Result of GENSCAN for pF1KA0904
GENSCAN 1.0	Date run:  4-Nov-116	Time: 01:07:37

Sequence gi568815581f:39362072_39631313 : 269242 bp : 46.97% 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..
----- ---- - ------ ------ ---- -- -- ---- ---- ----- ----- ------

 1.14 PlyA -    926    921    6                               1.05
 1.13 Term -  48650  45404 3247  1  1  120   49  1590 0.927 143.72
 1.12 Intr -  53060  52955  106  0  1   81   63   131 0.953   9.17
 1.11 Intr -  53268  53173   96  1  0  114   89    21 0.861   4.78
 1.10 Intr -  57847  57646  202  1  1   66   79   131 0.929   8.86
 1.09 Intr -  61374  61256  119  1  2  111   87    28 0.999   5.18
 1.08 Intr -  61750  61626  125  0  2   67  109    26 0.884   2.83
 1.07 Intr -  62667  62556  112  1  1   63  115    32 0.933   2.84
 1.06 Intr -  65719  65630   90  2  0   60   95    64 0.898   4.27
 1.05 Intr -  69117  69044   74  2  2   75   71    24 0.912  -1.55
 1.04 Intr -  72249  72178   72  2  0   86  108    19 0.775   2.22
 1.03 Intr -  77122  77094   29  1  2   83  105    35 0.934   1.61
 1.02 Intr -  78447  78315  133  2  1   76   68    68 0.888   4.25
 1.01 Init -  78589  78552   38  1  2   75  106    23 0.531   2.28
 1.00 Prom -  81757  81718   40                              -6.36

 2.00 Prom +  83657  83696   40                              -5.86
 2.01 Init + 100001 101046 1046  1  2   47   99  1017 0.322  92.26
 2.02 Intr + 108808 109692  885  1  0   71   97   243 0.080  13.94
 2.03 Intr + 128486 128662  177  2  0   70   87    51 0.759   2.23
 2.04 Intr + 130680 130819  140  0  2  109   99   153 0.999  18.61
 2.05 Intr + 132453 132623  171  1  0   79   74   192 0.999  16.81
 2.06 Intr + 139179 139368  190  1  1   98   92    46 0.989   4.64
 2.07 Intr + 147634 147690   57  1  0   80   94    42 0.681   2.00
 2.08 Intr + 149458 149559  102  1  0   62   82    56 0.763   1.69
 2.09 Intr + 153660 153737   78  0  0  111   92    24 0.906   3.77
 2.10 Intr + 155369 155485  117  2  0   93   59   155 0.979  12.68
 2.11 Intr + 157885 158016  132  1  0   93   89    91 0.998   9.46
 2.12 Intr + 162603 162814  212  0  2  107   68    63 0.960   4.76
 2.13 Intr + 163793 164245  453  0  0   60   97   414 0.244  32.73
 2.14 Term + 168560 169245  686  0  2   55   40   343 0.162  20.00
 2.15 PlyA + 169781 169786    6                               1.05

 3.00 Prom + 171459 171498   40                              -6.46
 3.01 Init + 173817 173903   87  2  0   58  105    30 0.658   2.35
 3.02 Intr + 178378 178413   36  0  0  122   49    39 0.643   1.86
 3.03 Intr + 182178 182289  112  2  1  140   91    48 0.979  10.25
 3.04 Intr + 182964 182986   23  1  2   76   91    -5 0.838  -4.14
 3.05 Intr + 184546 184687  142  0  1  122   82    60 0.843   8.73
 3.06 Intr + 184692 184803  112  1  1   97   42    46 0.474   0.34
 3.07 Intr + 185714 185759   46  2  1  113  108    23 0.272   5.21
 3.08 Intr + 204386 204601  216  1  0   54   43   117 0.005   2.50
 3.09 Intr + 210950 210971   22  1  1  112  102     3 0.042   1.22
 3.10 Intr + 211377 211654  278  1  2   -1   35   219 0.005   4.94
 3.11 Intr + 217125 217249  125  2  2   91   48    20 0.009  -2.32
 3.12 Intr + 230368 230602  235  1  1   51   79   140 0.438   7.09
 3.13 Intr + 231482 231549   68  1  2   46  100    92 0.424   3.90
 3.14 Term + 238563 238578   16  0  1  128   37    15 0.090  -1.89
 3.15 PlyA + 240878 240883    6                              -0.45

