Result of GENSCAN for pF1KE4227
GENSCAN 1.0	Date run: 16-Jul-119	Time: 16:11:45

Sequence gi568815597r:16098590_16309054 : 210465 bp : 51.03% 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..
----- ---- - ------ ------ ---- -- -- ---- ---- ----- ----- ------

 1.01 Init +   4739   4792   54  1  0   88  101    33 0.187   5.83
 1.02 Intr +  13902  13960   59  2  2   95   80    80 0.240   6.07
 1.03 Term +  21711  21870  160  0  1  129   47    39 0.100   1.63
 1.04 PlyA +  23624  23629    6                               1.05

 2.30 PlyA -  25774  25769    6                               1.05
 2.29 Term -  26731  26626  106  0  1  123   52   232 0.958  21.28
 2.28 Intr -  31000  30845  156  0  0   96   91   320 0.886  32.74
 2.27 Intr -  31830  31637  194  0  2   85  117   342 0.520  35.61
 2.26 Intr -  33281  33132  150  2  0   80   90   278 0.999  28.07
 2.25 Intr -  33684  33475  210  0  0   61   84   487 0.999  45.23
 2.24 Intr -  33850  33789   62  2  2  110   90   111 0.994  12.44
 2.23 Intr -  34779  34591  189  1  0  115   54   487 0.996  48.08
 2.22 Intr -  35017  34892  126  2  0  144   94   155 0.999  22.86
 2.21 Intr -  35326  35271   56  0  2   54   94    81 0.906   4.41
 2.20 Intr -  35978  35879  100  0  1   54   79   119 0.942   7.27
 2.19 Intr -  36600  36447  154  0  1   84   56   300 0.999  26.56
 2.18 Intr -  37181  37066  116  0  2   80   88   157 0.911  15.57
 2.17 Intr -  39596  39264  333  0  0   89   94   581 0.819  54.90
 2.16 Intr -  39841  39686  156  2  0   77   94   114 0.927  11.39
 2.15 Intr -  45626  45543   84  0  0   94  107   -20 0.314   0.79
 2.14 Intr -  45823  45702  122  0  2   40   59    52 0.112  -1.86
 2.13 Intr -  46668  46543  126  2  0   35   99    80 0.125   4.10
 2.12 Intr -  47493  47430   64  1  1   69   10   101 0.024  -1.33
 2.11 Intr -  50458  49789  670  1  1  114   96  1409 0.162 136.20
 2.10 Intr -  52374  52307   68  1  2  136   63    64 0.911   7.82
 2.09 Intr -  54533  54524   10  2  1  101  116     0 0.412  -1.59
 2.08 Intr -  55151  54955  197  0  2  111   31    70 0.741   3.25
 2.07 Intr -  57402  57259  144  1  0  -32  113   188 0.083  10.06
 2.06 Intr -  58675  58539  137  0  2  127   80    81 0.421  11.92
 2.05 Intr -  66576  66497   80  0  2   53  100    48 0.197   1.34
 2.04 Intr -  66765  66707   59  1  2   92   78    23 0.235   0.79
 2.03 Intr -  85932  85868   65  2  2  106   84    56 0.393   5.85
 2.02 Intr -  86251  86077  175  2  1  110   41     8 0.095  -2.19
 2.01 Init -  89477  89432   46  2  1   54  -57   226 0.356   5.49
 2.00 Prom -  94221  94182   40                              -2.51

 3.00 Prom +  94842  94881   40                              -3.61
 3.01 Sngl +  96771  97055  285  2  0   54   47   205 0.967   8.85
 3.02 PlyA +  97825  97830    6                               1.05

