Result of GENSCAN for pF1KSDA1722
GENSCAN 1.0	Date run:  3-Nov-116	Time: 07:05:56

Sequence gi568815579f:46818676_47100685 : 282010 bp : 49.41% 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..
----- ---- - ------ ------ ---- -- -- ---- ---- ----- ----- ------

 1.08 PlyA -   6093   6088    6                               1.05
 1.07 Term -  19873  19772  102  1  0  100   55   236 0.986  19.78
 1.06 Intr -  20124  20065   60  0  0  132  102   105 0.999  15.23
 1.05 Intr -  20903  20772  132  2  0   91   67   248 0.468  23.84
 1.04 Intr -  27467  27318  150  2  0  126   51   339 0.999  34.36
 1.03 Intr -  46889  46718  172  1  1   84   98   104 0.696  10.95
 1.02 Intr -  48749  48596  154  0  1   60   22   114 0.581   1.13
 1.01 Init -  54392  54341   52  2  1   67  116     2 0.183   0.24
 1.00 Prom -  55036  54997   40                              -3.16

 2.00 Prom +  56927  56966   40                              -1.36
 2.01 Init + 100001 103681 3681  1  0   73  116  2736 0.497 262.50
 2.02 Intr + 118589 118733  145  1  1   93  110    73 0.969   9.86
 2.03 Intr + 169314 169391   78  1  0  121   98   141 0.979  17.92
 2.04 Intr + 170869 171000  132  2  0  102   79   216 0.829  22.72
 2.05 Intr + 179557 179760  204  2  0   37   80    71 0.051   0.37
 2.06 Intr + 180629 180734  106  0  1   88  108   110 0.978  12.27
 2.07 Intr + 181656 182009  354  0  0  105   42   263 0.297  17.80
 2.08 Intr + 189169 189291  123  1  0   96   91    52 0.279   6.00
 2.09 Intr + 202937 203172  236  2  2   79  109   341 0.957  32.63
 2.10 Intr + 208385 208489  105  0  0   43   56    99 0.546   2.39
 2.11 Intr + 213603 213676   74  1  2   88  109    45 0.867   5.73
 2.12 Intr + 213968 214057   90  1  0   88  110    88 0.999  11.19
 2.13 Intr + 217289 217454  166  1  1  116   16   161 0.919  11.23
 2.14 Intr + 220361 220476  116  0  2  105   98   158 0.856  18.67
 2.15 Intr + 220732 220889  158  0  2   50   86   116 0.684   6.41
 2.16 Intr + 221769 222055  287  0  2  102   23   293 0.715  21.19
 2.17 Intr + 222303 222450  148  1  1   26   94   141 0.975   7.79
 2.18 Intr + 224135 224229   95  2  2   89   99    62 0.996   7.01
 2.19 Term + 226516 226976  461  2  2   91   55   587 0.999  50.95
 2.20 PlyA + 227061 227066    6                              -1.75

 3.04 PlyA - 227258 227253    6                              -1.95
 3.03 Term - 227577 227312  266  1  2  128   53   556 0.999  51.77
 3.02 Intr - 228010 227918   93  2  0  110  101   119 0.872  15.34
 3.01 Init - 230002 229732  271  1  1   69   67   252 0.653  16.35
 3.00 Prom - 230886 230847   40                              -6.36

 4.00 Prom + 231907 231946   40                              -4.86
 4.01 Init + 233489 233528   40  1  1   68   91    64 0.942   5.06
 4.02 Intr + 234276 234416  141  1  0   15  109   167 0.941  11.82
 4.03 Term + 245897 246021  125  0  2   32   49   116 0.041   0.65
 4.04 PlyA + 246047 246052    6                              -0.45

 5.15 PlyA - 246547 246542    6                              -4.04
 5.14 Term - 249194 247681 1514  0  2  143   36  1675 0.993 158.49
 5.13 Intr - 250668 250354  315  1  0  101   28   255 0.770  16.84
 5.12 Intr - 253446 253103  344  2  2  104   85   449 0.835  41.27
 5.11 Intr - 254038 253677  362  1  2   99  105   439 0.397  40.72
 5.10 Intr - 262930 262838   93  1  0   21   90   122 0.897   5.86
 5.09 Intr - 265780 265670  111  1  0  112   82   192 0.996  21.58
 5.08 Intr - 266520 266381  140  1  2   97   69   131 0.999  12.28
 5.07 Intr - 266739 266643   97  0  1   76   64   237 0.925  19.68
 5.06 Intr - 267863 267709  155  0  2   65   77    66 0.990   2.99
 5.05 Intr - 271514 271292  223  2  1   60   83   530 0.967  47.40
 5.04 Intr - 275405 275295  111  2  0  103  117   169 0.999  21.88
 5.03 Intr - 275933 275714  220  1  1   38   56   289 0.973  19.00
 5.02 Intr - 276704 276562  143  2  2   68   70    36 0.753  -1.05
 5.01 Intr - 279445 279356   90  1  0   55   80    78 0.694   3.89