 4.02 PlyA - 241731 241726    6                               1.05
 4.01 Sngl - 244528 243380 1149  1  0  101   53  2118 0.926 205.94
 4.00 Prom - 246132 246093   40                              -6.86

 5.00 Prom + 247377 247416   40                              -7.26
 5.01 Init + 256072 256212  141  0  0   87   34   131 0.131   5.73
 5.02 Intr + 265235 265402  168  1  0   76   91   244 0.664  23.64
 5.03 Term + 267901 268116  216  0  0   85   43    85 0.636   0.84
 5.04 PlyA + 269171 269176    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 -  40254  40102  153  0  0   31   79   138 0.826   5.23
S.002 Term - 201912 201853   60  0  0   66   42   137 0.911   4.70


Predicted peptide sequence(s):

Predicted coding sequence(s):


>gi568815581f:39362072_39631313|GENSCAN_predicted_peptide_1|1480_aa
MTDRLESIARQNGLGSHLSASGTECYITSDMFYVEVQLDPAGQLCDVKVAHHGENPVSCP
ELVQQLREKNFDEFSKHLKGLVNLYNLPGDKKATNAGPLDKILHGSVGYLTPRSGGHLMN
LKYYVSPSDLLDDKTASPIILHENNVSRSLGMNASVTIEGTSAVYKLPIAPLIMGSHPVD
NKWTPSFSSITSANSVDLPACFFLKFPQPIPVSRAFVQKLQNCTGIPLFETQPTYAPLYE
LITQFELSKDPDPIPLNHNMRFYAALPGQQHCYFLNKDAPLPDGRSLQGTLVSKITFQHP
GRVPLILNLIRHQVAYNTLIGSCVKRTILKEDSPGLLQFEVCPLSESRFSVSFQHPVNDS
LVCVVMDVQDSTHVSCKLYKGLSDALICTDDFIAKVVQRCMSIPVTMRAIRRKAETIQAD
TPALSLIAETVEDMVKKNLPPASSPGYGMTTGNNPMSGTTTPTNTFPGGPITTLFNMSMS
IKDRHESVGHGEDFSKVSQNPILTSLLQITGNGGSTIGSSPTPPHHTPPPVSSMAGNTKN
HPMLMNLLKDNPAQDFSTLYGSSPLERQNSSSGSPRMEICSGSNKTKKKKSSRLPPEKPK
HQTEDDFQRELFSMDVDSQNPIFDVNMTADTLDTPHITPAPSQCSTPPTTYPQPVPHPQP
SIQRMVRLSSSDSIGPDVTDILSDIAEEASKLPSTSDDCPAIGTPLRDSSSSGHSQSTLF
DSDVFQTNNNENPYTDPADLIADAAGSPSSDSPTNHFFHDGVDFNPDLLNSQSQSGFGEE
YFDESSQSGDNDDFKGFASQALNTLGVPMLGGDNGETKFKGNNQADTVDFSIISVAGKAL
APADLMEHHSGSQGPLLTTGDLGKEKTQKRVKEGNGTSNSTLSGPGLDSKPGKRSRTPSN
DGKSKDKPPKRKKADTEGKSPSHSSSNRPFTPPTSTGGSKSPGSAGRSQTPPGVATPPIP
KITIQIPKGTVMVGKPSSHSQYTSSGSVSSSGSKSHHSHSSSSSSSASTSGKMKSSKSEG
SSSSKLSSSMYSSQGSSGSSQSKNSSQSGGKPGSSPITKHGLSSGSSSTKMKPQGKPSSL
MNPSLSKPNISPSHSRPPGGSDKLASPMKPVPGTPPSSKAKSPISSGSGGSHMSGTSSSS
GMKSSSGLGSSGSLSQKTPPSSNSCTASSSSFSSSGSSMSSSQNQHGSSKGKSPSRNKKP
SLTAVIDKLKHGVVTSGPGGEDPLDGQMGVSTNSSSHPMSSKHNMSGGEFQGKREKSDKD
KSKVSTSGSSVDSSKKTSESKNVGSTGVAKIIISKHDGGSPSIKAKVTLQKPGESSGEGL
RPQMASSKNYGSPLISGSTPKHERGSPSHSKSPAYTPQNLDSESESGSSIAEKSYQNSPS
SDDGIRPLPEYSTEKHKKHKKEKKKVKDKDRDRDRDKDRDKKKSHSIKPESWSKSPISSD
QSLSMTSNTILSADRPSRLSPDFMIGEEDDDLMDVALIGN