 4.31 PlyA -  99536  99531    6                               1.05
 4.30 Term - 100155  99998  158  1  2   95   45   131 0.994   7.91
 4.29 Intr - 100665 100561  105  1  0   45   89    72 0.916   3.69
 4.28 Intr - 103272 103193   80  2  2   90   62    42 0.850   1.49
 4.27 Intr - 103985 103827  159  1  0  125   64   271 0.996  28.02
 4.26 Intr - 106330 106170  161  1  2  132   64   185 0.995  19.80
 4.25 Intr - 106587 106498   90  0  0   64   93   101 0.977   8.89
 4.24 Intr - 106836 106762   75  0  0   82   83   161 0.999  15.21
 4.23 Intr - 107078 106949  130  1  1   56   67    95 0.970   5.40
 4.22 Intr - 107494 107342  153  0  0   74    9   393 0.999  29.70
 4.21 Intr - 107751 107591  161  0  2  122   57   241 0.999  23.70
 4.20 Intr - 108621 108359  263  1  2  118   64   431 0.995  41.44
 4.19 Intr - 109009 108933   77  0  2   91   55    29 0.976  -0.45
 4.18 Intr - 109188 109086  103  1  1  112   81    97 0.969  11.13
 4.17 Intr - 109636 109355  282  2  0   99   76   260 0.998  23.83
 4.16 Intr - 110494 110054  441  2  0  106   76    91 0.090   3.71
 4.15 Intr - 111668 111551  118  2  1  125   78    -3 0.234   2.94
 4.14 Intr - 118634 118538   97  1  1  -27   80   126 0.470   0.81
 4.13 Intr - 119717 119487  231  1  0    5   26   273 0.308  10.22
 4.12 Intr - 120616 120476  141  0  0  -17   68   197 0.844   7.18
 4.11 Intr - 122298 122174  125  0  2  100   76    83 0.917   8.19
 4.10 Intr - 122548 122411  138  1  0   52   65   118 0.837   7.07
 4.09 Intr - 126900 126643  258  0  0  123   49   208 0.813  18.59
 4.08 Intr - 127533 127405  129  0  0  126   16    93 0.412   7.30
 4.07 Intr - 129503 129333  171  2  0   87   83    88 0.929   8.85
 4.06 Intr - 129859 129752  108  1  0   52   77    43 0.263   0.58
 4.05 Intr - 133708 133507  202  0  1   66   43   303 0.382  23.41
 4.04 Intr - 134057 133921  137  2  2   55    7   191 0.393   7.57
 4.03 Intr - 134428 134304  125  2  2   91   93   113 0.993  12.91
 4.02 Intr - 135175 135023  153  2  0  126  117   246 0.999  31.86
 4.01 Init - 138153 138042  112  0  1  104  111   152 0.621  19.44
 4.00 Prom - 141855 141816   40                              -6.30

 5.09 PlyA - 142508 142503    6                               1.05
 5.08 Term - 153196 152081 1116  1  0   84   35   465 0.914  33.37
 5.07 Intr - 153815 153699  117  2  0   88  102   -14 0.622   1.17
 5.06 Intr - 155142 155046   97  2  1  100   47    29 0.912   0.51
 5.05 Intr - 157232 157122  111  1  0   94  101    71 0.977   9.00
 5.04 Intr - 158170 158017  154  2  1   87  111    67 0.834   8.54
 5.03 Intr - 196328 196194  135  0  0  105  110    59 0.940  10.85
 5.02 Intr - 207330 207214  117  1  0   95   98    75 0.980  10.14
 5.01 Init - 208266 208224   43  0  1   82   75    13 0.494  -0.05

Suboptimal exons with probability > 0.800

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

S.001 Term -  50458  49781  678  1  0  114   49  1418 0.832 134.62
S.002 Init -  57343  57259   85  1  1   91  113   209 0.845  22.63


Predicted peptide sequence(s):

Predicted coding sequence(s):


>gi568815597r:16098590_16309054|GENSCAN_predicted_peptide_1|90_aa
MSPFFDLQIDKRKGSFVTEPLHRFCRIAGTKRALDSDRALLDASKAHQGPCSSEPRKGCR
PTSQQRRLKSEMKVLLGVGMRAGLLSYSCS

>gi568815597r:16098590_16309054|GENSCAN_predicted_CDS_1|273_bp
atgtccccattctttgatttgcaaatcgataaacgcaaaggcagctttgtcacggaacct
ttacatcggttctgcagaattgctggcacaaagcgggcactggacagtgacagggctttg
ctggatgcatcaaaggcccaccaaggtccctgcagctcagaacccagaaagggctgcagg
cccacttctcagcagagaaggctaaaatcagagatgaaggttctgctaggggtgggaatg
agggcagggctgctgtcctacagctgctcctga