Suboptimal exons with probability > 0.800

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

S.001 Intr +  41293  41577  285  2  0  136   66   103 0.975  10.21
S.002 Init - 202001 201899  103  2  1   82   -4   123 0.957   0.90
S.003 Init + 202373 202494  122  1  2   93   77    56 0.954   3.99


Predicted peptide sequence(s):

Predicted coding sequence(s):


>gi568815579f:46818676_47100685|GENSCAN_predicted_peptide_1|273_aa
MWPWASPLSATSVSHLEGSRLSIVQMQLPVYYSGQDEGIIQVRMQRYQESKRGRKYLQIY
NTTVTTAAKLCPLPKVTIRSMDLPMNLHTDNFFQLLLFWINKNEYFLICHCSKCIDLHHA
KENGGQIRFILIQNRAGKTRLAKWYMQFDDDEKQKLIEEVHAVVTVRDAKHTNFVEFRNF
KIIYRRYAGLYFCICVDVNDNNLAYLEAIHNFVEVRRERDVLNEYFHNVCELDLVFNFYK
VYTVVDEMFLAGEIRETSQTKVLKQLLMLQSLE

>gi568815579f:46818676_47100685|GENSCAN_predicted_CDS_1|822_bp
atgtggccttgggcaagtcccctctctgcaacctcggtttcccacctagaaggaagccgc
ctctcaattgtccaaatgcaattaccagtttactacagtggccaggacgagggcatcatc
caagtaagaatgcagagatatcaggagagcaaaagaggcaggaaatacctgcagatctat
aatacaacagtcacaactgctgcaaagctgtgtcctttgccaaaagtcaccatcaggtcc
atggatctgcccatgaatctgcacaccgacaacttctttcaacttcttctcttctggatc
aataagaatgagtattttctgatttgtcactgttctaaatgcatcgaccttcatcatgcc
aaggaaaatggcgggcagatccgctttatcctcatccagaaccgggcaggcaagacgcgc
ctggccaagtggtacatgcagtttgatgatgatgagaaacagaagctgatcgaggaggtg
catgccgtggtcaccgtccgagacgccaaacacaccaactttgtggagttccggaacttt
aagatcatttaccgccgctatgctggcctctacttctgcatctgtgtggatgtcaatgac
aacaacctggcttacctggaggccattcacaacttcgtggaggtacggcgggagagggat
gtcttaaacgaatatttccacaatgtctgtgaactggacctggtgttcaacttctacaag
gtttacacggtcgtggacgagatgttcctggctggcgaaatccgagagaccagccagacg
aaggtgctgaaacagctgctgatgctacagtccctggagtga