>gi568815581f:39362072_39631313|GENSCAN_predicted_CDS_1|4443_bp
atgactgatcgtttggagtccatagcaagacagaatggactgggctctcatctcagtgcc
agtggcactgaatgttacatcacgtcagatatgttctatgtggaagtgcagttagatcct
gcaggacagctttgtgatgtaaaagtggctcaccatggggagaatcctgtgagctgtccg
gagcttgtacagcagctaagggaaaaaaattttgatgaattttctaagcaccttaagggc
cttgttaatctgtataaccttccaggggacaagaaagcaactaatgctggtcccttggat
aagattcttcatggaagtgttggctatctcacaccaaggagtgggggtcatttaatgaac
ctgaagtactatgtctctccttctgacctactggatgacaagactgcatctcccatcatt
ttgcatgagaataatgtttctcgatctttgggcatgaatgcatcagtgacaattgaagga
acatctgctgtgtacaaactcccaattgcaccattaattatggggtcacatccagttgac
aataaatggaccccttccttctcctcaatcaccagtgccaacagtgttgatcttcctgcc
tgtttcttcttgaaatttccccagccaatcccagtatctagagcatttgttcagaaactg
cagaactgcacaggaattccattgtttgaaactcaaccaacttatgcacccctgtatgaa
ctgatcactcagtttgagctatcaaaggaccctgaccccatacctttgaatcacaacatg
agattttatgctgctcttcctggtcagcagcactgctatttcctcaacaaggatgctcct
cttccagatggccgaagtctacagggaacccttgttagcaaaatcacctttcagcaccct
ggccgagttcctcttatcctaaatctgatcagacaccaagtggcctataacaccctcatt
ggaagctgtgtcaaaagaactattctgaaagaagattctcctgggcttctccaatttgaa
gtgtgtcctctctcagagtctcgtttcagcgtatcttttcagcaccctgtgaatgactcc
ctggtgtgtgtggtaatggatgtgcaggactcaacacatgtgagctgtaaactctacaaa
gggctgtcggatgcactgatctgcacagatgacttcattgccaaagttgttcaaagatgt
atgtccatccctgtgacgatgagggctattcggaggaaagctgaaaccattcaagccgac
accccagcactgtccctcattgcagagacagttgaagacatggtgaaaaagaacctgccc
ccggctagcagcccagggtatggcatgaccacaggcaacaacccaatgagtggtaccact
acaccaaccaacacctttccggggggtcccattaccaccttgtttaatatgagcatgagc
atcaaagatcggcatgagtcggtgggccatggggaggacttcagcaaggtgtctcagaac
ccaattcttaccagtttgttgcaaatcacagggaacggggggtctaccattggctcgagt
ccgacccctcctcatcacacgccgccacctgtctcttcgatggccggcaacaccaagaac
cacccgatgctcatgaaccttcttaaagataatcctgcccaggatttctcaaccctttat
ggaagcagccctttagaaaggcagaactcctcttccggctcaccccgcatggaaatatgc
tcggggagcaacaagaccaagaaaaagaagtcatcaagattaccacctgagaaaccaaag
caccagactgaagatgactttcagagggagctattttcaatggatgttgactcacagaac
cctatctttgatgtcaacatgacagctgacacgctggatacgccacacatcactccagct
ccaagccagtgtagcactcccccaacaacttacccacaaccagtacctcacccccaaccc
agtattcaaaggatggtccgactatccagttcagacagcattggcccagatgtaactgac
atcctttcagacattgcagaagaagcttctaaacttcccagcactagtgatgattgccca
gccattggcacccctcttcgagattcttcaagctctgggcattctcagagtaccctgttt
gactctgatgtctttcaaactaacaataatgaaaatccatacactgatccagctgatctt
attgcagatgctgctggaagccccagtagtgactctcctaccaatcatttttttcatgat
ggagtagatttcaatcctgatttattgaacagccagagccaaagtggttttggagaagaa
tattttgatgaaagcagccaaagtggggataatgatgatttcaaaggatttgcatctcag
gcactaaatactttgggggtgccaatgcttggaggtgataatggggagaccaagtttaag
ggcaataaccaagccgacacagttgatttcagtattatttcagtagccggcaaagcttta
gctcctgcagatcttatggagcatcacagtggtagtcagggtcctttactgaccactggg
gacttagggaaagaaaagactcaaaagagggtaaaggaaggcaatggcaccagtaatagt
actctctcggggcccggattagacagcaaaccagggaagcgcagtcggaccccttctaat
gatgggaaaagcaaagataagcctccaaagcggaagaaggcagacactgagggaaagtct
ccatctcatagttcttctaacagaccttttaccccacctaccagtacaggtggatctaaa
tcgccaggcagtgcaggaagatctcagactcccccaggtgttgccacaccacccattccc
aaaatcactattcagattcctaagggaacagtgatggtgggcaagccttcctctcacagt
cagtataccagcagtggttctgtgtcttcctcaggcagcaaaagccaccatagccattct
tcctcctcttcctcatctgcttccacctcagggaagatgaaaagcagtaaatcagaaggt
tcatcaagttccaagttaagtagcagtatgtattctagccaggggtcttctggatctagc
cagtccaaaaattcatcccagtctggggggaagccaggctcctctcccataaccaagcat
ggactgagcagtggctctagcagcaccaagatgaaacctcaaggaaagccatcatcactt
atgaatccttctttaagtaaaccaaacatatccccttctcattcaaggccacctggaggc
tctgacaagcttgcctctccaatgaagcctgttcctggaactcctccatcctctaaagcc
aagtcccctatcagttcaggttctggtggttctcatatgtctggaactagttcaagctct
ggcatgaagtcatcttcagggttaggatcctcaggctcgttgtcccagaaaactccccca
tcatctaattcctgtacggcatcttcctcctccttttcctcaagtggctcttccatgtca
tcctctcagaaccagcatgggagttctaaaggaaaatctcccagcagaaacaagaagccg
tccttgacagctgtcatagataaactgaagcatggggttgtcaccagtggccctgggggt
gaagacccactggacggccagatgggggtgagcacaaattcttccagccatcctatgtcc
tccaaacataacatgtcaggaggagagtttcagggcaagcgtgagaaaagtgataaagac
aaatcaaaggtttccacctccgggagttcagtggattcttctaagaagacctcagagtca
aaaaatgtggggagcacaggtgtggcaaaaattatcatcagtaagcatgatggaggctcc
cctagcattaaagccaaagtgactttgcagaaacctggggaaagtagtggagaagggctt
aggcctcaaatggcttcttctaaaaactatggctctccactcatcagtggttccactcca
aagcatgagcgtggctctcccagccatagtaagtcaccagcatataccccccagaatctg
gacagtgaaagtgagtcaggctcctccatagcagagaaatcttatcagaatagtcccagc
tcagacgatggtatccgaccacttccagaatacagcacagagaaacataagaagcacaaa
aaggaaaagaagaaagtaaaagacaaagatagggaccgagaccgggacaaagaccgagac
aagaaaaaatctcatagcatcaagccagagagttggtccaaatcacccatctcttcagac
cagtccttgtctatgacaagtaacacaatcttatctgcagacagaccctcaaggctcagc
ccagactttatgattggggaggaagatgatgatcttatggatgtggccctgattgggaat
tag

