Result of GENSCAN for pF1KE2012
GENSCAN 1.0	Date run:  6-Nov-116	Time: 21:42:52

Sequence gi568815586r:120112317_120324378 : 212062 bp : 49.97% 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..
----- ---- - ------ ------ ---- -- -- ---- ---- ----- ----- ------

 1.01 Sngl +   4333   4587  255  0  0  102   52   229 0.770  13.81
 1.02 PlyA +   6015   6020    6                               1.05

 2.58 PlyA -   7460   7455    6                               1.05
 2.57 Term -  15658  15533  126  1  0  111   54   259 0.992  23.08
 2.56 Intr -  17178  16960  219  0  0   84   75   312 0.965  28.00
 2.55 Intr -  18437  18330  108  2  0  103  113    45 0.998   8.98
 2.54 Intr -  19017  18869  149  1  2   66   86   154 0.961  12.95
 2.53 Intr -  19706  19610   97  2  1  130  106    37 0.999   9.28
 2.52 Intr -  22089  21975  115  2  1   69   80   187 0.998  16.45
 2.51 Intr -  22410  22217  194  0  2  102   96   298 0.994  30.29
 2.50 Intr -  24416  24186  231  2  0   80  113   174 0.990  17.07
 2.49 Intr -  25003  24890  114  1  0   76  121   144 0.987  17.14
 2.48 Intr -  25498  25229  270  1  0   91  100   396 0.999  38.84
 2.47 Intr -  25728  25585  144  0  0   63   95   110 0.998   9.68
 2.46 Intr -  26099  26007   93  2  0   86   94   129 0.999  13.46
 2.45 Intr -  26540  26379  162  2  0   49  105   140 0.998  11.97
 2.44 Intr -  28707  28543  165  0  0   80   78    98 0.995   8.16
 2.43 Intr -  30406  30191  216  1  0   97  113   172 0.999  19.30
 2.42 Intr -  30625  30475  151  0  1  108   54   115 0.862  10.26
 2.41 Intr -  32132  31990  143  2  2   89   94   232 0.999  23.05
 2.40 Intr -  32519  32323  197  0  2   98   56   257 0.789  22.63
 2.39 Intr -  32745  32607  139  0  1   94   86   141 0.981  14.54
 2.38 Intr -  33014  32946   69  2  0  115  105    27 0.989   6.48
 2.37 Intr -  34956  34736  221  1  2   31   69   329 0.470  23.32
 2.36 Intr -  36030  35851  180  1  0   85   57   208 0.820  17.24
 2.35 Intr -  37404  37290  115  0  1   39   99    98 0.996   6.02
 2.34 Intr -  37727  37606  122  0  2  119  107   101 0.990  15.31
 2.33 Intr -  39198  38829  370  0  1   84   84   456 0.640  39.48
 2.32 Intr -  41091  40897  195  0  0   58   82   355 0.984  31.51
 2.31 Intr -  41593  41428  166  0  1  136  116   214 0.846  28.96
 2.30 Intr -  42024  41872  153  2  0   87   72    28 0.544   0.29
 2.29 Intr -  42772  42654  119  1  2   54   75    71 0.889   1.66
 2.28 Intr -  43114  42892  223  0  1   80   57   206 0.769  14.83
 2.27 Intr -  43403  43276  128  2  2   88   78   218 0.999  20.28
 2.26 Intr -  44288  44145  144  2  0   95   65   192 0.997  18.08
 2.25 Intr -  44676  44596   81  0  0  107   64    39 0.891   3.23
 2.24 Intr -  45714  45533  182  1  2  125   36   117 0.806   9.79
 2.23 Intr -  46299  46144  156  1  0   88  110   210 0.998  23.18
 2.22 Intr -  47707  47509  199  1  1  101   40   171 0.991  12.52
 2.21 Intr -  47939  47826  114  2  0   49  105   194 0.999  17.84
 2.20 Intr -  49267  49174   94  0  1   72  105   186 0.898  18.67
 2.19 Intr -  49742  49564  179  2  2   98   78   254 0.997  24.12
 2.18 Intr -  50943  50737  207  0  0   89   33   217 0.841  15.57
 2.17 Intr -  51246  51136  111  0  0   74   49    57 0.637   0.98
 2.16 Intr -  52179  52020  160  2  1  123  100   184 0.995  23.09
 2.15 Intr -  52405  52330   76  2  1   71   51   -25 0.427  -9.33
 2.14 Intr -  55984  55892   93  2  0   74  115   108 0.997  12.04
 2.13 Intr -  58005  57853  153  1  0  122   64    88 0.996   9.84
 2.12 Intr -  61510  61337  174  2  0   91   78    41 0.890   3.31
 2.11 Intr -  61853  61755   99  0  0   42   86    89 0.570   4.18
 2.10 Intr -  62896  62846   51  2  0  110   80    60 0.986   6.28
 2.09 Intr -  63558  63430  129  1  0   74   83   145 0.999  13.27
 2.08 Intr -  63901  63827   75  2  0   96  105   131 0.999  15.09
 2.07 Intr -  65239  65131  109  1  1   96   56    60 0.997   3.46
 2.06 Intr -  65436  65368   69  0  0   78   85   106 0.994   8.68
 2.05 Intr -  66443  66324  120  2  0  103   49   161 0.995  14.39
 2.04 Intr -  66634  66515  120  1  0  113   56   111 0.723  11.09
 2.03 Intr -  71361  71253  109  2  1   89   82    95 0.997   9.29
 2.02 Intr -  71927  71796  132  1  0  116  110    74 0.967  12.16
 2.01 Init -  73885  73878    8  1  2  114   91     0 0.935   3.40
 2.00 Prom -  79403  79364   40                              -1.46