>gi568815579f:46818676_47100685|GENSCAN_predicted_peptide_2|2252_aa
MMMARKQDVRIPTYNISVVGLSGTEKEKGQCGIGKSCLCNRFVRPSADEFHLDHTSVLST
SDFGGRVVNNDHFLYWGEVSRSLEDCVECKMHIVEQTEFIDDQTFQPHRSTALQPYIKRA
AATKLASAEKLMYFCTDQLGLEQDFEQKQMPDGKLLVDGFLLGIDVSRGMNRNFDDQLKF
VSNLYNQLAKTKKPIVVVLTKCDEGVERYIRDAHTFALSKKNLQVVETSARSNVNVDLAF
STLVQLIDKSRGKTKIIPYFEALKQQSQQIATAKDKYEWLVSRIVKNHNENWLSVSRKMQ
ASPEYQDYVYLEGTQKAKKLFLQHIHRLKHEHIERRRKLYLAALPLAFEALIPNLDEIDH
LSCIKAKKLLETKPEFLKWFVVLEETPWDATSHIDNMENERIPFDLMDTVPAEQLYEAHL
EKLRNERKRVEMRRAFKENLETSPFITPGKPWEEARSFIMNEDFYQWLEESVYMDIYGKH
QKQIIDKAKEEFQELLLEYSELFYELELDAKPSKEKMGVIQDVLGEEQRFKALQKLQAER
DALILKHIHFVYHPTKETCPSCPACVDAKIEHLISSRFIRPSDRNQKNSLSDPNIDRINL
VILGKDGLARELANEIRALCTNDDKYVIDGKMYELSLRPIEGNVRLPVNSFQTPTFQPHG
CLCLYNSKESLSYVVESIEKSRESTLGRRDNHLVHLPLTLILVNKRGDTSGETLHSLIQQ
GQQIASKLQCVFLDPASAGIGYGRNINEKQISQVLKGLLDSKRNLNLVSSTASIKDLADV
DLRIVMCLMCGDPFSADDILFPVLQSQTCKSSHCGSNNSVLLELPIGLHKKRIELSVLSY
HSSFSIRKSRLVHGYIVFYSAKRKASLAMLRAFLCEVQDIIPIQLVALTDGAVDVLDNDL
SREQLTEGEEIAQEIDGRFTSIPCSQPQHKLEIFHPFFKDVVEKKNIIEATHMYDNAAEA
CSTTEEVFNSPRAGSPLCNSNLQDSEEDIEPSYSLFREDTSLPSLSKDHSKLSMELEGND
GLSFIMSNFESKLNNKVPPPVKPKPPVHFEITKGDLSYLDQGHRDGQRKSVSSSPWLPQD
GFDPSDYAEPMDAVVKPRNEEENIYSVPHDSTQGKIITIRNINKAQSNGSGNGSDSEMDT
SSLERGRKVSIVSKPVLYRTRCTRLGRFASYRTSFSVGSDDELGPIRKKEEDQASQGYKG
DNAVIPYETDEDPRRRNILRSLRRNTKKPKPKPRPSITKATWESNYFGVPLTTVVTPEKP
IPIFIERCIEYIEATGLSTEGIYRVSGNKSEMESLQRQFDQDHNLDLAEKDFTVNTVAGA
MKSFFSELPDPLVPYNMQIDLVEAHRARAPGPISNHLRFNRPLFTTPTAASCEVAAISFV
RPSCGSSEPWSPRRKHGGIFPCTEKSVLASWAPEINDREQKLHALKEVLKKFPKENHEVF
KYVISHLNKVSHNNKVNLMTSENLSICFWPTLMRPDFSTMDALTATRTYQTIIELFIQQC
PFFFYNRPITEPPGARPSSPSAVASTVPFLTSTPVTSQPSPPQSPPPTPQSPMQPLLPSQ
LQAEHTLLVCFLNTSLTTTSTHVESFGGQLRGSQIGHPRRPNKMPYACLQAQRKEKSRNA
ARSRRGKENLEFFELAKLLPLPGAISSQLDKASIVRLSVTYLRLRRFAALGAPPWGLRAA
GPPAGLDEAEESKGKGDPALPHPMVLAPMQPSGLRRFDDGASPGRRGPAALVSEVFEQHL
GGHILQSLDGFVFALNQEGKFLYISETVSIYLGLSQVEMTGSSVFDYIHPGDHSEVLEQL
GLRTPTPGPPTPPSVSSSSSSSSSLADTPEIEASLTKVPPSSLVQERSFFVRMKSTLTKR
GLHVKASGYKVIHVTGRLRAHALGLVALGHTLPPAPLAELPLHGHMIVFRLSLGLTILAC
ESRVSDHMDLGPSELVGRSCYQFVHGQDATRIRQSHVDCETHLHPPSLPTTPQTRASHSL
VPGSPSSGLPTVPPAAPTAPGTPFSIGRAARRLSDASGLLDKGQVMTGYYRWLQRAGGFV
WLQSVATVAGSGKSPGEHHVLWVSHVLSQAEGGQTPLDAFQLPASVACEEASSPGPEPTE
PEPPTEGKQAAPAENEAPQTQGKRIKVEPGPRETKGSEDSGDEDPSSHPATPRPEFTSVI
RAGVLKQDPVRPWGLAPPGDPPPTLLHAGFLPPVVRGLCTPGTIRYGPAELGLVYPHLQR
LGPGPALPEAFYPPLGLPYPGPAGTRLPRKGD