>gi568815581f:39362072_39631313|GENSCAN_predicted_peptide_2|1481_aa
MPNSERHGGKKDGSGGASGTLQPSSGGGSSNSRERHRLVSKHKRHKSKHSKDMGLVTPEA
ASLGTVIKPLVEYDDISSDSDTFSDDMAFKLDRRENDERRGSDRSDRLHKHRHHQHRRSR
DLLKAKQTEKEKSQEVSSKSGSMKDRISGSSKRSNEETDDYGKAQVAKSSSKESRSSKLH
KEKTRKERELKSGHKDRSKSHRKRETPKSYKTVDSPKRRSRSPHRKWSDSSKQDDSPSGA
SYGQDYDLSPSRSHTSSNYDSYKKSPGSTSRRQSVSPPYKEPSAYQSSTRSPSPYSRRQR
SVSPYSRRRSSSYERSGSYSGRSPSPYGRRRSSSPFLSKRSLSRSPLPSRKSMKSRSRSP
AYSRHSSSHSKKKRSSSRSRHSSISPVRLPLNSSLGAELSRKKKERAAAAAAAKMDGKES
KGSPVFLPRKENSSVEAKDSGLESKKLPRSVKLEKSAPDTELVNVTHLNTEVKNSSDTGK
VKLDENSEKHLVKDLKAQGTRDSKPIALKEEIVTPKETETSEKETPPPLPTIASPPPPLP
TTTPPPQTPPLPPLPPIPALPQQPPLPPSQPAFSQVPASSTSTLPPSTHSKTSAVSSQAN
SQPPVQVSVKTQVSVTAAIPHLKTSTLPPLPLPPLLPGDDDMDSPKETLPSKPVKKEKEQ
RTRHLLTDLPLPPELPGGDLSPPDSPEPKAITPPQQPYKKRPKICCPRYGERRQTESDWG
KRCVDKFDIIGIIGEGTYGQVYKAKDKDTGELVALKKVRLDNEKEGFPITAIREIKILRQ
LIHRSVVNMKEIVTDKQDALDFKKDKGAFYLVFEYMDHDLMGLLESGLVHFSEDHIKSFM
KQLMEGLEYCHKKNFLHRDIKCSNILLNNSGQIKLADFGLARLYNSEESRPYTNKVITLW
YRPPELLLGEERYTPAIDVWSCGCILGELFTKKPIFQANLELAQLELISRLCGSPCPAVW
PDVIKLPYFNTMKPKKQYRRRLREEFSFIPSAALDLLDHMLTLDPSKRCTAEQTLQSDFL
KDVELSKMAPPDLPHWQDCHELWSKKRRRQRQSGVVVEEPPPSKTSRKETTSGTSTEPVK
NSSPAPPQPAPGKVESGAGDAIGLADITQQLNQSELAVLLNLLQSQTDLSIPQMAQLLNI
HSNPEMQQQLEALNQSISALTEATSQQQDSETMAPEESLKEAPSAPVILPSAEQTTLEAS
STPADMQNILAVLLSQLMKTQEPAGSLEENNSDKNSGPQGPRRTPTMPQEEAAEKRPPEP
PGPPPPPPPPPLVEGDLSSAPQELNPAVTAALLQLLSQPEAEPPGHLPHEHQALRPMEYS
TRPRPNRTYGNTDGPETGFSAIDTDERNSGPALTESLVQTLVKNRTFSGSLSHLGESSSY
QGTGSVQFPGDQDLRFARVPLALHPVVGQPFLKAEGSSNSVVHAETKLQNYGELGPGTTG
ASSSGAGLHWGGPTQSSAYGKLYRGPTRVPPRGGRGRGVPY

