLKNYGLLYCFRKDMDKVE
TFLRIVQCRSVEGSCGF

>gi568815581r:63902750_64106691|GENSCAN_predicted_CDS_2|1314_bp
atggccaggctggcgttgtctcctgtgcccagccactggatggtggcgttgctgctgctg
ctctcagcagctgagccagtaccagcagccagatcggaggaccggtaccggaatcccaaa
ggtagtgcttgttcgcggatctggcagagcccacgtttcatagccaggaaacggggcttc
acggtgaaaatgcactgctacatgaacagcgcctccggcaatgtgagctggctctggaag
caggagatggacgagaatccccagcagctgaagctggaaaagggccgcatggaagagtcc
cagaacgaatctctcgccaccctcaccatccaaggcatccggtttgaggacaatggcatc
tacttctgtcagcagaagtgcaacaacacctcggaggtctaccagggctgcggcacagag
ctgcgagtcatgggattcagcaccttggcacagctgaagcagaggaacacgctgaaggat
ggtatcatcatgatccagacgctgctgatcatcctcttcatcatcgtgcctatcttcctg
ctgctggacaaggatgacagcaaggctggcatggaggaagatcacacctacgagggcctg
gacattgaccagacagccacctatgaggacatagtgacgctgcggacaggggaagtgaag
tggtctgtaggctcccggacgtccctgctcctggcttttggcctgctctgcctgccctgg
cttcaagagggcagtgccttcccaaccattcccttatccaggctttttgacaacgctatg
ctccgcgcccatcgtctgcaccagctggcctttgacacctaccaggagtttgaagaagcc
tatatcccaaaggaacagaagtattcattcctgcagaacccccagacctccctctgtttc
tcagagtctattccgacaccctccaacagggaggaaacacaacagaaatccaacctagag
ctgctccgcatctccctgctgctcatccagtcgtggctggagcccgtgcagttcctcagg
agtgtcttcgccaacagcctggtgtacggcgcctctgacagcaacgtctatgacctccta
aaggacctagaggaaggcatccaaacgctgatggggaggctggaagatggcagcccccgg
actgggcagatcttcaagcagacctacagcaagttcgacacaaactcacacaacgatgac
gcactactcaagaactacgggctgctctactgcttcaggaaggacatggacaaggtcgag
acattcctgcgcatcgtgcagtgccgctctgtggagggcagctgtggcttctag

>gi568815581r:63902750_64106691|GENSCAN_predicted_peptide_3|1078_aa
MPQVLNLFLALLLSSFSADSLAASDEDGEMNNLQIAIGRIKLGIGFAKAFLLGLLHGKIL
SPKDIMLSLGEADGAGEAGEAGETAPEDEKKEPPEEDLKKDNHILNHMGLADGPPSSLEL
DHLNFINNPYLTIQVPIASEESDLEMPTEEETDTFSEPEDSKKPPQPLYDGNSSVCSTAD
YKPPEEDPEEQAEENPEGEQPEECFTEGLQPLQGAGYTRTKSTRTWGCLAIPVPHVSRAC
VQRWPCLYVDISQGRGKKWWTLRRACFKIVEHNWFETFIVFMILLSSGALAFEDIYIEQR
RVIRTILEYADKVFTYIFIMEMLLKWVAYGFKVYFTNAWCWLDFLIVDVSIISLVANWLG
YSELGPIKSLRTLRALRPLRALSRFEGMRVVVNALLGAIPSIMNVLLVCLIFWLIFSIMG
VNLFAGKFYYCINTTTSERFDISEVNNKSECESLMHTGQVRWLNVKVNYDNVGLGYLSLL
QVATFKGWMDIMYAAVDSREKEEQPQYEVNLYMYLYFVIFIIFGSFFTLNLFIGVIIDNF
NQQKKKMRGKDIFMTEEQKKYYNAMKKLGSKKPQKPIPRPQNKIQGMVYDLVTKQAFDIT
IMILICLNMVTMMVETDNQSQLKVDILYNINMIFIIIFTGECVLKMLALRQYYFTVGWNI
FDFVVVILSIVGLALSDLIQKYFVSPTLFRVIRLARIGRVLRLIRGAKGIRTLLFALMMS