>gi568815579f:46818676_47100685|GENSCAN_predicted_CDS_2|6759_bp
atgatgatggcaagaaagcaagatgtccgaattcccacctacaacatcagtgtggtggga
ttatctgggaccgagaaggaaaagggccagtgtgggattggaaagtcttgtttgtgcaac
cgcttcgtgcgcccgagtgctgacgagtttcacttggaccatacctccgtcctcagcacc
agtgactttggagggcgagtggtcaataatgaccactttctctactggggagaagttagc
cgctccctggaggattgtgtggaatgtaagatgcacattgtggagcagactgaatttatt
gatgatcagacttttcaacctcatcgaagcacggccctgcagccctatatcaagagagct
gctgcgaccaagcttgcatcagctgaaaaactcatgtacttttgcactgaccagctgggg
ctggagcaggactttgagcagaaacaaatgccagacggaaagctgctggttgatggtttt
cttcttggtattgatgttagcaggggcatgaataggaactttgatgaccagctcaagttt
gtctccaatctctacaatcagcttgcaaaaacaaaaaagcccatagtggtggtcctgact
aagtgtgacgaaggtgttgagcggtacattagagatgcacatacttttgccttaagcaaa
aagaacctccaggttgtggagacctcagcgagatccaatgtaaacgtggacttggctttc
agcaccttagtgcaactcattgataaaagtcggggaaagacaaaaatcattccttatttt
gaagctctcaagcagcagagtcagcagatagctacagcaaaagacaagtatgagtggctg
gtgagtcgcattgtgaaaaaccacaatgagaactggctgagtgtcagccgaaagatgcag
gcctctccagaataccaggactatgtctacctggaagggactcagaaagccaagaagctg
tttctacagcacatccaccgcctcaagcatgagcatatcgagcgtaggagaaagctgtac
ctggcagccctgccattagcttttgaagctcttatacctaatctagatgaaatagaccac
ctaagctgcataaaagccaaaaagctcttagaaaccaagccagaattcttgaagtggttt
gttgtgcttgaagagaccccatgggatgccaccagtcacattgacaacatggaaaacgaa
cggattccctttgatttaatggataccgtccctgcagagcagctatacgaggcccactta
gagaagctgaggaacgaaaggaaaagagttgagatgcgaagggcgtttaaagaaaacctg
gagacttctcctttcataactcccggaaagccttgggaagaggcccgtagttttattatg
aatgaggatttctaccagtggctggaggaatctgtatacatggatatttatggcaaacac
caaaagcaaattatagataaagcaaaggaagaatttcaggagttgcttttggaatattca
gaattgttttatgaactggagctggatgctaagcccagcaaggagaagatgggtgttatt
caggatgttctgggagaggaacagcgatttaaagcattacaaaagctccaagcagagcgt
gatgcccttattctgaaacacattcattttgtgtaccacccaacaaaggagacatgcccc
agctgcccagcttgtgtggacgctaagattgagcacttgattagttctcggtttatccgg
ccgtctgaccggaatcagaaaaattcactctctgaccctaacattgatagaatcaacttg
gttatattgggcaaagacggccttgcccgagagttggccaatgagattcgagctctttgt
acaaatgatgacaagtatgtgatagatggtaaaatgtatgagctttccctgaggccaata
gaggggaatgtcaggcttcctgtgaactctttccagacgccaacatttcagccccacggc
tgtctctgcctttacaattcaaaggaatcgctatcctatgtagtggaaagtatagagaag
agtagagagtccacgctgggccggcgggataatcatttagtccatctcccccttacatta
attttggttaacaagagaggagacaccagtggagagactctgcatagcttaatacagcaa
ggtcaacaaattgctagcaaacttcagtgtgtctttctcgaccctgcttctgctggcatt
ggttacggacgcaacattaatgaaaagcaaatcagtcaagttttgaagggactcctggac
tctaagcgtaacttaaacctggtcagttctactgctagcatcaaagatttggctgatgtt
gatctgcgaattgttatgtgtctgatgtgtggagatccttttagtgcagatgacatactt
tttcctgtccttcagtcccaaacctgtaaatcttcccattgtggaagcaacaactctgtt
ttacttgaactaccaatcggactgcacaagaagcggattgaactgtctgttctttcatac
cattcctcctttagcatcagaaagagccggttggttcatgggtacattgttttttattca
gccaaacgtaaggcctctttggctatgttacgtgcctttctttgtgaagtgcaggatatt
atccctattcagcttgtagcactcactgatggcgctgtagatgtcctggacaatgactta
agtagggaacagctaactgagggggaggagattgctcaagaaattgacggaaggttcaca
agcatcccctgtagccaaccccagcataaacttgagatctttcacccattttttaaagat
gtggtggaaaaaaagaacataatcgaggctactcatatgtacgataatgctgccgaggcc
tgtagcaccaccgaagaggtgtttaactccccccgggcaggatcaccgctctgcaactca
aacctgcaggattcagaagaagatatcgagccatcttacagcctgtttcgagaagacaca
tcactgccttctctgtccaaagaccattctaagctctctatggaactggagggaaatgat
gggctgtctttcattatgagcaattttgagagtaaactgaacaacaaagtacctccgcca
gtcaaaccaaagcctcctgtccattttgaaattacaaagggggatctatcttatttagac
caaggccatagggatggacagaggaagtctgtgtcttctagcccctggctgcctcaggat
gggtttgatccttctgactatgctgaacccatggatgctgtggtgaagccaaggaatgaa
gaagaaaacatatactccgtgccccatgacagcacccaaggcaaaatcatcaccattcgg