 3.10 PlyA -  81307  81302    6                               1.05
 3.09 Term -  82096  81954  143  2  2   36   48    95 0.249  -1.61
 3.08 Intr -  82513  82364  150  2  0   39   94   197 0.634  15.53
 3.07 Intr -  84618  84471  148  0  1  141  -52   209 0.914  12.01
 3.06 Intr -  85146  85006  141  0  0   84   93   181 0.839  18.75
 3.05 Intr -  86423  86238  186  2  0   36   61   312 0.975  23.19
 3.04 Intr -  86684  86538  147  2  0   83  105   101 0.999  11.73
 3.03 Intr -  86889  86802   88  2  1   90  116   127 0.999  15.67
 3.02 Intr -  87169  86994  176  1  2   87   26   302 0.982  22.64
 3.01 Init -  88467  88414   54  0  0   89   97    24 0.976   4.70
 3.00 Prom -  88829  88790   40                              -4.36

 4.14 PlyA -  91272  91267    6                               1.05
 4.13 Term - 100264  99998  267  1  0  103   43   564 0.957  48.89
 4.12 Intr - 101674 101526  149  2  2   69   90   300 0.999  28.25
 4.11 Intr - 101901 101820   82  0  1  105  102    75 0.998   9.81
 4.10 Intr - 102682 102509  174  1  0  112   76   334 0.999  34.74
 4.09 Intr - 102957 102787  171  0  0  111   64   188 0.996  18.84
 4.08 Intr - 104800 104525  276  1  0  124   38   198 0.471  16.11
 4.07 Intr - 107775 106840  936  0  0  134  -11   200 0.464   6.08
 4.06 Intr - 109442 109307  136  1  1   69   44   208 0.993  15.07
 4.05 Intr - 110374 110233  142  2  1   73   67   170 0.510  12.81
 4.04 Intr - 110683 110547  137  0  2   61   91   154 0.998  13.21
 4.03 Intr - 111517 111402  116  1  2   78   84   154 0.871  13.25
 4.02 Intr - 112061 111835  227  0  2  119   94   223 0.999  23.70
 4.01 Init - 118669 118519  151  1  1   66   47    91 0.261   3.01
 4.00 Prom - 118947 118908   40                              -4.56

 5.00 Prom + 121370 121409   40                              -3.16
 5.01 Init + 122435 122485   51  1  0   55   85    43 0.431   1.86
 5.02 Term + 136257 136427  171  2  0  105   39   122 0.207   6.83
 5.03 PlyA + 136823 136828    6                               1.05

 6.00 Prom + 143079 143118   40                              -4.16
 6.01 Init + 153312 153624  313  2  1   65   80   117 0.393   4.09
 6.02 Term + 169931 170400  470  0  2   36   48   609 0.945  46.84
 6.03 PlyA + 170519 170524    6                               1.05

 7.00 Prom + 181542 181581   40                              -1.06
 7.01 Init + 191252 191742  491  1  2   64   61   283 0.244  17.88
 7.02 Intr + 200104 200434  331  1  1   72   70   234 0.224  15.63
 7.03 Term + 200568 200720  153  2  0  112   47    54 0.971   1.62
 7.04 PlyA + 200905 200910    6                               1.05

 8.02 PlyA - 201209 201204    6                               1.05
 8.01 Term - 210001 209877  125  2  2  114   42   185 0.992  15.05

Suboptimal exons with probability > 0.800

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



Predicted peptide sequence(s):

Predicted coding sequence(s):


>gi568815586r:120112317_120324378|GENSCAN_predicted_peptide_1|84_aa
MAGGGGARGRAGSVLASRSAAPFGLLRQRRIHFPNKQPELTETPPSAPPPPPQQPPPLPP
PPSFPPRPTTAQAQRLAPPCAAAA

>gi568815586r:120112317_120324378|GENSCAN_predicted_CDS_1|255_bp
atggcgggcgggggcggtgcgcgcgggcgggcggggtcggtactggcctcgcgatccgca
gctcccttcgggctgctccggcagcggcggatccacttcccgaacaaacagccggaactg
acagaaacacctccctccgctccccctcctcctcctcagcagccgccgccgctaccaccg
cctccctccttcccgccccgccccaccactgcgcaggcgcagcgtctggcaccgccttgc
gcagccgcagcctga