>gi568815597r:16098590_16309054|GENSCAN_predicted_peptide_2|1384_aa
MNIIIIVIAIIVIIMRWGKTRLCRQQVGTCPERLCCLAEVVAGSTGHAEPWWHHGLSPQL
ARTPGSGGFWGLGRKRPMHSLSQQIEAAVTLAAPQASTQACSQTVRTQEGGDTWQVGIVL
FLSPLDPEEELRAVKHLIRNSQRDVWTRFPRVGTKARGQDVHIRQRRPTYLGSRSRASKR
GWGQRGRGVRVCGSRARGDRTESEKRGMELQAARACFALLWGCALAAAAAAQGKEGYTWL
PTWLLLGHQQPLNLPSFLQMGKLREARALANQGLLDRGPDLSIPLLGCQSQGPACFVVGV
MKWEVVLLDFAAAGGELGWLTHPYGKGWDLMQNIMNDMPIYMYSVCNVMSGDQDNWLRTN
WVYRGEAERIFIELKFTVRDCNSFPGGASSCKETFNLYYAESDLDYGTNFQKRLFTKIDT
IAPDEITVSSDFEARHVKLNVEERSVGPLTRKGFYLAFQDIGACVALLSVRVYYKKCPEL
LQGLAHFPETIAGSDAPSLATVAGTCVDHAVVPPGGEEPRMHCAVDGEWLVPIGQCLCQA
GYEKVEDACQDFSQQPLAMLLLEVMTVATVDGGVARADRCPPGAALSPCLRFLCWPQQLA
GPLLAPQPWGPLVRSQLVPQVEDSGSCWLWLAGFVPCWEVPPGLISVMFLLAYRAHTGGK
ARRWHLRWAGTGFSLPPSLPPGACSPGFFKFEASESPCLECPEHTLPSPEGATSCECEEG
FFRAPQDPASMPCTRPPSAPHYLTAVGMGAKVELRWTPPQDSGGREDIVYSVTCEQCWPE
SGECGPCEASVRYSEPPHGLTRTSVTVSDLEPHMNYTFTVEARNGVSGLVTSRSFRTASV
SINQTEPPKVRLEGRSTTSLSVSWSIPPPQQSRVWKYEVTYRKKGDSNSYNVRRTEGFSV
TLDDLAPDTTYLVQVQALTQEGQGAGSKVHEFQTLSPEGSGNLAVIGGVAVGVVLLLVLA
GVGFFIHRRRKNQRARQSPEDVYFSKSEQLKPLKTYVDPHTYEDPNQAVLKFTTEIHPSC
VTRQKVIGAGEFGEVYKGMLKTSSGKKEVPVAIKTLKAGYTEKQRVDFLGEAGIMGQFSH
HNIIRLEGVISKYKPMMIITEYMENGALDKFLREKDGEFSVLQLVGMLRGIAAGMKYLAN
MNYVHRDLAARNILVNSNLVCKVSDFGLSRVLEDDPEATYTTSGGKIPIRWTAPEAISYR
KFTSASDVWSFGIVMWEVMTYGERPYWELSNHEVMKAINDGFRLPTPMDCPSAIYQLMMQ
CWQQERARRPKFADIVSILDKLIRAPDSLKTLADFDPRVSIRLPSTSGSEGVPFRTVSEW
LESIKMQQYTEHFMAAGYTAIEKVVQMTNDDIKRIGVRLPGHQKRIAYSLLGLKDQVNTV
GIPI