>gi568815581f:39362072_39631313|GENSCAN_predicted_CDS_2|4446_bp
atgcccaattcagagagacatgggggcaagaaggacgggagtggaggagcttctggaact
ttgcagccgtcatcgggaggcggcagctctaacagcagagagcgtcaccgcttggtatcg
aagcacaagcggcataagtccaaacactccaaagacatggggttggtgacccccgaagca
gcatccctgggcacagttatcaaacctttggtggagtatgatgatatcagctctgattcc
gacaccttctccgatgacatggccttcaaactagaccgaagggagaacgacgaacgtcgt
ggatcagatcggagcgaccgcctgcacaaacatcgtcaccaccagcacaggcgttcccgg
gacttactaaaagctaaacagaccgaaaaagaaaaaagccaagaagtctccagcaagtcg
ggatcgatgaaggaccggatatcgggaagttcaaagcgttcgaatgaggagactgatgac
tatgggaaggcgcaggtagccaaaagcagcagcaaggaatccaggtcatccaagctccac
aaggagaagaccaggaaagaacgggagctgaagtctgggcacaaagaccggagtaaaagt
catcgaaaaagggaaacacccaaaagttacaaaacagtggacagcccaaaacggagatcc
aggagcccccacaggaagtggtctgacagctccaaacaagatgatagcccctcgggagct
tcttatggccaagattatgaccttagtccctcacgatctcatacctcgagcaattatgac
tcctacaagaaaagtcctggaagtacctcgagaaggcagtcggtcagtcccccttacaag
gagccttcggcctaccagtccagcacccggtcaccgagcccctacagtaggcgacagaga
tctgtcagtccctatagcaggagacggtcgtccagctacgaaagaagtggctcttacagc
gggcgatcgcccagtccctatggtcgaaggcggtccagcagccctttcctgagcaagcgg
tctctgagtcggagtccactccccagtaggaaatccatgaagtccagaagtagaagtcct
gcatattcaagacattcatcttctcatagtaaaaagaagagatccagttcacgcagtcgt
cattccagtatctcacctgtcaggcttccacttaattccagtctgggagctgaactcagt
aggaaaaagaaggaaagagcagctgctgctgctgcagcaaagatggatggaaaggagtcc
aagggttcacctgtatttttgcctagaaaagagaacagttcagtagaggctaaggattca
ggtttggagtctaaaaagttacccagaagtgtaaaattggaaaaatctgccccagatact
gaactggtgaatgtaacacatctaaacacagaggtaaaaaattcttcagatacagggaaa
gtaaagttggatgagaactccgagaagcatcttgttaaagatttgaaagcacagggaaca
agagactctaaacccatagcactgaaagaggagattgttactccaaaggagacagaaaca
tcagaaaaggagacccctccacctcttcccacaattgcttctcccccaccccctctacca
actactacccctccacctcagacaccccctttgccacctttgcctccaataccagctctt
ccacagcaaccacctctgcctccttctcagccagcatttagtcaggttcctgcttccagt
acttcaactttgcccccttctactcactcaaagacatctgctgtgtcctctcaggcaaat
tctcagccccctgtacaggtttctgtgaagactcaagtatctgtaacagctgctattcca
cacctgaaaacttcaacgttgcctcctttgcccctcccacccttattacctggagatgat
gacatggatagtccaaaagaaactcttccttcaaaacctgtgaagaaagagaaggaacag
aggacacgtcacttactcacagaccttcctctccctccagagctccctggtggagatctg
tctcccccagactctccagaaccaaaggcaatcacaccacctcagcaaccatataaaaag
agaccaaaaatttgttgtcctcgttatggagaaagaagacaaacagaaagcgactggggg
aaacgctgtgtggacaagtttgacattattgggattattggagaaggaacctatggccaa
gtatataaagccaaggacaaagacacaggagaactagtggctctgaagaaggtgagacta
gacaatgagaaagagggcttcccaatcacagccattcgtgaaatcaaaatccttcgtcag
ttaatccaccgaagtgttgttaacatgaaggaaattgtcacagataaacaagatgcactg
gatttcaagaaggacaaaggtgccttttaccttgtatttgagtatatggaccatgactta
atgggactgctagaatctggtttggtgcacttttctgaggaccatatcaagtcgttcatg
aaacagctaatggaaggattggaatactgtcacaaaaagaatttcctgcatcgggatatt
aagtgttctaacattttgctgaataacagtgggcaaatcaaactagcagattttggactt
gctcggctctataactctgaagagagtcgcccttacacaaacaaagtcattactttgtgg
taccgacctccagaactactgctaggagaggaacgttacacaccagccatagatgtttgg
agctgtggatgtattcttggggaactattcacaaagaagcctatttttcaagccaatctg
gaactggctcagctagaactgatcagccgactttgtggtagcccttgtccagctgtgtgg
cctgatgttatcaaactgccctacttcaacaccatgaaaccgaagaagcaatatcgaagg
cgtctacgagaagaattctctttcattccttctgcagcacttgatttattggaccacatg
ctgacactagatcctagtaagcggtgcacagctgaacagaccctacagagcgacttcctt
aaagatgtcgaactcagcaaaatggctcctccagacctcccccactggcaggattgccat
gagttgtggagtaagaaacggcgacgtcagcgacaaagtggtgttgtagtcgaagagcca
cctccatccaaaacttctcgaaaagaaactacctcagggacaagtactgagcctgtgaag
aacagcagcccagcaccacctcagcctgctcctggcaaggtggagtctggggctggggat
gcaataggccttgctgacatcacacaacagctgaatcaaagtgaattggcagtgttatta
aacctgctgcagagccaaaccgacctgagcatccctcaaatggcacagctgcttaacatc
cactccaacccagagatgcagcagcagctggaagccctgaaccaatccatcagtgccctg
acggaagctacttcccagcagcaggactcagagaccatggccccagaggagtctttgaag
gaagcaccctctgccccagtgatcctgccttcagcagaacagacgacccttgaagcttca
agcacaccagctgacatgcagaatatattggcagttctcttgagtcagctgatgaaaacc
caagagccagcaggcagtctggaggaaaacaacagtgacaagaacagtgggccacagggg
ccccgaagaactcccacaatgccacaggaggaggcagcagagaagaggccccctgagccc
cccggacctccaccgccgccacctccaccccctctggttgaaggcgatctttccagcgcc
ccccaggagttgaacccagccgtgacagccgccttgctgcaacttttatcccagcctgaa
gcagagcctcctggccacctgccacatgagcaccaggccttgagaccaatggagtactcc
acccgaccccgtccaaacaggacttatggaaacactgatgggcctgaaacagggttcagt
gccattgacactgatgaacgaaactctggtccagccttgacagaatccttggtccagacc
ctggtgaagaacaggaccttctcaggctctctgagccaccttggggagtccagcagttac
cagggcacagggtcagtgcagtttccaggggaccaggacctccgttttgccagggtcccc
ttagcgttacacccggtggtcgggcaaccattcctgaaggctgagggaagcagcaattct
gtggtacatgcagagaccaaattgcaaaactatggggagctggggccaggaaccactggg
gccagcagctcaggagcaggccttcactgggggggcccaactcagtcttctgcttatgga
aaactctatcgggggcctacaagagtcccaccaagagggggaagagggagaggagttcct
tactaa