>gi568815586r:120112317_120324378|GENSCAN_predicted_peptide_2|2745_aa
MPRDAASRRALQAAIQQLAEAQPEATAKNLLHSLQSSGIGSKAGVPSKSSGSAALLALTW
TCLLVRIVFPSRAKRQGDIWNKLVEVQCLLLLEVLGGSHKHAVDGAVKKLTKLWKEVTGL
QGLNPGLVEQYLSAILSLEPNQNYAGMLGLLVQFCTSHKEMDVSALLDFYMKNILMSKVK
PPKYLLDSCAPLLRYLSHSEFKDLILPTIQKSLLRSPENVIETISSLLASVTLDLSQYAM
DIVKGLAGHLKSNSPRLMDEAVLALRNLARQCSDSSAMESLTKHLFAILGGSEGKLTVVA
QKMSVLSGIGSVSHHVVSGPSSQVLNGIVAELFIPFLQQEVHEGTLVHAVSVLALWCNRF
TMEVPKKLTEWFKKAFSLKTSTSAVRHAYLQCMLASYRGDTLLQALDLLPLLIQTVEKAA
SQSTQVPTITEGVAAALLLLKLSVADSQAEAKLSSFWQLIVDEKKQVFTSEKFLVMASED
ALCTVLHLTERLFLDHPHRLTGNKVQQYHRALVAVLLSRTWHVRRQAQQTVRKLLSSLGG
FKLAHGLLEELKTVLSSHKPVEECGPVTDLPPQAGSPGPVPGAFFTPAGFLDAKPQVLPL
EALVTDAGEVTEAGKAYVPPRVLQEALCVISGVPGLKGDVTDTEQLAQEMLIISHHPSLG
PWLRWSSMNAMGSLSVLSPDRVLPQLISTITASVQNPALRLVTREEFAIMQTPAGELYDK
SIIQSAQQDSIKKANMKRENKAYSFKEQIIELELKEEIKKKKGIKEEVQLTSKQKEMLQA
QLDREAQVRRRLQELDGELEAALGLLDIILAKNPSGLTQYIPVLVDSFLPLLKSPLAAPR
IKNPFLSLAACVMPSRLKALGTLVSHVTLRLLKPECVLDKSWCQEELSVAVKRAVMLLHT
HTITSRVGKGEPGAAPLSAPAFSLVFPFLKMVLTEMPHHSEEEEEWMAQILQILTVQAQL
RASPNTPPGRVDENGPELLPRVAMLRLLTWVIGTGSPRLQVLASDTLTTLCASSSGDDGC
AFAEQEEVDVLLCALQSPCASVRETVLRGLMELHMVLPAPDTDEKNGLNLLRRLWVVKFD
KEEEIRKLAERLWSMMGLDLQPDLCSLLIDDVIYHEAAVRQAGAEALSQAVARYQRQAAE
VMGRLMEIYQEKLYVSDLCSPDAVWVIDLPVAKHLPTCLLQRPPPVLDALGRVISESPPD
QWEARPSARDRTQILCSMTGKSNNTLPLENVFTSTGLYIWFFYLCVLLQPALQVEGCGLA
LALNKLSQYLDSSQVKPLFQFFVPDALNDRHPDVRKCMLDAALATLNTHGKENVNSLLPV
FEEFLKNAPNDASYDAVRQSVVVLMGSLAKHLDKSDPKVKPIVAKLIAALSTPSQQAVAE
MGLGTSSGGCCVEWSDPPPTMKRLQRSHSIDRWALPQVQESVASCLPPLVPAIKEDAGGM
IQRLMQQLLESDKYAERKGAAYGLAGLVKGLGILSLKQQEMMAALTDAIQDKKNFRRREG
ALFAFEMLCTMLGKLFEPYVVHVLPHLLLCFGDGNQYVREAADDCAKAVMSNLSAHGVKL
VLPSLLAALEEESWRTKAGSVELLGAMAYCAPKQLSSCLPNIVPKLTEVLTDSHVKVQKA
GQQALRQIGSVIRNPEILAIAPVLLDALTDPSRKTQKCLQTLLDTKFVHFIDAPSLALIM
PIVQRAFQDRSTDTRKMAAQIIGNMYSLTDQKDLAPYLPSVTPGLKASLLDPVPEVRTVS
AKALGAMVKGMGESCFEDLLPWLMETLTYEQSSVDRSGAAQGLAEVMAGLGVEKLEKLMP
EIVATASKVDIAPHVRDGYIMMFNYLPITFGDKFTPYVGPIIPCILKALADENEFVRDTA
LRAGQRVISMYAETAIALLLPQLEQGLFDDLWRIRFSSVQLLGDLLFHISGVTGKMTTET
ASEDDNFGTAQSNKVPAVAFLPLLMAIITALGVERRNRVLAGLYMGRSDTQLVVRQASLH
VWKIVVSNTPRTLREILPTLFGLLLGFLASTCADKRTIAARTLGDLVRKLGEKILPEIIP
ILEEGLRSQKSDERQGVCIGLSEIMKSTSRDAVLYFSESLVPTARKALCDPLEEVREAAA
KTFEQLHSTIGHQALEDILPFLLKQLDDEEVSEFALDGLKQVMAIKSRVVLPYLVPKLTT
PPVNTRVLAFLSSVAGDALTRHLGVILPAVMLALKEKLGTPDEQLEMANCQAVILSVEDD
TGHRIIIEDLLEATRSPEVGMRQAAAIILNIYCSRSKADYTSHLRSLVSGLIRLFNDSSP
VVLEESWDALNAITKKLDAGNQLALIEELHKEIRLIGNESKGEHVPGFCLPKKGVTSILP
VLREGVLTGSPEQKEEAAKALGLVIRLTSADALRPSVVSITGPLIRILGDRFSWNVKAAL
LETLSLLLAKVGIALKPFLPQLQTTFTKALQDSNRGVRLKAADALGKLISIHIKVDPLFT
ELLNGIRAMEDPGVRDTMLQALRFVIQGAGAKVDAVIRKNIVSLLLSMLGHDEDNTRISS
AGCLGELCAFLTEEELSAVLQQCLLADVSGIDWMVRHGRSLALSVAVNVAPGRLCAGRYS
SDVQEMILSSATADRIPIAVSGVRGMGFLMRHHIETGGGQLPAKLSSLFVKCLQNPSSDI
RLVAEKMIWWANKDPLPPLDPQAIKPILKALLDNTKDKNTVVRAYSDQAIVNLLKMRQGE
EVFQSLSKILDVASLEVLNEVNRRSLKKLASQADSTEQVDDTILT