>gi568815597r:16098590_16309054|GENSCAN_predicted_CDS_2|4155_bp
atgaatatcatcatcatcgtcatcgccatcatcgtcatcatcatgaggtggggcaaaaca
aggctctgcagacagcaagtggggacatgccctgagaggctgtgctgcttggctgaggtg
gtggctggcagcactggtcatgcagagccttggtggcaccatggactcagcccacagctg
gctcggactcctggatccggtggcttctggggtctgggcaggaaaaggccgatgcactcg
ttgagtcagcagatcgaggctgctgtcaccctggcagctccacaggcctccacgcaggcc
tgcagccaaactgtcaggactcaggaagggggtgacacctggcaggtgggtattgtttta
tttttatccccacttgacccggaagaagagctcagggcagtgaagcacctcatccgaaac
tcccagagagatgtctggacccgcttcccaagagtaggcaccaaggcgagaggccaagat
gtccacatccggcagagaagacccacgtacctgggtagcaggtcccgggcatcaaagcga
ggatggggtcagagaggaagaggcgtgcgggtgtgcgggagccgggctcggggggatcgg
accgagagcgagaagcgcggcatggagctccaggcagcccgcgcctgcttcgccctgctg
tggggctgtgcgctggccgcggccgcggcggcgcagggcaaggaaggctatacttggttg
cccacgtggctcctgttaggtcatcaacagccactgaatctgccctcatttttacaaatg
gggaaactgagggaggcccgagcccttgccaaccagggccttctggacagaggaccagac
ctgagcatcccgcttcttggctgccagagccaaggccctgcctgctttgtggttggtgtc
atgaaatgggaagtggtactgctggactttgctgcagctggaggggagctcggctggctc
acacacccgtatggcaaagggtgggacctgatgcagaacatcatgaatgacatgccgatc
tacatgtactccgtgtgcaacgtgatgtctggcgaccaggacaactggctccgcaccaac
tgggtgtaccgaggagaggctgagcgtatcttcattgagctcaagtttactgtacgtgac
tgcaacagcttccctggtggcgccagctcctgcaaggagactttcaacctctactatgcc
gagtcggacctggactacggcaccaacttccagaagcgcctgttcaccaagattgacacc
attgcgcccgatgagatcaccgtcagcagcgacttcgaggcacgccacgtgaagctgaac
gtggaggagcgctccgtggggccgctcacccgcaaaggcttctacctggccttccaggat
atcggtgcctgtgtggcgctgctctccgtccgtgtctactacaagaagtgccccgagctg
ctgcagggcctggcccacttccctgagaccatcgccggctctgatgcaccttccctggcc
actgtggccggcacctgtgtggaccatgccgtggtgccaccggggggtgaagagccccgt
atgcactgtgcagtggatggcgagtggctggtgcccattgggcagtgcctgtgccaggca
ggctacgagaaggtggaggatgcctgccaggacttctctcagcagcccctggccatgctg
ctgctggaagtgatgacagtcgctaccgtagacggtggagtcgctcgggctgaccgctgt
cccccgggggctgctttgtctccatgtctccgcttcctgtgctggcctcagcagctggcg
gggcccctgctggcgcctcagccctggggaccgctggtcagatcacagttggtcccccag
gtggaagactctgggagctgctggctgtggctcgcaggctttgtcccctgctgggaagtc
ccaccaggccttatttctgtgatgtttcttctggcctacagagctcacactgggggcaaa
gctaggcgctggcatctccgctgggcgggcaccggcttctccctccctccctctctccct
cctggagcctgctcgcctggattttttaagtttgaggcatctgagagcccctgcttggag
tgccctgagcacacgctgccatcccctgagggtgccacctcctgcgagtgtgaggaaggc
ttcttccgggcacctcaggacccagcgtcgatgccttgcacacgacccccctccgcccca
cactacctcacagccgtgggcatgggtgccaaggtggagctgcgctggacgccccctcag
gacagcgggggccgcgaggacattgtctacagcgtcacctgcgaacagtgctggcccgag
tctggggaatgcgggccgtgtgaggccagtgtgcgctactcggagcctcctcacggactg
acccgcaccagtgtgacagtgagcgacctggagccccacatgaactacaccttcaccgtg
gaggcccgcaatggcgtctcaggcctggtaaccagccgcagcttccgtactgccagtgtc
agcatcaaccagacagagccccccaaggtgaggctggagggccgcagcaccacctcgctt
agcgtctcctggagcatccccccgccgcagcagagccgagtgtggaagtacgaggtcact
taccgcaagaagggagactccaacagctacaatgtgcgccgcaccgagggtttctccgtg
accctggacgacctggccccagacaccacctacctggtccaggtgcaggcactgacgcag
gagggccagggggccggcagcaaggtgcacgaattccagacgctgtccccggagggatct
ggcaacttggcggtgattggcggcgtggctgtcggtgtggtcctgcttctggtgctggca
ggagttggcttctttatccaccgcaggaggaagaaccagcgtgcccgccagtccccggag
gacgtttacttctccaagtcagaacaactgaagcccctgaagacatacgtggacccccac
acatatgaggaccccaaccaggctgtgttgaagttcactaccgagatccatccatcctgt
gtcactcggcagaaggtgatcggagcaggagagtttggggaggtgtacaagggcatgctg
aagacatcctcggggaagaaggaggtgccggtggccatcaagacgctgaaagccggctac
acagagaagcagcgagtggacttcctcggcgaggccggcatcatgggccagttcagccac
cacaacatcatccgcctagagggcgtcatctccaaatacaagcccatgatgatcatcact
gagtacatggagaatggggccctggacaagttccttcgggagaaggatggcgagttcagc
gtgctgcagctggtgggcatgctgcggggcatcgcagctggcatgaagtacctggccaac
atgaactatgtgcaccgtgacctggctgcccgcaacatcctcgtcaacagcaacctggtc
tgcaaggtgtctgactttggcctgtcccgcgtgctggaggacgaccccgaggccacctac
accaccagtggcggcaagatccccatccgctggaccgccccggaggccatttcctaccgg
aagttcacctctgccagcgacgtgtggagctttggcattgtcatgtgggaggtgatgacc
tatggcgagcggccctactgggagttgtccaaccacgaggtgatgaaagccatcaatgat
ggcttccggctccccacacccatggactgcccctccgccatctaccagctcatgatgcag
tgctggcagcaggagcgtgcccgccgccccaagttcgctgacatcgtcagcatcctggac
aagctcattcgtgcccctgactccctcaagaccctggctgactttgacccccgcgtgtct
atccggctccccagcacgagcggctcggagggggtgcccttccgcacggtgtccgagtgg
ctggagtccatcaagatgcagcagtatacggagcacttcatggcggccggctacactgcc
atcgagaaggtggtgcagatgaccaacgacgacatcaagaggattggggtgcggctgccc
ggccaccagaagcgcatcgcctacagcctgctgggactcaaggaccaggtgaacactgtg
gggatccccatctga