aatatcaacaaagcccagtccaacggcagcgggaatggttctgacagtgaaatggacacc
agctctctagagcgagggcgcaaggtttccatcgtgagcaagccagtgctgtacaggacg
agatgcacccggctggggcggtttgctagttaccggaccagcttcagcgtggggagtgat
gatgagctggggcccatccggaagaaagaggaggatcaggcatcccagggttataaaggg
gacaatgctgtcattccatacgaaacagacgaagacccgcggaggaggaatattcttcgc
agcctaaggaggaacactaagaaaccaaagcccaaaccccggccatccatcacaaaggca
acctgggagagtaactattttggggtgcccttaacaactgtcgtgactccagagaagccg
atccccatttttattgaaagatgtattgagtacattgaagccacaggactgagcacggaa
ggcatctaccgggtcagcgggaacaagtctgagatggagagtctgcagagacagtttgat
caagaccacaacctggacctggcagagaaagactttacggtgaataccgtggctggtgcc
atgaagagctttttctcagaactgcctgaccccctggtcccgtataacatgcagatcgac
ttggtggaagcacacagagcccgagcccccgggcccattagcaatcatctgcgctttaac
aggcctctcttcaccacccccacagccgccagctgtgaggtcgctgccatctccttcgtg
agaccctcctgtggttcttctgagccctggagtccacgaaggaaacatgggggcatcttt
ccctgcacagagaaatctgtcttagccagctgggctccagaaatcaacgaccgggagcag
aagttgcatgcccttaaggaggtattaaagaaatttccaaaggaaaaccacgaagtcttc
aagtatgtcatctctcacctaaacaaggtcagccacaacaacaaggtgaatctcatgacc
agcgagaacctctccatctgcttctggcccaccttgatgagacctgatttcagcactatg
gacgccctcacagccacgcgcacctaccagacaatcattgaactctttatccagcagtgc
cccttcttcttctacaatcggcccatcaccgagccccccggcgccaggcccagctccccc
tctgccgtggcttccaccgtccccttcctcacttccacgcctgtcacaagtcagccgtcg
cccccacagtcgcctccacccaccccccagtccccaatgcagccactgcttccctcccag
cttcaagccgaacacacgctacttgtgtgctttctaaacacgagcctcacaaccaccagc
acccacgttgagagctttggggggcagcttcgcggctcccagataggccaccccaggagg
cccaacaagatgccttatgcgtgcctgcaggcgcagcgcaaggagaagtcccggaacgcg
gcgcgctcgcggcgcgggaaggagaacctggagttcttcgagctggccaagcttctcccg
ctgcccggcgccatctccagccagctggacaaggcttccatcgtgcgcctcagcgtcacc
tacctccgcctgcgccggttcgccgcgctgggggcgccgccctgggggctgagagccgcg
gggccgccagctggcctcgatgaggctgaggaaagtaaaggcaaaggtgacccggcactg
ccccaccccatggtgcttgcccccatgcagccctcaggcctgcggcgctttgacgatggg
gcatccccaggccgccgcggccccgcagcgctggtctccgaagtcttcgagcagcacctg
ggaggtcacatcttgcagtccctggatggctttgtgttcgccttgaaccaggaaggaaaa
ttcctctacatctcagagacagtctccatctatctgggtctctcacaggtggagatgacg
ggcagcagcgtcttcgactacattcaccctggggaccactcagaggtgctggagcaactg
gggctgcggacgccgacgcccggccccccaaccccgccctccgtctcctcttcctcctcc
tcttcctcttcgcttgcagatacccccgagatcgaggccagcctcaccaaggtgcccccc
tcctccctggtccaggagcgctccttctttgtccgcatgaaatccacgctcaccaagagg
gggctgcacgtcaaggcctcagggtacaaggtcatccacgtgactgggcgccttcgggcc
cacgccctgggccttgtggccctcgggcacacgttgcccccggcccccctggctgagctg
ccactccatggacacatgatcgtcttccgtctcagcctgggtctcaccatccttgcttgt
gagagcagagtcagcgaccacatggacctggggccctcagagctggtgggccgcagctgc
taccagtttgtccacggacaggacgccacgaggatccgccagagccacgtggactgtgag
acccacctccacccaccaagcctgcctaccaccccccagacccgagcatcccactccctg
gtccctggaagtccttcttcagggctgcccacagtccctcctgctgcacctacagctcca
gggactccgtttagcattggaagagcagcaaggagactgagtgatgcctcaggattgctg
gacaagggtcaggtgatgactggttactaccgttggctgcagcgtgccgggggcttcgtg
tggctgcagtctgtggccacagtggctgggagcgggaagagccccggggagcaccatgtg
ctttgggtcagccacgtgctcagccaagccgagggtggccaaactcctttggatgccttc
cagcttccagccagcgtggcctgtgaggaggcatccagcccggggccagagcccacagag
ccggagcctccgacggaagggaagcaggctgccccagcggagaacgaggccccccagacc
cagggcaaacgcatcaaagtggagcccggcccgagggaaaccaaaggctccgaggacagt
ggcgacgaggatccctccagccacccggccacaccgaggcccgagttcacctctgtcatc
cgggcaggggtcctgaagcaggatccggtgcggccatggggcctggcgcctcccggggac
cccccgcccaccctcctgcacgcgggcttcctgccgccggtggtgcggggcctgtgcaca
cccggcaccatccgctacggccccgcggagctgggcctggtgtacccgcacctgcagagg
ctgggtccgggccccgcgctcccggaggccttttacccgcccctgggcctgccctacccg
gggcccgcgggcaccaggctgccgcggaagggggactga