>gi568815586r:120112317_120324378|GENSCAN_predicted_CDS_2|8238_bp
atgcccagagatgcagcctcccgcagggccttgcaggcagccatccagcagttggctgag
gcccagccagaagccactgctaagaaccttctacactctctgcagtcttctggtataggc
tccaaagcaggtgttcccagtaagagcagtggctctgccgccttgctggccttgacctgg
acctgcctcctggtgcgcattgtctttccatcgagagccaagcgacaaggagacatctgg
aacaaactggtggaagtgcagtgcctgctcttgctggaggtgctgggtggctcccacaag
cacgccgtggatggtgctgtgaagaaactcacgaagctgtggaaagaggtgacaggactg
caggggctgaaccccgggctggtggaacagtacttgtcagccattctcagcctagagccc
aaccagaactatgctggcatgctggggctgctggtgcagttctgcacgagtcacaaggag
atggacgtgagcgccctactggacttttacatgaagaacatcctgatgagcaaagtcaag
cctccgaagtacctgttggatagctgtgcccctctgctccgatacctgtcccactcagaa
tttaaggatctgatactgcccaccatacagaagtccttactgaggagtccagagaatgtt
attgaaactatttctagtctgctggcatcagtgacgcttgacctcagccagtatgccatg
gacatcgtgaaaggactggctggtcacctgaaatccaacagtccccgcctgatggatgaa
gctgtgctggcactgcggaacctggcacgccagtgcagtgactcttcggccatggaatcc
ctgaccaagcacctatttgctatcctcggaggctcggaaggaaaactaactgttgtagcc
cagaagatgagcgtcctctcagggattgggagcgtcagtcatcacgtggtgtctggacct
tccagtcaggtcctgaatgggatcgtggctgagctgttcatcccgttccttcagcaggaa
gttcatgaagggaccttggtacacgctgtctcagtcctggctctctggtgtaaccgattc
actatggaagtgcccaagaagctcactgaatggttcaaaaaagctttcagccttaaaacc
tccacatctgcggtgaggcatgcctacctgcagtgcatgttggcctcttaccggggtgac
acgctgttgcaggccctggacttactgcccttgctcatccagacagtggagaaggcagcc
tcccaaagcactcaggttcccaccatcactgaaggggttgccgcagccttgttgctctta
aagttgtcagtggctgactcacaggctgaggccaaactgagcagtttctggcagttgatt
gtggatgagaaaaagcaggttttcacttctgagaaattcctggtcatggcttcagaggat
gccctgtgtactgtgttgcatctgacagagagacttttccttgaccacccgcatagactc
actggcaacaaagttcagcagtaccaccgggctctggtggcggtgctcctgagccgcacc
tggcacgtccgcaggcaggctcagcagacagttcggaagctgctgtcctctcttgggggc
tttaagctggcgcacggactcttggaggagctgaagactgtcctcagttctcacaagcct
gttgaggaatgtgggccagtgacagacttgccaccacaggctgggtctcctggaccagtt
cctggtgccttctttacccctgcaggctttttagatgcaaagccacaggtgctgccctta
gaggctttggtgactgatgctggagaggtgactgaggcaggcaaggcctacgtgcctcca
cgggtcctgcaggaggctctgtgtgtcatctccggtgtgccagggctcaagggtgatgtc
accgacactgaacaactggcccaggaaatgctgatcatctcccaccacccatccttaggt
ccgtggctgcggtggtcctccatgaatgccatgggctccctttccgtcctgtcgccggac
cgggtcctcccacagctcatcagcaccatcactgcctccgtgcagaaccctgcactgcgc
ctggtgacgcgggaggagtttgccattatgcagacccctgctggggagctgtatgacaaa
tccatcattcagagtgcccagcaggacagcataaaaaaggccaacatgaagcgagagaac
aaagcttattccttcaaagagcagatcatcgagctggagctgaaggaggagataaagaag
aagaaaggcatcaaagaggaggtgcagctgaccagcaagcagaaggagatgctgcaggcc
cagctagacagggaggcgcaggtccggaggcggctgcaggagctggatggggagctggag
gcggcgcttggactgctggacatcatcctggccaagaacccgtccggcctgacccagtac
atccctgttttggtcgactcttttctgcccttgctgaagtctcccctggctgctcccagg
atcaagaaccccttcttgtccttggctgcctgtgtcatgccctctaggctcaaggctttg
ggcactttggtgagccacgtgaccctgcgcctgctgaagccagagtgtgtcctggataag
tcctggtgccaggaagagctgtcggtggctgtgaagagggcggtgatgctgctgcacacc
cacaccatcaccagcagggtgggcaagggggagccaggtgctgcgcccttgtccgcgcca
gccttctccttagtcttcccgtttctgaagatggtgctgacggagatgccccaccacagt
gaggaggaggaggagtggatggcccagattcttcagatcctcactgtccaagcccagctg
agggcctcccccaacaccccacccgggcgggtggacgagaatggcccggagttgctgcct
cgcgtggccatgctgcgtcttctgacttgggtgatcgggacgggctcgcctcgcttacag
gttctggcttcagacaccctgaccaccctgtgtgccagcagcagtggtgatgatggctgt
gcctttgcagagcaggaggaggtggacgtgctgctctgtgccttgcagtccccgtgtgcc
agcgtgcgggaaaccgtgctccgggggctgatggaactccacatggtattgccagcacct
gatactgatgagaagaatggcctgaaccttctgcggagactctgggtggtcaagtttgac
aaggaggaggagatccggaagctggctgagaggctctggtcaatgatgggcctagacctg
cagccagacctctgctccttgctgattgacgacgtgatctatcatgaggcggctgtaagg
caggcaggggccgaagccctctcccaagcagtggcacgttaccagcggcaggcggcggag
gttatgggcaggctcatggagatttaccaggaaaagctctacgtgagtgacctgtgcagc
cctgatgcagtctgggtcattgatctgcccgttgcaaagcatttaccaacttgtctgttg
cagcggccgcccccagtgctggatgctttgggacgagttatttcagaatctcctccagat
cagtgggaagccagaccatcagccagggataggacacagattctttgctccatgactgga
aagagtaacaacactttgcccttggagaatgtgttcacttccacaggcctctacatctgg
ttcttttacctctgtgttctcttacaacctgctttgcaggtagaggggtgtggcttggcg
ttggccctcaacaagctctcccagtatttggacagctctcaggtgaagccactctttcag
ttttttgtccctgatgccctcaatgaccgacacccagatgtccggaagtgcatgttggat
gcagccctcgcaacgctcaacactcatgggaaggagaacgtcaactcgctgttgccagta
ttcgaggagttcctgaagaacgcgcccaatgatgccagctatgatgctgtgcgacagagt
gtggtggtcctgatgggctctctggccaagcacctggacaagagtgaccccaaagtgaag