LPALFNIGLLLFLVMFIYSIFGMSNFAYVKKESGIDDMFNFETFGNSIICLFEITTSAGW
DGLLNPILNSGPPDCDPNLENPGTSVKGDCGNPSIGICFFCSYIIISFLIVVNMYIAIIL
ENFNVATEESSEPLGEDDFEMFYETWEKFDPDATQFIAYSRLSDFVDTLQEPLRIAKPNK
IKLITLDLPMVPGDKIHCLDILFALTKEVLGDSGEMDALKQTMEEKFMAANPSKVSYEPI
TTTLKRKHEEVCAIKIQRAYRRHLLQRSMKQASYMYRHSHDGSGDDAPEKEGLLANTMSK
MYGHENGNSSSPSPEEKGEAGDAGPTMGLMPISPSDTAWPPAPPPGQTVRPGVKESLV

>gi568815581r:63902750_64106691|GENSCAN_predicted_CDS_3|3237_bp
atgccccaggtcctgaacctgttcctggctctgctgctgagctccttcagcgccgacagt
ctggcagcctcggatgaggatggcgagatgaacaacctgcagattgccatcgggcgcatc
aagttgggcatcggctttgccaaggccttcctcctggggctgctgcatggcaagatcctg
agccccaaggacatcatgctcagcctcggggaggctgacggggccggggaggctggagag
gcgggggagactgcccccgaggatgagaagaaggagccgcccgaggaggacctgaagaag
gacaatcacatcctgaaccacatgggcctggctgacggccccccatccagcctcgagctg
gaccaccttaacttcatcaacaacccctacctgaccatacaggtgcccatcgcctccgag
gagtccgacctggagatgcccaccgaggaggaaaccgacactttctcagagcctgaggat
agcaagaagccgccgcagcctctctatgatgggaactcgtccgtctgcagcacagctgac
tacaagccccccgaggaggaccctgaggagcaggcagaggagaaccccgagggggagcag
cctgaggagtgcttcactgagggcctgcagcccctgcaaggggcaggctacaccaggacc
aaaagcacacggacctggggctgcctggccatccccgtgcctcacgtgtctagggcctgc
gtgcagcgctggccctgcctctacgtggacatctcccagggccgtgggaagaagtggtgg
actctgcgcagggcctgcttcaagattgtcgagcacaactggttcgagaccttcattgtc
ttcatgatcctgctcagcagtggggctctggccttcgaggacatctacattgagcagcgg
cgagtcattcgcaccatcctagaatatgccgacaaggtcttcacctacatcttcatcatg
gagatgctgctcaaatgggtggcctacggctttaaggtgtacttcaccaacgcctggtgc
tggctcgacttcctcatcgtggatgtctccatcatcagcttggtggccaactggctgggc
tactcggagctgggacccatcaaatccctgcggacactgcgggccctgcgtcccctgagg
gcactgtcccgattcgagggcatgagggtggtggtgaacgccctcctaggcgccatcccc
tccatcatgaatgtgctgcttgtctgcctcatcttctggctgatcttcagcatcatgggt
gtcaacctgtttgccggcaagttctactactgcatcaacaccaccacctctgagaggttc
gacatctccgaggtcaacaacaagtctgagtgcgagagcctcatgcacacaggccaggtc
cgctggctcaatgtcaaggtcaactacgacaacgtgggtctgggctacctctccctcctg
caggtggccaccttcaagggttggatggacatcatgtatgcagccgtggactcccgggag
aaggaggagcagccgcagtacgaggtgaacctctacatgtacctctactttgtcatcttc
atcatctttggctccttcttcaccctcaacctcttcattggcgtcatcattgacaacttc
aaccagcagaagaagaagatgagggggaaagacatctttatgacggaggaacagaagaaa
tactataacgccatgaagaagcttggctccaagaagcctcagaagccaattccccggccc