>gi568815579f:46818676_47100685|GENSCAN_predicted_peptide_3|209_aa
MGCNLPEAGGAVRRAAAVVRIMGGGWWWARAARLARLRFRRSLLPPQRPRSGGARGSFAP
GHGPRAGASPPPVSELDRADAWLLRKAHETAFLSWFRNGLLASGIGVISFMQSDMGREAA
YGFFLLGGLCVVWGSASYAVGLAALRGPMQLTLGGAAVGAGAVLAASLLWACAVGLYMGQ
LELDVELVPEDDGTASAEGPDEAGRPPPE

>gi568815579f:46818676_47100685|GENSCAN_predicted_CDS_3|630_bp
atgggttgcaacctaccggaggccggtggggcggtacggcgcgcggcggccgtagtgcga
atcatgggaggcggctggtggtgggctcgggccgctcgccttgcccgtcttcgcttccgg
aggtcgctactgccgcctcagcggccccggagcgggggcgcccgggggtccttcgccccc
ggccacggtccccgcgccggggcttcgccgcccccagtgtccgagctggatcgtgcggac
gcctggctcctccgaaaagcgcacgagacagccttcctctcctggttccgcaatggcctc
ctggcatcgggcatcggggtcatctccttcatgcagagtgacatgggtcgggaagcagca
tatggcttcttcctgctgggcggcctgtgcgtggtgtggggcagcgcctcgtacgccgtg
ggcctggcggcgctgcgaggacccatgcagctgacgctggggggcgcggccgtgggcgcg
ggcgccgtgctggccgccagcctgctctgggcgtgcgccgtgggcctctacatggggcag
ctggagctggacgtggagctggtgcccgaggacgacgggacggcctccgcggaaggccct
gatgaggcgggtcggccgccacccgagtga

>gi568815579f:46818676_47100685|GENSCAN_predicted_peptide_4|101_aa
MGAVCEALRQYSPVTRSSASVMVYGAFEVIGQRQSSAAKPRRSQSESLGPEFQGLWEWLP
ENSQKERKNNNKNHNTATLCIHTYFTNTKGCALCFKANTGG

>gi568815579f:46818676_47100685|GENSCAN_predicted_CDS_4|306_bp
atgggggctgtctgtgaagccttgcggcagtacagcccagttactcgaagctcggcgtct
gtgatggtctacggggctttcgaggtgatcgggcagcgtcagtcttcagccgccaagccg
agaaggagtcagtcggagagccttgggccagagttccaggggctctgggagtggctgcca
gaaaattctcaaaaggagaggaaaaacaacaacaaaaaccacaacactgccacactgtgt
attcatacttattttacaaacaccaagggctgtgccctctgcttcaaggccaacactggt
ggctga