>gi568815581f:39362072_39631313|GENSCAN_predicted_peptide_3|505_aa
MGNSSREEALNHSKGEVELLSLLVVLRGKVEEPGKRESVARVGATVGMPSEECSDVHQSP
LTQSLANSVSFTEPKAKPDSPFQLEQVQWEIPPVQTLCETPELEACKPASFIPNAQMGQV
TSLLCLPPPFLLAGVLLPLPINPKQGYVSLSEYFSLLLNVSNKGKALVTRLASLIPAIQT
AHAAAQFSAAKTAALPTPHPDPLPLSAVSTFAAIVLTHRLYSFTRHTPLLCTSSNPSLLW
QTDGVSAMEKALGSTPSWCLACARVPTFARTTISPGVLAATAMEGKEATAALRFLSGVPV
AKARLPAPCAELRPALARGLRVSAIAAAAAAAAGPRRAPLLRTVWRTWHRPPLLSAPAVA
LRSPHTPVPPFCISTSPNAWEKQKERGGQLKVGNVDSDYREIYEWSPLARIQTEPDPPRT
FRQIHLVSLSVVLKQECLNVLPMEALTGSRREKKTWEWVVDKKEAMEEKEERGERNLVSF
GQKDPVGQDYRCEEQLLWRGRCLKD