>gi568815597r:16098590_16309054|GENSCAN_predicted_peptide_3|94_aa
MRKTSDKPKLRDSPQTRTSEIVKVMKTKETLRNCHRPQKTKTRQLNAMWDPGLDPGTEKD
ISGKTGEIRIKSGVELIAVYQCWFLSFDYCTVVT

>gi568815597r:16098590_16309054|GENSCAN_predicted_CDS_3|285_bp
atgagaaaaacatcagataaacccaaattgagggatagtccacagaccagaacttctgaa
attgtcaaggtcatgaaaaccaaggagacactgagaaactgtcacagaccacagaagact
aagacacggcaactaaacgcaatgtgggatcctggattggatcctggaacagaaaaggac
attagtgggaaaactggtgaaatccgaatcaagtctggagttgagttaatagcagtgtac
cagtgttggtttcttagttttgactactgtaccgtagtcacgtaa

>gi568815597r:16098590_16309054|GENSCAN_predicted_peptide_4|1560_aa
MARPPVPGSVVVPNWHESAEGKEYLACILRKNRRRVFGLLERPVLLPPVSIDTASYKIFV
SGKSGVGKTALVAKLAGLEVPVVHHETTGIQTTVVFWPAKLQASSRVVMFRFEFWDCGES
ALKKFDHMLLACMENTDAFLFLFSFTDRASFEDLPGQLARIAGEAPGVVRMVIGSKFDQY
MHTDVPERDLTAFRQAWELPLLRVKSVPGRRLADGRTLDGRAGLADVAHILNGLAEQLWH
QDQTAMTPPTGRRLCLAPCGGIYVPDSRGTFSETGKPALIKVGQSGVRPLLTVPLTPRWV
RLRARLGGEAATPAAAGERRLRQRRWRENFQRNLEEGLFELPGYQVPGSDLNSCQLLYPY
WACWGYWHKYQPLDQPLDKLSCLFDHPGTVFFSIFMSFWGHGLPGALEAGSATLAHHWDC
SDFQDQEAMPSSAPHHWDCSDFQDQEVMPSSALHHWDCSDFQDQEECPHLQFAALALQMT
QNPVTGLKEPYFQPHSCLSHLLTSSAAILTVLCVVMIFLVSVIIYHGIISIAMFHTGNSV
LMTQANVLWGNGGPKALSKVLCVCQQQCGPGGCHIQVTQQLIIIMVGKQLLNHMEEFVGL
GGGPGPDTPCLPELQFGFITIFVGAFLLAPLFTLLNNRVEIGLDAHKFLCKYQRPMAGRG
WTSGSDCSCWRPWYTLRYKASRDVGVNLALFYWKLLAVHVHLGFIIAFEGLMNQTLCLGG
ISPSQLGRERASPAGTAKQHQQRAWAQRGPGGWQSKRGMDCGPPATLQPHLTGPPGTAHH
PVAVCQQESLSFAELPALKPPSPVCLDLFPVAPEELRAPGSRWSLGTPAPLQGLLWPLSP
GGSDTEITSGGMRPSRAGSWPHCPGAQPPALEGPWSPRHTQPQRRASHGSEKKSAWRKMR
VYQREEVPGCPEAHAVFLEPGQVVQEQALSTEEPRVELSGSTRVSLEGPERRRFSASELM
TRLHSSLRLGRNSAARALISGSGTGAAREGKASGMEARSVEMSGDRVSRPAPGDSREGDW
SEPRLDTQEEPPLGSRSTNERRQSRFLLNSVLYQEYSDVASARELRRQQREEEGPGDEAE
GAEEGPGPPRANLSPSSSFRAQRSARGSTFSLWQDIPDVRGSGVLATLSLRDCKLQEAKF
ELITSEASYIHSLSVAVGHFLGSAELSECLGAQDKQWLFSKLPEVKSTSERFLQDLEQRL
EADVLRFSVCDVVLDHCPAFRRVYLPYVTNQAYQERTYQRLLLENPRFPGILARLEESPV
CQRLPLTSFLILPFQRITRLKMLVENILKRTAQGSEDEDMATKAFNALKELVQECNASVQ
SMKRTEELIHLSKKIHFEGKIFPLISQARWLVRHGELVELAPLPAAPPAKLKLSSKAVYL
HLFNDCLLLSRRKELGKFAVFVHAKMAELQVRDLSLKLQGIPGHVFLLQLLHGQHMKHQF
LLRARTESEKQRWISALCPSSPQEDKEVISEGEDCPQVQCVRTYKALHPDELTLEKTDIL
SVRTWTSDGWLEGVRLADGEKGWVPQAYVEEISSLSARLRNLRENKRVTSATSKLGEAPV