cagaacaagatccagggcatggtgtatgacctcgtgacgaagcaggccttcgacatcacc
atcatgatcctcatctgcctcaacatggtcaccatgatggtggagacagacaaccagagc
cagctcaaggtggacatcctgtacaacatcaacatgatcttcatcatcatcttcacaggg
gagtgcgtgctcaagatgctcgccctgcgccagtactacttcaccgttggctggaacatc
tttgacttcgtggtcgtcatcctgtccattgtgggccttgccctctctgacctgatccag
aagtacttcgtgtcacccacgctgttccgtgtgatccgcctggcgcggattgggcgtgtc
ctgcggctgatccgcggggccaagggcatccggacgctgctgttcgccctcatgatgtcg
ctgcctgccctcttcaacatcggcctcctcctcttcctggtcatgttcatctactccatc
ttcggcatgtccaactttgcctacgtcaagaaggagtcgggcatcgatgatatgttcaac
ttcgagaccttcggcaacagcatcatctgcctgttcgagatcaccacgtcggccggctgg
gacgggctcctcaaccccatcctcaacagcgggcccccagactgtgaccccaacctggag
aacccgggcaccagtgtcaagggtgactgcggcaacccctccatcggcatctgcttcttc
tgcagctatatcatcatctccttcctcatcgtggtcaacatgtacatcgccatcatcctg
gagaacttcaatgtggccacagaggagagcagcgagccccttggtgaagatgactttgag
atgttctacgagacatgggagaagttcgaccccgacgccacccagttcatcgcctacagc
cgcctctcagacttcgtggacaccctgcaggaaccgctgaggattgccaagcccaacaag
atcaagctcatcacactggacttgcccatggtgccaggggacaagatccactgcctggac
atcctctttgccctgaccaaagaggtcctgggtgactctggggaaatggacgccctcaag
cagaccatggaggagaagttcatggcagccaacccctccaaggtgtcctacgagcccatc
accaccaccctcaagaggaagcacgaggaggtgtgcgccatcaagatccagagggcctac
cgccggcacctgctacagcgctccatgaagcaggcatcctacatgtaccgccacagccac
gacggcagcggggatgacgcccctgagaaggaggggctgcttgccaacaccatgagcaag
atgtatggccacgagaatgggaacagcagctcgccaagcccggaggagaagggcgaggca
ggggacgccggacccactatggggctgatgcccatcagcccctcagacactgcctggcct
cccgcccctcccccagggcagactgtgcgcccaggtgtcaaggagtctcttgtctag

>gi568815581r:63902750_64106691|GENSCAN_predicted_peptide_4|1129_aa
MAEGKEEQVTSYVDGSRHTEIVGQRTTHAASDGTTPAHLPCQGWQTQAEAPRSSSLRPWQ
TSLINHSNLFAQSLAATFMVSTYISRWPISGSTSALRVKSLCQSHFDLTPQPGPSSWPIQ
RSPEHSQLWFSLCPIRLKPHSSRSLGPGGSRRHWGVDPKSQGHKESGWFAVGPEGSRCHF
WGKCGGGARGDALCPAPVQQQHLAGTSPSPDRVCTPTSPARPLGKQEDARMARPSLCTLV
PLGPECLRPFTRESLAAIEQRAVEEEARLQRNKQMEIEEPERKPRSDLEAGKNLPMIYGD
PPPEVIGIPLEDLDPYYSNKKTFIVLNKGKAIFRFSATPALYLLSPFSVVRRGAIKVLIH
AYPAQDGRGGRGIYTFESLIKILARGFCVDDFTFLRDPWNWLDFSVIMMAYLTEFVDLGN
ISALRTFRVLRALKTITVIPGLKTIVGALIQSVKKLSDVMILTVFCLSVFALVGLQLFMG
NLRQKCVRWPPPFNDTNTTWYSNDTWYGNDTWYGNEMWYGNDSWYANDTWNSHASWATND
TFDWDAYISDEGNFYFLEGSNDALLCGNSSDAGHCPEGYECIKTGRNPNYGYTSYDTFSW
AFLALFRLMTQDYWENLFQLTLRAAGKTYMIFFVVIIFLGSFYLINLILAVVAMAYAEQN