>gi568815579f:46818676_47100685|GENSCAN_predicted_peptide_5|1305_aa
SGRPDLFFDQGEEQPVLKMGTEIPGSFVRERCGTDEGGSDLVTWDSEPVSSGSHGAFVIK
YLEGSQATAQACLWVGPREDGELEEGELEDDGAEETQDTSGGPERSRKEKGEKHHSDSDE
EKSHRRLKRKRKKEREKEKRRSKKRRKSKHKRHASSSDDFSDFSDDSDFSPSEKGHRKYR
EYSPPYAPSHQQYPPSHATPLPKKAYSKMDSKSYGMYEDYENEQYGEYEGDEEEDMGKED
YDDFTKELNQYRRAKEGSSRGRGSRGRGRGYRGRGSRGGSRGRGMGRGSRGRGRGSMGGD
HPEDEEDFYEEEMDYGESEEPMGDDDYDEYSKELNQYRRSKDSRGRGLSRGRGRGSRGRG
KGMGRGRGRGGSRGGMNKGGMNDDEDFYDEDMGDGGGGSYRSRDHDKPHQQSDKKGKVIC
KYFVEGRCTWLYHTTGNCINGDDCMFSHDPLTEETRELLDKMLADDAEAGAEDEKEVEEL
KKQGINPLPKPPPGVGLLPTPPRPPGPQAPTSPNGRPMQGGPPPPPPPPPPPPGPPQMPM
PVHEPLSPQQLQQQDMYNKKIPSLFEIVVRPTGQLAEKLGVRFPGPGGPPGPMGPGPNMG
PPGPMGGPMHPDMHPDMHPDMHPDMHADMHADMPMGPGMNPGPPMGPGGPPMMPYGPGDS
PHSGMMPPIPPAQNFYENFYQQQEGMEMEPGLLGDAEDYGHYEELPGEPGEHLFPEHPLE
PDSFSEGGPPGRPKPGAGVPDFLPSAQRALYLRIQQKQQEEEERARRLAESSKQDRENEE
GTCPPQGPGHRPQAAVQGSGGGDTGNWYSSDEDEGGSSVTSILKTLRQQTSSRPPASVGE
LSSSGLGDPRLQKGHPTGSRLADPRLSRDPRLTRHVEASGGSGPGDSGPSDPRLARALPT
SKPEGSLHSSPVGPSSSKGSGPPPTEEEEGERALREKAVNIPLDPLPGHPLRDPRSQLQQ
FSHIKKDVTLSKPSFARTVLWNPEDLIPLPIPKQDAVPPVPAALQSMPTLDPRLHRAATA
GPPNARQRPGASTDSSTQGANLPDFELLSRILKTVNATGSSAAPGSSDKPSDPRVRKAPT
DPRLQKPTDSTASSRAAKPGPAEAPSPTASPSGDASPPATAPYDPRVLAAGGLGQGGGGG
QSSVLSGISLYDPRTPNAGGKATEPAADTGAQPKGAEGNGKSSASKAKEPPFVRKSALEQ
PETGKAGADGGTPTDRYNSYNRPRPKAAAAPAATTATPPPEGAPPQPGVHNLPVPTLFGT
VKQTPKTGSGSPFAGNSPAREGEQDAASLKDVFKGFDPTASPFCQ