>gi568815597r:16098590_16309054|GENSCAN_predicted_CDS_4|4683_bp
atggccagacctcccgtgcccggttcggtggttgtcccaaactggcacgagagtgccgag
ggcaaggagtacctggcttgcattctgcgcaagaaccgccggcgggtgtttgggctgctt
gagcggccagtgctgctgccgcctgtgtccattgacactgccagctacaagatctttgtg
tccgggaagagtggtgtgggcaagacggcgctggtggccaagctggctggcctggaggtg
cctgtggtgcaccacgagaccaccggcatccagaccaccgtggtattttggccagccaag
ctgcaggccagcagccgtgtcgtcatgtttcgttttgagttctgggactgtggagagtct
gcactcaaaaagttcgatcatatgctgctggcttgcatggagaacacagatgccttcctc
ttcctcttctccttcactgaccgtgcctcctttgaagacctccctggacagctggcccgc
atagcaggtgaggcccctggtgtcgtcaggatggtcatcggctccaaatttgaccagtac
atgcacacggacgtgcccgagcgggacctcacagccttccggcaggcctgggagctgccc
ctgctacgggtgaagagtgtgccggggcggcggctggctgatgggcgcacactggacggg
cgggctgggctggccgacgttgcccacatactcaatggccttgctgagcagctgtggcac
caggaccagacggcgatgacgccaccgacaggacgacgactgtgtctcgcgccctgcggc
ggcatttatgtgccggactctaggggtacattttctgagacgggaaaacctgcattgata
aaagtgggacagagcggggtcagaccgctcctaactgtccccctgaccccgcgatgggtt
agacttcgtgctcgcctgggaggagaagctgcgacccccgcggcggcgggagagaggcga
ctccggcagcggcgctggcgcgagaattttcagcggaacctggaggagggcctctttgaa
ctgcctgggtaccaggtacccggttcagatctcaactcttgccaattgctgtacccatac
tgggcttgctggggatactggcacaagtaccagcccctggaccagcctttggacaaactg
agctgcctctttgaccacccaggaaccgtgttcttcagcatcttcatgtccttctggggc
catggccttcctggagcactggaagcagggagtgccaccttggcccaccactgggactgc
agtgacttccaggaccaggaggcaatgcccagttcagccccccaccactgggactgcagc
gacttccaggaccaggaggtgatgcccagttcagccctccaccactgggactgcagcgac
ttccaggaccaggaggagtgcccacatctacagtttgctgccctggccctgcagatgacc
cagaacccagtgacaggcttgaaggagccctacttccaaccgcacagctgcctttcccac
ctactcaccagctctgcagccatcctcactgtgctctgtgtggtgatgattttcctggta
tctgtcataatttaccatggcatcatcagcattgcaatgttccacactggcaactctgtg
ctcatgacccaagcgaatgtcctttggggcaatggaggccccaaagccctgagtaaggtg
ctctgtgtctgccaacaacagtgcggtcctggtggctgccacattcaggtcacccagcag
ctcatcatcatcatggtgggcaaacagctgctcaaccacatggaagaatttgttgggctg
ggaggtggccccgggcctgacactccctgcctgccagagctgcagtttgggttcatcacc
atctttgtgggagccttcctgctggcacccctgttcactctgctcaacaaccgggtagag
attggactggacgcccacaagttcctgtgcaagtaccagcgaccaatggctgggcgcggc
tggacatctggatctgactgctcctgctggaggccatggtacaccttgagatacaaggcc
tctcgcgacgtgggggtgaacctcgccctcttctactggaagctgctggctgtgcatgtg
catctgggtttcattatcgccttcgagggtttgatgaatcaaactctttgtctgggtggg
atctcccccagccagctgggcagagagagggcttcccctgccggaacagccaaacagcat
cagcagcgggcctgggcccagagagggccaggtgggtggcagagcaaaagaggaatggac
tgtgggccacctgctaccctccagccccacctgactgggccacctggcactgcccaccac
cctgtagcagtgtgccagcaggagagtctgtcctttgcagagctgcccgccctgaagccc
ccgagcccagtgtgtctggaccttttccctgttgccccagaggagcttcgggctcctggc
agccgctggtccctggggacccctgcccctctccaagggttgctatggccattatcccca
ggaggctcagatacagagatcaccagcggggggatgcggcccagcagggctggcagctgg
ccacactgtcctggtgcccagcccccagctctggagggaccctggagtccccgacacaca
cagccacagcgccgggccagccacggctcggagaagaagtctgcctggcgcaagatgcgg
gtgtaccagcgtgaagaggtccccggctgccccgaggcccacgctgtcttcctagagcct
ggccaggtagtgcaagagcaggccctgagcacagaggagcccagggtggagttgtctggg
tccacccgagtgagcctcgaaggtcctgagcggaggcgcttctcggcatcggagctgatg
acccggctgcactcttctctgcgcctggggcggaattcagcagcccgggcactcatctct
gggtcaggcaccggagcagcccgggaagggaaagcatctggaatggaggctcgaagtgta
gagatgagcggggaccgggtgtcgcggccagcccctggtgactcacgagagggcgattgg
tccgagcccaggctagacacacaggaagagccgcctttggggtccaggagcaccaacgag
cggcgccagtctcgattcctccttaactccgtcctctatcaggaatacagcgacgtggcc
agcgcccgcgaactgcggcggcagcagcgcgaggaggagggcccgggggacgaggccgag
ggcgcagaggaggggccggggccgccgcgggccaacctctcccccagcagctccttccgg
gcgcagcgctcggcgcgaggctccaccttctcgctgtggcaggatatccccgacgtacgc
ggcagcggcgtcctggccacgctgagcctgcgggactgcaagctgcaggaggccaagttt
gagctgatcacctccgaggcctcctacatccacagcctgtcggtggctgtgggccacttc
ttaggctctgccgagctgagcgagtgtctgggggcgcaggacaagcagtggctgttttcc
aaactgcccgaggtcaagagcaccagcgagaggttcctgcaggacctggagcagcggctg
gaggcagatgtgctgcgcttcagcgtgtgcgacgtggtgctggaccactgcccggccttc
cgcagagtctacctgccctatgtcaccaaccaggcctaccaggagcgcacctaccagcgc
ctgctcctggagaaccccaggttccctggcatcctggctcgcctggaggagtctcctgtg
tgccagcgtctgccccttacctccttccttatcctgcccttccagaggatcacccgcctc
aagatgttggtggagaacatcctgaagcggacagcacagggctctgaagacgaagacatg
gccaccaaggccttcaatgcgctcaaggagctggtgcaggagtgcaatgctagtgtacag
tccatgaagaggacagaggaactcatccacctgagcaagaagatccactttgagggcaag
attttcccgctgatctctcaggcccgctggctggttcggcatggagagttggtagagctg
gcaccactgcctgcagcaccccctgccaagctgaagctgtccagcaaggcagtctacctc
cacctcttcaatgactgcttgctgctctctcggcggaaggagctagggaagtttgccgtt
ttcgtccatgccaagatggctgagctgcaggtgcgggacctgagcctgaagctgcagggc
atccccggccacgtgttcctcctccagctcctccacgggcagcacatgaagcaccagttc
ctgctgcgggcccggacggaaagtgagaagcagcgatggatctcagccttgtgcccctcc
agcccccaggaggacaaggaggtcatcagtgagggggaagattgcccccaggttcagtgt
gttaggacatacaaggcactgcacccagatgagctgaccttggagaagactgacatcctg
tcagtgaggacctggaccagtgacggctggctggaaggggtccgcctggcagatggtgag
aaggggtgggtgccccaggcctatgtggaagagatcagcagcctcagcgcccgcctccga
aacctccgggagaataagcgagtcacaagtgccaccagcaaactgggggaggctcctgtg
tga