EATLAEDKEKEEEFQQMLEKFKKHQEELEKVWTQGKEIEDPGFYLPSAGAATGFSLGGRG
PGRGAATLKDSGRSSEGQLVHPSGSELDFLPVTLAGLQAKAAQALEGGEADGDPAHGKDC
NGSLDTSQGEKGAPRQSSSGDSGISDAMEGRGGAWLDWIQEDRDAMEELEEAHQKCPPWW
YKCAHKVLIWNCCAPWLKFKNIIHLIVMDPFVDLGITICIVLNTLFMAMEHYPMTEHFDN
VLTVGNLVFTGIFTAEMVLKLIAMDPYEYFQQGWNIFDSIIVTLSLVELGLANVQGLSVL
RSFRLLRVFKLAKSWPTLNMLIKIIGNSVGALGNLTLVLAIIVFIFAVVGMQLFGKSYKE
CVCKIALDCNLPRWHMHDFFHSFLIVFRILCGEWIETMWDCMEVAGQAMCLTVFLMVMVI
GNLVASEKQVSARGHQGTLPESVRTRIPCTYGTWSLPAGNCEEEEEVTR

>gi568815581r:63902750_64106691|GENSCAN_predicted_CDS_4|3390_bp
atggcggaaggcaaggaggagcaagtcacatcttacgtggatggcagcagacacacggaa
attgtgggccagcggaccacacatgctgccagtgatggcaccaccccagcccacctgccc
tgccagggatggcaaacacaggcagaggcaccacggtcttcctccttgcgcccctggcag
acatcactaatcaatcacagcaacctttttgcacagagcctggctgccaccttcatggtc
tccacctacatctccaggtggccaatatcaggatccacgtcggccctcagggtgaagtcc
ctgtgccagtcccactttgatctaaccccccaaccaggcccctcatcctggcctatccag
aggtcgcctgagcacagccagctgtggttctctctctgtcccattaggctgaagccacac
agttcccggagcttgggcccaggaggcagtcgaaggcactggggtgttgaccccaagtcc
caaggccacaaagaatctggttggtttgccgtcggtcctgagggcagccgctgccacttc
tggggaaagtgtggtgggggggccaggggtgatgctctgtgcccagcacctgtgcagcag
cagcaccttgcaggcacatctcccagtcctgatagagtctgcacgcccacctccccggct
cggccactgggcaagcaggaggatgcgaggatggccagaccatctctgtgcaccctggtg
cctctgggccctgagtgcttgcgccccttcacccgggagtcactggcagccatagaacag
cgggcggtggaggaggaggcccggctgcagcggaataagcagatggagattgaggagccc
gaacggaagccacgaagtgacttggaggctggcaagaacctacccatgatctacggagac
cccccgccggaggtcatcggcatccccctggaggacctggatccctactacagcaataag
aagaccttcatcgtactcaacaagggcaaggccatcttccgcttctccgccacacctgct
ctctacctgctgagccccttcagcgtagtcaggcgcggggccatcaaggtgctcatccat
gcatatcctgcccaagatgggagaggcgggagggggatctacacctttgagtccctcatc
aagatactggcccgaggcttctgtgtcgacgacttcacattcctccgggacccctggaac
tggctggacttcagtgtcatcatgatggcgtacctgacagagtttgtggacttgggcaac
atctcagccctgaggaccttccgggtgctgcgggccctcaaaaccatcacggtcatccca
gggctgaagacgatcgtgggggccctgatccagtcggtgaaaaagctgtcggatgtgatg
atcctcactgtcttctgcctgagcgtctttgcgctggtaggactgcagctcttcatggga
aacctgaggcagaagtgtgtgcgctggcccccgccgttcaacgacaccaacaccacgtgg
tacagcaatgacacgtggtacggcaatgacacatggtatggcaatgagatgtggtacggc
aatgactcatggtatgccaacgacacgtggaacagccatgcaagctgggccaccaacgat
acctttgattgggacgcctacatcagtgatgaagggaacttctacttcctggagggctcc