cccattgttgccaagctcatcgctgccctctccaccccctcccagcaggcagtggctgag
atggggcttgggacatctagtggtgggtgctgtgtagaatggtcagaccccccaccaacc
atgaaacggctgcagcggagccacagcattgacaggtgggcccttccccaggtccaggag
tccgtagccagctgcttgccaccccttgtgccagccatcaaggaggatgctggagggatg
atccagaggcttatgcagcagctgctggagtcagacaagtacgcagagcgcaaaggggcc
gcctatggcctggcgggcctggtgaagggcctgggcatcctctcgctgaagcaacaggag
atgatggcggcactgactgatgccatccaagataagaagaacttccgccggcgagaggga
gccctctttgccttcgagatgctctgcaccatgctggggaaactttttgagccgtatgtg
gttcacgtgctgccccatctgctcctgtgctttggggatggaaaccagtatgtgcgtgag
gctgcagatgactgtgccaaggctgtgatgagcaacttgagtgctcacggggtgaagctg
gtgctcccctccttactggctgccctggaggaggaatcgtggcggaccaaagctgggtca
gtggagcttcttggggcaatggcgtactgtgctcctaagcagctgtcatcctgtctaccc
aacattgtgcccaagcttacggaggtgctgaccgactcccatgtcaaagtccagaaggct
ggacagcaggcgctcaggcagatcggctccgttatcaggaacccggagatcctggccatt
gctccagtcctcctggatgccctgacggatccctccaggaagacccagaagtgcttgcag
accctgctggacaccaagtttgtccacttcattgatgccccatccctggccctcatcatg
cccattgtccagagagccttccaggaccgttccacggacacgcggaagatggcagcccag
attattggcaacatgtactccctgacagaccagaaggacttggctccgtacctgcccagc
gtgacgcctggcctgaaagcatcgcttttggaccctgtgcctgaggtgcggaccgtatct
gcaaaggcccttggggccatggtgaagggcatgggggagtcgtgctttgaggacttgctg
ccgtggctgatggagacactgacctatgagcagagctctgtggatcgctcaggcgctgca
caggggttggctgaggtcatggccggtttgggggtggagaagttggagaagttgatgcca
gaaatcgtggctacagccagcaaagtggacattgcaccccatgtccgagatggctacatt
atgatgtttaactacctgcccatcacctttggagacaagtttactccttatgtggggccc
atcatcccctgtatcctcaaagctcttgctgatgagaatgagtttgtgcgtgacaccgcc
ctgcgcgcgggccagcgggttatctccatgtacgctgagacagccatcgccctgctgctg
ccccagctagagcaaggcctctttgatgacctttggagaatcaggttcagctctgttcag
ctccttggggatctcctgtttcacatctcaggagtcactgggaagatgaccacagaaact
gcctctgaggatgataactttggaactgcccagtccaacaaggtgcctgcagtggctttc
ctgcccctgctgatggcgatcatcactgccctgggggtagagcggcggaaccgggtgttg
gcagggctgtacatgggccgctcagacacccagctggtggtgcggcaggcgtccctgcat
gtctggaagattgttgtctccaataccccccgcaccttgcgtgagatcctacccactctc
tttgggctcctgctgggtttcctggccagcacgtgtgcagataagagaacgattgcagcg
agaacattgggagatcttgtgcggaagttaggggagaaaatcctccccgagatcatcccc
atccttgaggaaggcctgaggtctcagaagagcgatgagaggcagggtgtgtgcattggc
ctaagtgagatcatgaagtccaccagccgggatgccgtgctgtatttctctgaatccctc
gtgcccacggcaaggaaggctttgtgtgacccactggaggaggtcagagaggcggcagcc
aagactttcgagcagctgcattccaccatcggccaccaggctctggaggacattctccca
tttttactaaagcagctggatgacgaggaggtgtcagagtttgccttggatggtctgaag
caagtcatggctattaagagtcgtgtggtgctgccctaccttgtgcccaagctgacaacg
ccacctgtcaacacccgggtgctggctttcctttcgtcagtggctggtgatgccctcacc
cgtcatcttggcgtgatcctcccagcggtcatgctggccctgaaggaaaagcttgggacc
ccagatgagcagctggagatggccaattgtcaggctgtgatcctctccgtagaggatgac
acagggcaccggatcatcatcgaggatctgctggaggccacccgcagccctgaggtgggc
atgaggcaagctgctgccatcatcctcaacatctactgttcccgctcaaaggctgactac
accagccacctgcggagcctggtctcgggcctgatccgcctcttcaatgactccagccct
gtggttctggaggagagctgggatgccctaaatgccatcactaagaagctggatgctggc
aaccagttggcactcattgaagagctgcacaaggaaatccggctcatagggaacgagagc
aaaggcgagcatgtgccaggattctgcctcccgaagaagggagtgacctccatccttcca
gtgttgcgggaaggagtcctgactggcagccctgagcagaaggaggaggcagccaaagcc
ttaggcttggtaatccgcctgacctcggctgacgccctgaggccctccgtggtcagcatc
actggccctctgatccgcatcctgggggacaggttcagctggaatgtgaaggcggctctg
ctcgagacactcagcctcttgttggctaaggttgggattgccctgaagcccttcctgccc
cagctgcagaccactttcaccaaagccctgcaggactccaaccggggggtgcgcctgaag
gccgcagatgctctggggaagctcatttccatccacattaaggtggaccccctcttcaca
gagctgctcaatggcatccgcgccatggaggacccaggtgtcagggacaccatgctgcag
gccctgaggtttgtgattcagggagcaggggccaaagtggatgccgtcatccggaaaaac
atcgtctcactcctgctgagcatgctgggacacgatgaggacaacactcgcatctcctca
gccgggtgcctaggggaactgtgtgcctttttgactgaagaggagcttagtgccgttcta
cagcagtgcttgctggcggacgtgtccggcattgactggatggttcggcacgggcggagc
ctggcactttccgtggctgtgaatgtggctcctggcagactttgtgccggcagatatagc
agtgatgttcaggaaatgatcctgagcagtgccacggcggacaggatccccattgcggtg
agcggggtccggggcatgggctttctcatgagacaccacatcgagacaggcggagggcag
ttgccggccaaactttccagcctgttcgttaagtgtctgcagaacccatccagcgacatc
aggctggtggctgagaagatgatctggtgggcaaataaggacccactgcctcccctggac
ccccaggccatcaagcccatcctgaaggctcttcttgacaacaccaaggataagaacacc
gtggtcagggcctacagcgaccaggcaattgtcaacctcctcaagatgcggcagggtgaa
gaggtgtttcagtccctctccaagatcctggatgtggccagtttggaggtgctgaacgag
gttaaccgaaggtccctgaagaagctggccagccaggccgactccacggagcaggtggac
gacaccatcctgacatga