>gi568815597r:16098590_16309054|GENSCAN_predicted_peptide_5|629_aa
MVVFACSACYPGGRGVAHQCYHGFMKAVQEGNIQWESRTYPYPGTPITQRFSHSACYYDA
NQSMYVFGGCTQSSCNAAFNDLWRLDLNSKEWIRPLASGSYPSPKAGATLVVYKDLLVLF
GGWTRPSPYPLHQPERFFDEIHTYSPSKNWWNCIVTTHGPPPMAGHSSCVIDDKMIVFGG
SLGSRQMSNDVWVLDLEQWAWSKPNISGPSPHPRGGQSQLFKDAWLLHMHSGPWAWQPLK
VENEEHGAPELWCHPACRVGQCVVVFSQAPSGRAPLSPSLNSRPSPISATPPALVPETRE
YRSQSPVRSMDEAPCVNGRWGTLRPRAQRQTPSGSREGSLSPARGDGSPILNGGSLSPGT
AAVGGSSLDSPVQAISPSTPSAPEGYDLKIGLSLAPRRGSLPDQKDLRLGSIDLNWDLKP
ASSSNPMDGMDNRTVGGSMRHPPEQTNGVHTPPHVASALAGAVSPGALRRSLEAIKAMSS
KGPSASAALSPPLGSSPGSPGSQSLSSGETVPIPRPGPAQGDGHSLPPIARRLGHHPPQS
LNVGKPLYQSMNCKPMQMYVLDIKDTKEKGRVKWKVFNSSSVVGPPETSLHTVVQGRGEL
IIFGGLMDKKQNVKYYPKTNALYFVRAKR