aacgatgccctgctctgtgggaacagcagtgatgctgggcactgccctgagggttatgag
tgcatcaagaccgggcggaaccccaactatggctacaccagctatgacaccttcagctgg
gccttcttggctctcttccgcctcatgacacaggactattgggagaacctcttccagctg
acccttcgagcagctggcaagacctacatgatcttcttcgtggtcatcatcttcctgggc
tctttctacctcatcaatctgatcctggccgtggtggccatggcatatgccgagcagaat
gaggccaccctggccgaggataaggagaaagaggaggagtttcagcagatgcttgagaag
ttcaaaaagcaccaggaggagctggagaaggtctggactcagggaaaggagatagaggac
ccagggttctacctgccctcagccggggctgccactggcttctccctggggggccgaggg
ccaggaagaggggctgccaccctgaaggactctggaagaagctctgagggtcaattagtc
catccctctggctcagagctggacttcctgccagtcactcttgctggtctacaggccaag
gccgcccaagctctggaaggtggggaggcagatggggacccagcccatggcaaagactgc
aatggcagcctggacacatcgcaaggggagaagggagccccgaggcagagcagcagcgga
gacagcggcatctccgacgccatggaaggtaggggtggagcctggctggactggattcag
gaggatagggatgccatggaagaactggaagaggcccaccaaaagtgcccaccatggtgg
tacaagtgcgcccacaaagtgctcatatggaactgctgcgccccgtggctgaagttcaag
aacatcatccacctgatcgtcatggacccgttcgtggacctgggcatcaccatctgcatc
gtgctcaacaccctcttcatggccatggaacattaccccatgacggagcactttgacaac
gtgctcactgtgggcaacctggtcttcacaggcatcttcacagcagagatggttctgaag
ctgattgccatggacccctacgagtatttccagcagggttggaatatcttcgacagcatc
atcgtcaccctcagcctggtagagctaggcctggccaacgtacagggactgtctgtgcta
cgctccttccgtctgctgcgggtcttcaagctggccaagtcgtggccaacgctgaacatg
ctcatcaagatcattggcaattcagtgggggcgctgggtaacctgacgctggtgctggct
atcatcgtgttcatcttcgccgtggtgggcatgcagctgtttggcaagagctacaaggag
tgcgtgtgcaagattgccttggactgcaacctgccgcgctggcacatgcatgatttcttc
cactccttcctcatcgtcttccgcatcctgtgcggggagtggatcgagaccatgtgggac
tgcatggaggtggccggccaagccatgtgcctcaccgtcttcctcatggtcatggtcatc
ggcaatcttgtggcttcagagaagcaggtgtctgccagaggccaccagggcaccctgcca
gagagtgtgaggacccgcatcccctgcacctatggcacttggtcacttcctgcgggtaac
tgtgaagaagaagaggaagtgactaggtaa

>gi568815581r:63902750_64106691|GENSCAN_predicted_peptide_5|491_aa
MIGSFLRPSKKQMLLRFLYSLQNCSPWLVPASPWRLPEMSSFGYRTLTVALFTLICCPGS
DEKVFEVHVRPKKLAVEPKGSLEVNCSTTCNQPEVGGLETSLDKILLDEQAQWKHYLVSN
ISHDTVLQCHFTCSGKQESMNSNVSVYQPPRQVILTLQPTLVAVGKSFTIECRVPTVEPL
DSLTLFLFRGNETLHYETFGKAAPAPQEATATFNSTADREDGHRNFSCLAVLDLMSRGGN
IFHKHSAPKMLEIYEPVSDSQMVIIVTVVSVLLSLFVTSVLLCFIFGQHLRQQRMGTYGF
FSPLNRNPRWIRIPGPTGERPRRPTHTHLRAGRGRPGLQRSSHQATQQQLVHLRVLQHHQ
FQQYLSLGEQACGHYFTVPMGLMASTAINKLRSRHWGHSPPTSFLHTCVKETPWLLQTHL