>gi568815579f:46818676_47100685|GENSCAN_predicted_CDS_5|3918_bp
agtgggcgtccagatctgttctttgaccagggggaggagcagccagtgctgaaaatggga
accgaaatacccgggagctttgtccgggagaggtgtgggactgacgagggtgggtcagac
cttgtgacctgggactctgagcctgtttccagcggttctcatggggcttttgtaataaag
tacttggagggttctcaggccacagcccaggcctgcctgtgggtgggtcccagggaagat
ggagagttggaagaaggtgaattggaagatgatggggcagaggagacccaggatacctcc
ggagggcctgagagaagccggaaagaaaagggggagaagcatcacagtgattcggatgag
gagaagtcccacaggagactgaagcggaaacggaagaaagagcgggagaaagagaaaagg
aggtcgaagaagaggaggaaatccaagcacaaacgccatgcttcttctagcgatgacttc
tctgacttctcagatgactcggatttcagccccagtgagaaaggtcaccgcaagtacaga
gagtacagccccccatatgcgccgtcccaccagcagtaccccccatcgcatgccacgccc
ctgcccaagaaggcatactccaagatggacagcaagagttatggcatgtacgaggactac
gagaatgagcagtatggggaatatgagggcgacgaggaggaggacatgggcaaggaggac
tatgacgacttcaccaaagagctgaaccagtaccggcgtgccaaggagggcagcagccgc
ggccgaggcagccgaggccggggccggggctacaggggccgaggaagccgtggaggatcg
cgaggccgcggcatgggcaggggcagccgaggcaggggcagaggctctatgggaggagac
cacccggaggatgaagaggatttctacgaggaagagatggactatggagagagtgaggag
ccaatgggagacgacgactatgacgagtactccaaggagctgaaccagtaccgccgctcc
aaggacagccgaggccgagggctaagtcgaggccgtggcaggggctcccgaggtcgaggg
aaaggaatgggtcggggccgaggccgaggtggcagccgaggagggatgaacaagggcgga
atgaacgatgacgaagacttctatgacgaggacatgggcgacggtggtggtggaagctac
cggagtcgtgaccatgacaagccccaccagcagtcggacaagaaaggcaaagtcatttgc
aagtacttcgtggaagggcgctgcacctggctgtaccacaccactgggaactgcatcaat
ggtgacgactgcatgttttcccacgaccctctgaccgaagagacgagggagctcttggat
aagatgttggccgatgatgcagaagcaggtgccgaggatgagaaggaggtggaggaactg
aagaagcagggcatcaaccccctgcccaaaccgccccctggtgtgggcctcctgcccacc
cctcctcggccccctggcccgcaggctccaacctctcccaacggcaggcccatgcagggt
ggccccccgcccccgccccctccccctcccccaccgcccgggccccctcagatgcccatg
ccggtgcatgagccactgtccccgcagcagctgcagcagcaggacatgtacaacaagaag
atcccctccttgtttgagatcgtggtgcggcccacgggacagctggctgagaagctgggt
gtgaggttccctggacccggtggacccccagggccaatgggccctgggcccaacatggga
cccccagggccaatgggcggtccaatgcatcctgacatgcaccccgacatgcacccggac
atgcaccctgacatgcacgcagacatgcacgcagacatgccgatgggccctggcatgaat
cctggcccacccatgggccctggcggccctccaatgatgccctacggccctggagactcc
ccacattctggaatgatgccccctatcccgccagcccagaacttctatgaaaacttctac
cagcagcaggagggcatggagatggagcccggactcctgggggatgcagaggactacggg
cactacgaagagctgccaggggagcctggggagcacctcttccctgagcaccctctggag
cccgacagcttctctgagggagggcccccaggccggccgaagccaggcgccggtgtccct
gacttcctgccctcagcccagagggccctgtacctgaggatccagcagaagcagcaggag
gaggaggagagagcgaggaggctggctgagagcagcaagcaggaccgggagaatgaggaa
ggcacgtgtccgccccaggggccggggcacaggccccaggccgctgtgcaggggagcggc
ggtggtgacaccggaaactggtactcaagtgatgaggatgagggtggaagcagtgtcacc
tccatcctgaagaccttgaggcagcagacgtccagccgacccccggcttcagttggggag
ctgagcagcagtgggctgggggacccccgcctccagaagggacaccccacaggaagccgg
ctggctgaccctcgcctcagccgggaccccagactcacccgccatgtggaggcttctggc
gggtctggcccaggtgattcgggaccctccgatcctcggctggctcgcgccctgcccacc
tccaagcccgaaggcagccttcattccagccctgtgggccccagcagttccaaggggtct
gggccgcccccaacggaggaggaggaaggggagcgggccctgcgggagaaggccgtgaac
attcccctggacccactccccgggcaccctctgcgggacccacggtcacagctgcagcag
ttcagccacatcaagaaggacgtgaccctgagcaagcccagcttcgcccgcaccgtgctc
tggaatcccgaggacctgatccccctacccatccccaagcaggacgcagtgccccccgtg
cccgcggccctgcaatccatgcccaccctggacccccggctgcaccgcgctgccacggca
gggccccccaacgcccggcagcgcccgggcgcctccacggattccagcacacagggcgcc
aacctccccgactttgaacttctgtctcgcatcctcaagacagtcaatgccaccggctcc
tcggccgcccccggttccagcgacaaacccagtgacccccgggtgcggaaggcccccacc
gaccctcggctgcagaaacccacagactctacggcctcctcccgggctgccaagcccggc
cctgctgaggcgccctctcccaccgccagcccgagtggggatgcctccccaccagccacc
gctccctacgacccccgcgtgctggcggccggtggactgggccagggcggagggggcggg
cagagcagtgtgctgagcggtatcagcctctacgacccgaggactcccaacgcggggggc
aaagccacagagccggctgctgacacgggtgcccagcccaagggtgctgagggcaatggc
aagagctcggcctccaaggctaaggagcccccgttcgtccgcaagtctgccctggaacag
ccagagacagggaaggccggtgctgatgggggcacccccacggacagatacaacagctac
aaccggccccggcccaaggctgctgcagcccccgctgccaccaccgccaccccacccccc
gagggtgccccaccccagcccggggtgcacaacctgcccgtgcccaccctcttcgggacg
gtgaagcagacacccaagacgggctcaggaagcccatttgctgggaacagtccggcccgc
gagggtgagcaggatgcggcatccctgaaggatgtttttaaaggcttcgaccccacggcc
tcccccttttgccagtag
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