>gi568815597r:16098590_16309054|GENSCAN_predicted_CDS_5|1890_bp
atggtggtgtttgcctgtagtgcctgctacccaggaggcagaggtgtagcccatcagtgt
tatcatggtttcatgaaggctgtccaggaaggaaacattcagtgggagagccgtacctat
ccttatcctggaaccccaatcactcagcgcttctcgcacagtgcatgctattatgatgct
aatcagtctatgtatgtgtttggaggctgtacccagagcagctgcaatgctgctttcaat
gacctctggagacttgacctaaacagcaaagagtggatccgacctttggcttcagggtcc
tatccttcccccaaagctggagcaactctggtcgtgtacaaggacttgctagtgctgttt
ggtggctggacgcggccaagcccttatcccctacaccagccagagagattctttgatgaa
atacacacttactcaccctctaaaaattggtggaactgcattgtgacaacccatgggcca
cctcccatggctggccactcctcctgtgtgatagatgataaaatgattgtctttggtggc
tctttaggatcccggcaaatgagcaatgatgtctgggtccttgaccttgagcagtgggcg
tggtccaagccgaacatctctggccccagtcctcatcctcgaggtggccaatctcagcta
ttcaaggatgcttggttgttgcacatgcattctggtccttgggcctggcagccactcaag
gtagaaaatgaagagcatggggccccagaactgtggtgccatccagcttgccgggtggga
cagtgtgtggtggtcttcagccaggctcctagtgggagagccccactcagccccagtttg
aactctcgcccatcacctatcagtgccactcctccagctctcgttcctgaaacccgagag
taccgctctcagtctccagtaagaagcatggatgaagctccttgtgttaacggccgctgg
ggaacactgagacccagggctcaaaggcagactccttcaggttcccgggaagggagcctt
tccccagccagaggagacggctctcctatcctcaatggtgggagtttgtctccaggaacg
gcagctgtgggtggctcttctttggacagtcctgtacaggccatatctccaagtactcca
tctgctcctgaaggatacgacctgaaaataggactttctttggccccccgacgaggatca
ctaccagatcagaaagatctgagattaggatccatagatctgaattgggatctgaaaccc
gcttccagtagtaatcccatggatggcatggacaataggacagttgggggaagtatgaga
caccctcctgaacagacaaatggtgtgcataccccacctcacgtggccagtgcccttgca
ggggccgtctccccaggtgccctgcgtcggagtctggaagccatcaaagcgatgtcctcc
aaaggcccctcggcctctgcagcactaagtcctcctcttgggtcttctccaggctctcct
gggagccagagtttgagcagtggagaaacagtgcccatccctcgcccagggcctgcccaa
ggagatggacattccttacctcccattgctcgccgcctgggccaccaccctccacagtcc
ctaaatgttggcaaacccctataccagagtatgaactgcaagcccatgcagatgtacgtg
ctggacattaaagacaccaaggagaaggggcgggtcaaatggaaagtatttaatagcagt
tctgtggttggacctcctgaaaccagcctgcataccgtggtacaaggcaggggtgaactc
atcatatttggaggactcatggacaagaaacagaatgtgaagtactatccaaaaacaaac
gccttgtactttgtacgagcaaagagataa
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