>gi568815586r:120112317_120324378|GENSCAN_predicted_peptide_3|410_aa
MPREDRATWKSNYFLKIIQLLDDYPKCFIVGADNVGSKQMQQIRMSLRGKAVVLMGKNTM
MRKAIRGHLENNPALEKLLPHIRGNVGFVFTKEDLTEIRDMLLANKVPAAARAGAIAPCE
VTVPAQNTGLGPEKTSFFQALGITTKISRGTIEILSDVQLIKTGDKVGASEATLLNMLNI
SPFSFGLVIQQVFDNGSIYNPEVLDITEETLHSRFLEGVRNVASVCLQIGYPTVASVPHS
IINGYKRVLALSVETDYTFPLAEKVKAFLADPSAFVAAAPVAAATTAAPAAAAAPAKVEA
KEESEESDEDMGFAAAVLPGGTKPGALPPLAPGLALPRGPRCDPEAFRKRFRSQPRQDGG
GHAELQKFTLPSLYFFSPKPSGCEPRANAKSSLNFVFSKYSLSTYYEQGL

>gi568815586r:120112317_120324378|GENSCAN_predicted_CDS_3|1233_bp
atgcccagggaagacagggcgacctggaagtccaactacttccttaagatcatccaacta
ttggatgattatccgaaatgtttcattgtgggagcagacaatgtgggctccaagcagatg
cagcagatccgcatgtcccttcgcgggaaggctgtggtgctgatgggcaagaacaccatg
atgcgcaaggccatccgagggcacctggaaaacaacccagctctggagaaactgctgcct
catatccgggggaatgtgggctttgtgttcaccaaggaggacctcactgagatcagggac
atgttgctggccaataaggtgccagctgctgcccgtgctggtgccattgccccatgtgaa
gtcactgtgccagcccagaacactggtctcgggcccgagaagacctcctttttccaggct
ttaggtatcaccactaaaatctccaggggcaccattgaaatcctgagtgatgtgcagctg
atcaagactggagacaaagtgggagccagcgaagccacgctgctgaacatgctcaacatc
tcccccttctcctttgggctggtcatccagcaggtgttcgacaatggcagcatctacaac
cctgaagtgcttgatatcacagaggaaactctgcattctcgcttcctggagggtgtccgc
aatgttgccagtgtctgtctgcagattggctacccaactgttgcatcagtaccccattct
atcatcaacgggtacaaacgagtcctggccttgtctgtggagacggattacaccttccca
cttgctgaaaaggtcaaggccttcttggctgatccatctgcctttgtggctgctgcccct
gtggctgctgccaccacagctgctcctgctgctgctgcagccccagctaaggttgaagcc
aaggaagagtcggaggagtcggacgaggatatgggatttgcggccgccgtcctgcccggg
ggcaccaagcccggggccctgcccccgctggctcccggcctcgccctgccgcgtgggcca
cgctgtgacccggaagcgttccggaagcggttccggagtcagccccggcaggatggcggc
ggacacgcagagttgcagaagttcactttaccgagcctctacttcttttctccaaagccc
tccggctgtgagccccgggccaacgccaagtcttccttaaactttgtattcagcaaatat
tctttgagcacctactatgagcagggactttga

>gi568815586r:120112317_120324378|GENSCAN_predicted_peptide_4|987_aa
MASNKTDKAPALWSLILGEETVDKNPNWQGRPLKETEFLVSVQALGPWAGDALLADLEST
TSHISKRPVFLSEETPYSYPTGNHTYQEIAVPPPVPPPPSSEALNGTILDPLDQWQPSSS
RFIHQQPQSSSPVYGSSAKTSSVSNPQDSVGSPCSRVGEEEHVYSFPNKQKSAEPSPTVM
STSLGSNLSELDRLLLELNAVQHNPPGFPAETNSPLGGKAGPLTKEKPKRNGGRGLEDVR
PSVESLLDELESSVPSPVPAITVNQGEMSSPQRVTSTQQQTRISASSATRELDELMASLS
DFKTSSSTVALSAPGLSSSAPSSYCSLPPSPPPMPSVFLPPTTIPSPRGQGHTPEFPCTE
QSGRGLLPPVAPSWLDLAGLGVMPDTFNSRSPSVEGSLWAVGTESQGRDWRHLPTITSEL
SGAPRCHTVPCAGSTALQEPGEPQGPPASPSCPEEALAATWEQPWASEVFGPERMPPSGA
ARSFQEVTEPAVVAVDRQAIFPDTWTLTEEHGLQQERPRPEPGRLGSSSPASVTTEQLGA
KMTERGSVARPTQGPETPRSPEGTTEAATQDGKEQPELPCAMAMGTPSTTERISTSGQAG
TSSHGCWAWPLAGLSIRSVIRRSWESGHAHPMSREPSPRRRLDPATLSRTPSQEQLIAEL
QGRLGIQPEAEEPAEAAGPSAQDWLTEGVIITVQPRGKRAGGQLVEKFMAQGKTGSSSPP
GGPPKPGSQLDSMLGSLQSDLNKLGVATVAKGVCGACKKPIAGQVVTAMGKTWHPEHFVC
THCQEEIGSRNFFERDGQPYCEKDYHNLFSPRCYYCNGPILDKVVTALDRTWHPEHFFCA
QCGAFFGPEGFHEKDGKAYCRKDYFDMFAPKCGGCARAILENYISALNTLWHPECFVCRE
CFTPFVNGSFFEHDGQPYCEVHYHERRGSLCSGCQKPITGRCITAMAKKFHPEHFVCAFC
LKQLNKGTFKEQNDKPYCQNCFLKLFC