ETPKTKEIVFPLISVHITPREGLGLVQLESCPQVLDEPLWPKGLARDREQRPSDYRGGDQ
QSQMVTSSKVN

>gi568815581r:63902750_64106691|GENSCAN_predicted_CDS_5|1476_bp
atgatcgggagcttcctgaggccttccaagaagcagatgctgctacgcttcctgtacagc
ctgcagaactgcagcccttggctggtccctgcgagcccgtggagactgccagagatgtcc
tctttcggttacaggaccctgactgtggccctcttcaccctgatctgctgtccaggatcg
gatgagaaggtattcgaggtacacgtgaggccaaagaagctggcggttgagcccaaaggg
tccctcgaggtcaactgcagcaccacctgtaaccagcctgaagtgggtggtctggagacc
tctctagataagattctgctggacgaacaggctcagtggaaacattacttggtctcaaac
atctcccatgacacggtcctccaatgccacttcacctgctccgggaagcaggagtcaatg
aattccaacgtcagcgtgtaccagcctccaaggcaggtcatcctgacactgcaacccact
ttggtggctgtgggcaagtccttcaccattgagtgcagggtgcccaccgtggagcccctg
gacagcctcaccctcttcctgttccgtggcaatgagactctgcactatgagaccttcggg
aaggcagcccctgctccgcaggaggccacagccacattcaacagcacggctgacagagag
gatggccaccgcaacttctcctgcctggctgtgctggacttgatgtctcgcggtggcaac
atctttcacaaacactcagccccgaagatgttggagatctatgagcctgtgtcggacagc
cagatggtcatcatagtcacggtggtgtcggtgttgctgtccctgttcgtgacatctgtc
ctgctctgcttcatcttcggccagcacttgcgccagcagcggatgggcacctacgggttc
ttttcccccctgaacaggaaccccaggtggatccgcatccctggacccacaggtgagcga
ccccggcggcccacccacacgcacctgagggcagggcgaggcaggccggggctgcagcgc
tccagccaccaggcgactcagcagcagctggtgcatctgcgcgttctgcagcatcatcag
ttccagcagtacctgtctctaggggagcaggcttgtgggcattactttactgtccccatg
ggtcttatggcttcaacagccattaacaagctgagatccaggcactggggtcacagcccc
ccaacaagcttcctccacacatgtgtgaaggagacaccatggctccttcagacacattta
gaaactcccaagacgaaagagattgtctttcctctaatctcagtacacataactcccagg
gaaggactaggattggttcagcttgagtcttgtccccaggttttggatgaaccactatgg
cccaaaggattggccagagacagggagcagcggcccagtgattatcggggtggtgaccag
cagtcccagatggtgaccagcagcaaagtgaactga

>gi568815581r:63902750_64106691|GENSCAN_predicted_peptide_6|927_aa
MALLFFCTDPVLQVPTHVEEPAFLPDPNDGSLYTLGSKNNEGLTKLPFTIPELVQASPCR
SSDGILYMGKKQDIWYVIDLLTGEKQQTLSSAFADSLCPSTSLLYLGRTEYTITMYDTKT
RELRWNATYFDYAASLPEDDVDYKMSHFVSNGDGLVVTVDSESGDVLWIQNYASPVVAFY
VWQREGLRKVMHINVAVETLRYLTFMSGEVGRITKWKYPFPKETEAKSKLTPTLYVGKYS
TSLYASPSMVHEGVAVVPRGSTLPLLEGPQTDGVTIGDKGECVITPSTDVKFDPGLKSKN
KLNYLRNYWLLIGHHETPLSASTKMLERFPNNLPKHRENVIPADSEKKSFEEVINLVDQT
SENAPTTVSRDVEEKPAHAPARPEAPVDSMLKDMATIILSTFLLIGWVAFIITYPLSMHQ
QQQLQHQQFQKELEKIQLLQQQQQQLPFHPPGDTAQDGELLDTSGPYSESSGTSSPSTSP