>gi568815581f:39362072_39631313|GENSCAN_predicted_CDS_3|1518_bp
atggggaattcctcaagggaggaagcactcaaccattccaagggagaggtggaactgctg
agtcttctggttgtcctgagaggcaaggttgaagaaccaggcaagagggagtctgttgct
agggtaggagcaacggtgggaatgccctctgaggaatgcagtgatgtccatcagtcacct
ctcacccagagcctggcaaattcagtctctttcacagaacctaaagccaagccagattct
cccttccagctagagcaggttcagtgggaaatcccacctgtccaaacactgtgtgagaca
ccagaattagaggcctgcaagcctgcttccttcatccccaatgcccagatgggacaggtc
accagcctcctgtgtctacccccacctttcttgcttgctggtgtgctgctccccctaccc
atcaaccccaaacagggttatgtttctctctcggagtatttttctctgttattaaatgtc
tccaacaaggggaaggccttggtgactcgccttgcctctctcatccctgcaatccagaca
gcacatgcagcagctcaattttcggctgccaagacagcagccctaccgacaccccaccct
gaccctctgcccctttcggcagtcagcacctttgctgccatcgtgctaactcacagactg
tacagtttcacccgccataccccccttctctgcacctcttccaacccgagccttctgtgg
cagacagatggggtgtctgcgatggaaaaagctctgggctctacgccgtcttggtgtcta
gcctgtgctcgggtaccaacctttgcccgcacgaccatttcccctggggtcctggcggcg
accgcaatggaggggaaagaggccactgcagctttaagatttctctcgggcgtcccggtt
gccaaggcgcggttgccagcgccctgcgcggagctgcgtcctgctttagcgcgcggcctt
cgggtttccgccatcgccgccgccgccgccgccgccgccgggccgcgccgggctccgctc
ctccgaaccgtctggcggacttggcaccggcccccgctcctcagtgcccccgcagtggct
ctgaggtcaccccacaccccagtgcctccattctgcatttctacatctccgaatgcttgg
gaaaaacagaaggagagaggaggtcaattgaaggttggaaatgtggactctgactataga
gaaatttatgagtggtcaccacttgcacggatccagacagaacctgacccgcctaggaca
tttaggcaaatccacctggtgtctctgtccgtggtgctgaaacaagaatgtttgaacgtc
ctccctatggaagcactaacaggaagtagaagggagaaaaagacctgggaatgggtggtg
gacaaaaaagaagcaatggaggagaaagaagagaggggagagagaaatctggtgagcttt
gggcaaaaagaccctgtgggccaggactaccgatgtgaggagcagctgctctggcgagga
aggtgccttaaggactaa