>gi568815586r:120112317_120324378|GENSCAN_predicted_CDS_4|2964_bp
atggcatcgaacaagaccgacaaggcccctgctctctggagcttaattcttggagaggag
acagttgacaagaacccaaattggcagggaaggcccctcaaggagactgagttcctagtc
agtgtccaggccctaggtccctgggctggggacgccctgctggcggacttggagtctacc
acctcccacatctccaaacggcctgtgttcttgtcggaggagaccccctactcataccca
actggaaaccacacataccaggagattgccgtgccaccccccgtccccccacccccgtcc
agcgaggccctcaatggcacaatccttgaccccttagaccagtggcagcccagcagctcc
cgattcatccaccagcagcctcagtcctcatcacctgtgtacggctccagtgccaaaact
tccagtgtctccaaccctcaggacagtgttggctctccgtgctcccgagtgggtgaggag
gagcacgtctacagcttccccaacaagcagaaatcagctgagccttcacccaccgtaatg
agcacgtccctgggcagcaacctttctgaactcgaccgcctgctgctggaactgaacgct
gtacagcataacccgccaggcttccctgcagagactaacagccccttgggaggcaaagct
gggcccctgacgaaagagaagcctaagcggaatgggggccggggcctggaggacgtgcgg
cccagtgtggagagtctcttggatgaactggagagctccgtgcccagccccgtccctgcc
atcactgtgaaccagggcgagatgagcagcccgcagcgcgtcacctccacccaacagcag
acacgcatctcggcctcctctgccaccagggagctggacgagctgatggcttcgctgtcg
gatttcaagaccagctcctccactgtggctctgagtgccccggggctgtccagctctgct
ccgtcctcatactgctcccttcctccttctcctcctcccatgccatctgtatttctgcca
cccaccactataccctcccctcgaggccagggccacactccggagttcccttgtactgag
cagagtggacgaggccttctacctcctgtagcccccagctggcttgatttggctggtctt
ggggtgatgcctgacaccttcaactcaaggtctccctctgtggagggttctctgtgggca
gtgggcacagagagtcagggtcgagattggaggcacctgccgaccatcacaagtgagctc
tctggggctccccgctgccacactgtaccctgtgctgggagcacagctctccaagagcct
ggggagccccaggggccaccagccagcccttcgtgcccagaggaggccttggctgccaca
tgggagcagccatgggcttcggaggtattcgggcctgagagaatgcccccctctggagct
gctcgaagcttccaagaagtaacagagccagctgtagtggcagtggaccggcaggccatc
ttcccagatacctggactctcacggaggaacatggcctacagcaggagaggccaaggcca
gagccagggaggctgggaagcagctcccctgcctcagttaccacggagcagctaggtgca
aagatgaccgagaggggaagtgtggccaggccaacccagggacctgaaaccccaaggagc
ccagagggcaccacggaagctgccacccaggacgggaaggaacagccagagcttccatgt
gccatggccatgggcacacccagcaccacggagaggatttccacctctggccaggcaggc
accagctcgcatggctgctgggcatggccattggcgggtctgagtatccgatctgtgatc
aggaggagctgggagtctggccacgcacaccccatgtcccgggagccctcccctcgccgc
cggctggaccctgccaccttgagcaggaccccatcccaggaacagctcatcgcggagctg
caggggcggctgggcatccagcctgaggcagaggagccggcggaggcggcggggccctct
gcccaggactggctgaccgagggcgtcatcatcactgtgcagccacgtgggaagcgggcc
ggggggcagctcgtagagaagttcatggcccaggggaagacagggagcagctcaccccct
ggggggcccccgaagcccgggagccagctggacagcatgctggggagcctgcagtctgac
ctgaacaagctgggggtcgccacagtcgccaaaggagtctgcggggcctgcaagaagccc
atcgccgggcaggttgtgaccgccatggggaagacgtggcaccccgagcacttcgtctgc
acccactgccaggaggagatcggatcccggaacttcttcgagcgggatggacagccctac
tgtgaaaaggactaccacaacctcttctccccgcgctgctactactgcaacggccccatc
ctggataaagtggtgacagcccttgaccggacgtggcaccctgaacacttcttctgtgca
cagtgtggagccttctttggtcccgaagggttccacgagaaggacggcaaggcctactgt
cgcaaggactacttcgacatgttcgcacccaagtgtggcggctgcgcccgggccatcctg
gagaactatatctcagccctcaacacgctgtggcatcctgagtgctttgtgtgccgggaa
tgcttcacgccattcgtgaacggcagcttcttcgagcacgacgggcagccctactgtgag
gtgcactaccacgagcggcgcggctcgctgtgttctggctgccagaagcccatcaccggc
cgctgcatcaccgccatggccaagaagttccaccccgagcacttcgtctgtgccttctgc
ctcaagcagctcaacaagggcaccttcaaggagcagaacgacaagccttactgtcagaac
tgcttcctcaagctcttctgctag