RASNHSLCSGSSASKAGSSPSLEQDDGDEETSVVIVGKISFCPKDVLGHGAEGTIVYRGM
FDNRDVAVKRILPECFSFADREVQLLRESDEHPNVIRYFCTEKDRQFQYIAIELCAATLQ
EYVEQKDFAHLGLEPITLLQQTTSGLAHLHSLNIVHRDLKPHNILISMPNAHGKIKAMIS
DFGLCKKLAVGRHSFSRRSGVPGTEGWIAPEMLSEDCKENPTYTVDIFSAGCVFYYVISE
GSHPFGKSLQRQANILLGACSLDCLHPEKHEDVIARELIEKMIAMDPQKRPSAKHVLKHP
FFWSLEKQLQFFQDVSDRIEKESLDGPIVKQLERGGRAVVKMDWRENITVPLQTDLRKFR
TYKGGSVRDLLRAMRNKKHHYRELPAEVRETLGSLPDDFVCYFTSRFPHLLAHTYRAMEL
CSHERLFQPYYFHEPPEPQPPVTPDAL

>gi568815581r:63902750_64106691|GENSCAN_predicted_CDS_6|2784_bp
atggctttgttgttcttttgcacagatccagtcctgcaggtcccaacacatgtggaagag
cctgcctttctcccagatcctaatgatggcagcctgtatacgcttggaagcaagaataat
gaaggcctgacgaaacttccttttaccatcccagaattggtgcaggcatccccatgccga
agttcagatggaatcctctacatgggtaaaaagcaggacatctggtatgttattgacctc
ctgaccggagagaagcagcagactttgtcatcggcctttgcagatagtctctgcccatca
acctctcttctgtatcttgggcgaacagaatacaccatcaccatgtacgacaccaaaacc
cgagagctccggtggaatgccacctactttgactatgcggcctcactgcctgaggacgac
gtggactacaagatgtcccactttgtgtccaatggtgatgggctggtggtgactgtggac
agtgaatctggggacgtcctgtggatccaaaactacgcctcccctgtggtggccttttat
gtctggcagcgggagggtctgaggaaggtgatgcacatcaatgtcgctgtggagaccctg
cgctatctgaccttcatgtctggggaggtggggcgcatcacaaagtggaagtacccgttc
cccaaggagacagaggccaagagcaagctgacgcccactctgtatgttgggaaatactct
accagcctctatgcctctccctcaatggtacacgagggggttgctgtcgtgccccgcggc
agcacacttcctttgctggaagggccccagactgatggcgtcaccattggggacaagggg
gagtgtgtgatcacgcccagcacggacgtcaagtttgatcccggactcaaaagcaagaac
aagctcaactacttgaggaattactggcttctgataggacaccatgaaaccccactgtct
gcgtctaccaagatgctggagagatttcccaacaatctacccaaacatcgggaaaatgtg
attcctgctgattcagagaaaaagagctttgaggaagttatcaacctggttgaccagact
tcagaaaacgcacctaccaccgtgtctcgggatgtggaggagaagcccgcccatgcccct
gcccggcccgaggcccccgtggactccatgcttaaggacatggctaccatcatcctgagc
accttcctgctgattggctgggtggccttcatcatcacctatcccctgagcatgcatcag
cagcagcagctccagcaccagcagttccagaaggaactggagaagatccagctcctgcag
cagcagcagcagcagctgcccttccacccacctggagacacggctcaggacggcgagctc
ctggacacgtctggcccgtactcagagagctcgggcaccagcagccccagcacgtccccc
agggcctccaaccactcgctctgctccggcagctctgcctccaaggctggcagcagcccc
tccctggaacaagacgatggagatgaggaaaccagcgtggtgatagttgggaaaatttcc
ttctgtcccaaggatgtcctgggccatggagctgagggcacaattgtgtaccggggcatg
tttgacaaccgcgacgtggccgtgaagaggatcctccccgagtgttttagcttcgcagac