>gi568815581f:39362072_39631313|GENSCAN_predicted_peptide_4|382_aa
MLTRLFSEPGLLSDVPKFASWGDGEDDEPRSDKGDAPPPPPPAPGPGAPGPARAAKPVPL
RGEEGTEATLAEVKEEGELGGEEEEEEEEEEGLDEAEGERPKKRGPKKRKMTKARLERSK
LRRQKANARERNRMHDLNAALDNLRKVVPCYSKTQKLSKIETLRLAKNYIWALSEILRSG
KRPDLVSYVQTLCKGLSQPTTNLVAGCLQLNSRNFLTEQGADGAGRFHGSGGPFAMHPYP
YPCSRLAGAQCQAAGGLGGGAAHALRTHGYCAAYETLYAAAGGGGASPDYNSSEYEGPLS
PPLCLNGNFSLKQDSSPDHEKSYHYSMHYSALPGSRPTGHGLVFGSSAVRGGVHSENLLS
YDMHLHHDRGPMYEELNAFFHN

>gi568815581f:39362072_39631313|GENSCAN_predicted_CDS_4|1149_bp
atgctgacccgcctgttcagcgagcccggccttctctcggacgtgcccaagttcgccagc
tggggcgacggcgaagacgacgagccgaggagcgacaagggcgacgcgccgccaccgcca
ccgcctgcgcccgggccaggggctccggggccagcccgggcggccaagccagtccctctc
cgtggagaagaggggacggaggccacgttggccgaggtcaaggaggaaggcgagctgggg
ggagaggaggaggaggaagaggaggaggaagaaggactggacgaggcggagggcgagcgg
cccaagaagcgcgggcccaagaagcgcaagatgaccaaggcgcgcttggagcgctccaag
cttcggcggcagaaggcgaacgcgcgggagcgcaaccgcatgcacgacctgaacgcagcc
ctggacaacctgcgcaaggtggtgccctgctactccaagacgcagaagctgtccaagatc
gagacgctgcgcctagccaagaactatatctgggcgctctcggagatcctgcgctccggc
aagcggccagacctagtgtcctacgtgcagactctgtgcaagggtctgtcgcagcccacc
accaatctggtggccggctgtctgcagctcaactctcgcaacttcctcacggagcaaggc
gccgacggtgccggccgcttccacggctcgggcggcccgttcgccatgcacccctacccg
tacccgtgctcgcgcctggcgggcgcacagtgccaggcggccggcggcctgggcggcggc
gcggcgcacgccctgcggacccacggctactgcgccgcctacgagacgctgtatgcggcg
gcaggcggtggcggcgcgagcccggactacaacagctccgagtacgagggcccgctcagc
cccccgctctgtctcaatggcaacttctcactcaagcaggactcctcgcccgaccacgag
aaaagctaccactactctatgcactactcggcgctgcccggttcgcggcccacgggccac
gggctagtcttcggctcgtcggctgtgcgcgggggcgtccactcggagaatctcttgtct
tacgatatgcaccttcaccacgaccggggccccatgtacgaggagctcaatgcgtttttt
cataactga

>gi568815581f:39362072_39631313|GENSCAN_predicted_peptide_5|174_aa
MPRGGGGAGPRAGRGGGSGVSAPDLRPGPAGESCPMLPGGAALCPSEPAACAGEPSTDRR
RDPESRTPAPPPTPRAMDPKDRKKIQFSVPAPPSQLDPRQVEMRASGEGHHLKSKRPNPC
AYTPPSLKGTIPPPTFLAVRLIPGTGQTLGELLSVGRDCFATHSPLSAWRNNPT

>gi568815581f:39362072_39631313|GENSCAN_predicted_CDS_5|525_bp
atgccacgcggcgggggcggggcggggccgcgcgccgggcggggcgggggctccggggtc
tcggcccccgacctgcgtcctgggcccgcaggggagtcctgccccatgctcccgggcggg
gccgccctgtgccccagcgagcccgccgcctgcgcgggggagcccagcacagaccgccgc
cgggaccccgagtcgcgcaccccagccccaccgcccaccccgcgcgccatggaccccaag
gaccgcaagaagatccagttctcggtgcccgcgccccctagccagctcgacccccgccag
gtggagatgagagcctcaggagaggggcaccatctcaagtcgaagagacccaacccctgt
gcctacacaccaccttcgctgaaaggtactatacccccaccgaccttcctggctgtccgc
ctgatccctggaactgggcagacgctaggggagcttttgtcagtggggagggattgtttc
gccacacatagcccgctgtcagcgtggcgcaacaacccaacgtaa
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