>gi568815586r:120112317_120324378|GENSCAN_predicted_peptide_5|73_aa
MDEKECESHPGGWDKINWHRVASPSLASRNQNRVYNVSKGLYATVTESNPSSTTNQQLTS
GKLLTSLCFSVVS

>gi568815586r:120112317_120324378|GENSCAN_predicted_CDS_5|222_bp
atggatgaaaaagaatgtgagagccatcctggtggctgggataaaataaactggcaccgc
gtggcatcaccctcattggcgagcaggaatcagaacagagtctacaatgtcagcaaaggg
ctgtatgcgacagtcactgaatccaatcccagctccaccactaatcagcaactaacctcg
ggcaagttgctcacctctctgtgcttcagtgtcgtcagctag

>gi568815586r:120112317_120324378|GENSCAN_predicted_peptide_6|260_aa
MAGPRAPAQGRASCPSRGRSSMPRNFSAASLGPERNAPPPRAPAPAPAARPAPGRPLCTR
APPPDTPASLLAPPPAHAGPAPAKSPGSGRRWAGRWRPLAAKRAASRTTANLERTFITIR
PDSMQCGLVGKIIKRFEQKGFRLVAMKFLPASEEHLKQHYIDLKDRPFFPGLVKYMNSGP
VVAMVWEGLNVVKTGRVMLGETNPADSKPGTIRGDFCIQVGRNIIHGSDSVKSAEKEISL
RFKPEELVDYKSCAHDWVYE

>gi568815586r:120112317_120324378|GENSCAN_predicted_CDS_6|783_bp
atggccggaccacgggcgccggctcagggtcgcgctagctgcccgtcccggggccgctcg
tctatgccccgcaacttttccgccgcgagcctcggcccggaacggaacgcgccgccgccg
cgcgcgcccgcgcccgcgcccgccgcgcgccccgcccccggccgccccctgtgcacgcgc
gccccgcccccggacacccccgcgagcttgctggccccgccccctgcgcacgctggtccc
gcccccgccaagagcccgggcagtgggcgtcgctgggcggggcggtggcgccccctcgcg
gctaagcgggcagcttcccggaccacggccaacctcgagcgcaccttcatcaccatcagg
ccggacagcatgcagtgcggcctggtgggcaagatcatcaagcgcttcgagcagaagggg
ttccgcctcgtggccatgaagttcctcccggcctctgaagaacacctgaagcagcactac
attgacctgaaggaccgcccattcttccctgggctggtgaagtacatgaactcagggccg
gtcgtggccatggtctgggaggggctgaacgtcgtgaagacaggccgagtgatgcttggg
gagaccaatccagcagattctaagccaggcaccattcgtggggacttttgcattcaggtt
ggcaggaacatcattcatggcagtgattcagtaaaaagtgctgaaaaagaaatcagccta
cggtttaagcctgaagaactggttgactacaagtcttgtgctcatgactgggtctatgaa
taa

>gi568815586r:120112317_120324378|GENSCAN_predicted_peptide_7|324_aa
MSFALTFRSAKGRWIANPSQPCSKASIGLFVPASPPLDPEKVKELQRFITLSKRLLVMTG
AGISTESGIPDYRSEKVGLYARTDRRPIQHGDFVRSAPIRQRYWARNFVGWPQFSSHQPN
PAHWALSTWEKLGKLYWLVTQNVDALHTKAGSRRLTELHGCMDRAYCSVSVFLGSRVLCL
DCGEQTPRGVLQERFQVLNPTWSAEAHGLAPDGDVFLSEEQVRSFQVPTCVQCGGHLKPD
VVFFGDTVNPDKVDFVHKRVKEADSLLVVGSSLQVYSGYRFILTAWEKKLPIAILNIGPT
RSDDLACLKLNSRCGELLPLIDPC

>gi568815586r:120112317_120324378|GENSCAN_predicted_CDS_7|975_bp
atgagctttgcgttgactttcaggtcagcaaaaggccgttggatcgcaaaccccagccag
ccgtgctcgaaagcctccattgggttatttgtgccagcaagtcctcctctggaccctgag
aaggtcaaagagttacagcgcttcatcaccctttccaagagactccttgtgatgactggg
gcaggaatctccaccgaatcggggataccagactacaggtcagaaaaagtggggctttat
gcccgcactgaccgcaggcccatccagcatggtgattttgtccggagtgccccaatccgc
cagcggtactgggcgagaaacttcgtaggctggcctcaattctcctcccaccagcctaac
cctgcacactgggctttgagcacctgggagaaactcggaaagctgtactggttggtgacc
caaaatgtggatgctttgcacaccaaggcggggagtcggcgcctgacagagctccacgga
tgcatggacagggcatactgttcagtcagcgtcttccttggttccagggtcctgtgcttg
gattgtggggaacagactccccggggggtgctgcaagagcgtttccaagtcctgaacccc
acctggagtgctgaggcccatggcctggctcctgatggtgacgtctttctctcagaggag
caagtccggagctttcaggtcccaacctgcgttcaatgtggaggccatctgaaaccagat
gtcgttttcttcggggacacagtgaaccctgacaaggttgattttgtgcacaagcgtgta
aaagaagccgactccctcttggtggtgggatcatccttgcaggtatactctggttacagg
tttatcctcactgcctgggagaagaagctcccgattgcaatactgaacattgggcccaca
cggtcggatgacttggcgtgtctgaaactgaattctcgttgtggagagttgctgcctttg
atagacccatgctga

>gi568815586r:120112317_120324378|GENSCAN_predicted_peptide_8|41_aa
XKNKECEAFICNCDRNAAICFSKAPYNKAHKNLDTKKYCQS

>gi568815586r:120112317_120324378|GENSCAN_predicted_CDS_8|126_bp
ngcaaaaacaaagagtgtgaggccttcatttgcaactgcgaccgcaacgctgccatctgc
ttttcaaaagctccatataacaaggcacacaagaacctggacaccaagaagtattgtcag
agttga
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