cgtgaggtccagctgttgcgagaatcggatgagcacccgaacgtgatccgctacttctgc
acggagaaggaccggcaattccagtacattgccatcgagctgtgtgcagccaccctgcaa
gagtatgtggagcagaaggactttgcgcatctcggcctggagcccatcaccttgctgcag
cagaccacctcgggcctggcccacctccactccctcaacatcgttcacagagacctaaag
ccacacaacatcctcatatccatgcccaatgcacacggcaagatcaaggccatgatctcc
gactttggcctctgcaagaagctggcagtgggcagacacagtttcagccgccgatctggg
gtgcctggcacagaaggctggatcgctccagagatgctgagcgaagactgtaaggagaac
cctacctacacggtggacatcttttctgcaggctgcgtcttttactacgtaatctctgag
ggcagccacccttttggcaagtccctgcagcggcaggccaacatcctcctgggtgcctgc
agccttgactgcttgcacccagagaagcacgaagacgtcattgcacgtgaattgatagag
aagatgattgcgatggatcctcagaaacgcccctcagcgaagcatgtgctcaaacacccg
ttcttctggagcctagagaagcagctccagttcttccaggacgtgagcgacagaatagaa
aaggaatccctggatggcccgatcgtgaagcagttagagagaggcgggagagccgtggtg
aagatggactggcgggagaacatcactgtccccctccagacagacctgcgtaaattcagg
acctataaaggtggttctgtcagagatctcctccgagccatgagaaataagaagcaccac
taccgggagctgcctgcagaggtgcgggagacgctggggtccctccccgacgacttcgtg
tgctacttcacatctcgcttcccccacctcctcgcacacacctaccgggccatggagctg
tgcagccacgagagactcttccagccctactacttccacgagcccccagagccccagccc
ccagtgactccagacgccctctga

>gi568815581r:63902750_64106691|GENSCAN_predicted_peptide_7|228_aa
MALAFASDEGFWLLPLVAEGKGEPECTELTGREKQREGRRCQALFKNHLSQELIGAGKIR
EGLGKTWGDKSAEQKNVFDAINQNLNNCFKPDFEIDGLSLEDSQKTSRQKSSGTRVSIKC
LGHLLSILAAQSPSKEDTPPLTRYAGCLQDSLASLSSCSNDTFSVEPSLFKTADSHPNLV
CFLFLVIPHTAARVIEKRAPVESLTCSITLTAPNFLFSQIQMPKCSIQ

>gi568815581r:63902750_64106691|GENSCAN_predicted_CDS_7|687_bp
atggcattagcatttgcctctgatgagggcttctggctgcttccactagtggcagaaggc
aaaggggaaccggagtgtacagagctcacagggcgagagaagcagcgagaggggagaagg
tgccaggctctttttaagaaccatctctcacaggaattaataggggctggcaaaattcgt
gagggcctggggaaaacatggggtgataagtcagctgaacagaaaaatgtctttgatgca
atcaaccaaaatttaaataattgtttcaaaccagacttcgagattgacggcctctctctg
gaggactcccaaaagacgtccaggcagaagagttctgggacccgagtcagcatcaagtgc
cttggacatttactgagcatcctggctgcccagagccccagtaaggaggacactccacct
ttgacccgctatgccggctgtctacaagactcccttgcctccttgagctcttgctcaaat
gacaccttctccgtggagccctccctgtttaaaactgcagactcccaccccaacctggtc
tgcttcctgtttctagtcatcccacacacagctgctagagtcatcgaaaagcgagcacct
gttgagtcactcacctgttcaatcacattaacagctcccaatttcctgttcagtcagata
caaatgcctaagtgctccatccagtaa
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