Result of GENSCAN for pF1KE5847
GENSCAN 1.0	Date run:  8-Nov-116	Time: 07:17:43

Sequence gi568815576r:46156564_46363322 : 206759 bp : 49.47% 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..
----- ---- - ------ ------ ---- -- -- ---- ---- ----- ----- ------

 1.04 PlyA -    606    601    6                               1.05
 1.03 Term -  15144  15012  133  2  1  156   42    20 0.656   1.76
 1.02 Intr -  15642  15539  104  0  2  100   91    36 0.712   4.07
 1.01 Init -  16288  16082  207  1  0   64    0   140 0.477   1.62
 1.00 Prom -  27647  27608   40                              -3.16

 2.00 Prom +  41709  41748   40                              -4.26
 2.01 Init +  41821  42028  208  0  1   94  114   187 0.946  20.88
 2.02 Intr +  58610  58770  161  0  2  109   75   203 0.983  20.81
 2.03 Intr +  59251  59437  187  0  1   62   53    98 0.618   2.96
 2.04 Intr +  60082  60251  170  2  2   60    9    88 0.533  -2.23
 2.05 Intr +  61700  61838  139  1  1   92   90   172 0.997  17.84
 2.06 Intr +  63249  63451  203  1  2   77   50   287 0.200  22.80
 2.07 Intr +  75229  75676  448  0  1  100  105   608 0.666  56.62
 2.08 Term +  78594  78817  224  1  2   32   44   280 0.594  15.08
 2.09 PlyA +  81146  81151    6                               1.05

 3.00 Prom +  81156  81195   40                              -5.66
 3.01 Init +  81256  81384  129  0  0   46   61   146 0.988   7.85
 3.02 Intr +  83103  83228  126  2  0   91   66    85 0.949   7.48
 3.03 Term +  84112  84363  252  0  0   83   44   112 0.790   1.94
 3.04 PlyA +  84450  84455    6                               1.05

 4.09 PlyA -  85440  85435    6                               1.05
 4.08 Term -  88267  88196   72  1  0   65   48    39 0.392  -4.49
 4.07 Intr -  88603  88533   71  2  2   46   86    94 0.726   3.90
 4.06 Intr -  90011  89769  243  0  0   10   98   139 0.791   4.57
 4.05 Intr -  90658  90543  116  0  2   91   94    45 0.252   5.49
 4.04 Intr -  91721  91609  113  2  2   96   59    61 0.262   3.18
 4.03 Intr -  93476  93330  147  2  0   71   25    85 0.109   0.93
 4.02 Intr -  93936  93806  131  1  2   67   21    71 0.132  -1.29
 4.01 Init -  95011  94900  112  1  1   52   24    97 0.283   0.07
 4.00 Prom -  95624  95585   40                              -6.56

 5.02 PlyA -  95740  95735    6                               1.05
 5.01 Sngl - 106759  99998 6762  1  0  104   45  2652 0.985 253.13
 5.00 Prom - 107388 107349   40                             -11.23

 6.00 Prom + 109434 109473   40                              -6.56
 6.01 Init + 111477 111509   33  2  0  106   86    44 0.480   5.95
 6.02 Intr + 111951 112028   78  2  0   82   85   118 0.993  10.65
 6.03 Intr + 115772 115853   82  1  1   78   97    79 0.978   7.01
 6.04 Intr + 117335 117506  172  0  1   57   68   255 0.956  19.40
 6.05 Intr + 118685 118858  174  2  0   86   91   102 0.920   9.35
 6.06 Intr + 122023 122098   76  1  1   99  107   135 0.883  16.02
 6.07 Intr + 123506 123623  118  1  1  121   81    12 0.526   3.84
 6.08 Intr + 125058 125155   98  1  2   34   86   104 0.590   4.53
 6.09 Intr + 127410 127469   60  2  0  131  116   -22 0.929   3.83
 6.10 Intr + 128648 128716   69  1  0   84  113    93 0.623  10.78
 6.11 Intr + 130510 130591   82  0  1   86   63   172 0.884  13.71
 6.12 Intr + 131860 132074  215  2  2   96   72   253 0.832  22.93
 6.13 Intr + 132521 132615   95  1  2   69   81   -12 0.579  -5.04
 6.14 Intr + 132839 132998  160  2  1   47   99   287 0.659  25.69
 6.15 Intr + 133263 133336   74  2  2   37  105   112 0.855   6.00
 6.16 Intr + 136228 136317   90  1  0   96   47   185 0.574  14.31
 6.17 Intr + 151756 152153  398  1  2   49   80   383 0.999  27.82
 6.18 Intr + 152260 152380  121  2  1   74   94    54 0.933   4.15
 6.19 Intr + 153672 153798  127  0  1   33   48   112 0.780   2.38
 6.20 Intr + 157278 157450  173  2  2  -26  100   176 0.251   6.14
 6.21 Intr + 161193 161276   84  0  0   58   50   116 0.131   3.74
 6.22 Intr + 162878 163013  136  2  1   -6   76    79 0.067  -2.13
 6.23 Intr + 164939 164974   36  1  0   79   75    41 0.056   0.36
 6.24 Intr + 166627 166699   73  0  1   77  109    42 0.089   4.18
 6.25 Intr + 169845 170091  247  1  1   80   94    99 0.245   6.22
 6.26 Intr + 172125 172326  202  0  1  114   64    -9 0.166  -1.41
 6.27 Intr + 172795 173004  210  0  0   86   94   246 0.968  24.11
 6.28 Term + 173484 173567   84  2  0  109   46   100 0.771   5.55
 6.29 PlyA + 173756 173761    6                              -0.45

 7.04 PlyA - 173961 173956    6                               1.05
 7.03 Term - 174510 174437   74  1  2  104   44     9 0.814  -3.83
 7.02 Intr - 174865 174762  104  0  2   65  103    99 0.850   8.92
 7.01 Init - 175037 174913  125  2  2   98    4   149 0.927   7.15
 7.00 Prom - 176493 176454   40                              -9.75

 8.00 Prom + 177402 177441   40                              -9.55
 8.01 Init + 179202 179283   82  2  1   29   78   192 0.112  13.58
 8.02 Intr + 181216 181381  166  2  1  118  109   162 0.992  20.32
 8.03 Intr + 186699 186805  107  0  2   70  111    20 0.753   2.36
 8.04 Intr + 189859 189981  123  2  0   52  115   169 0.970  16.56
 8.05 Intr + 197204 197304  101  0  2   72   89   110 0.901   9.33
 8.06 Intr + 198881 199025  145  1  1   92   30   151 0.996   9.56
 8.07 Intr + 199427 199509   83  0  2   82   96    81 0.970   7.66
 8.08 Term + 200279 200443  165  1  0   96   48   223 0.890  17.02
 8.09 PlyA + 200756 200761    6                               1.05

 9.03 PlyA - 202512 202507    6                              -0.45
 9.02 Term - 203253 203048  206  1  2   88   47   143 0.878   7.73
 9.01 Intr - 205662 205563  100  0  1  114   48    78 0.949   6.08

Suboptimal exons with probability > 0.800

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

S.001 Term - 193822 193715  108  1  0   69   43   154 0.984   7.51
S.002 Init - 194941 194855   87  1  0   93   78    42 0.874   4.35
S.003 Init + 196165 196233   69  0  0   65   77   143 0.838   9.95


Predicted peptide sequence(s):

Predicted coding sequence(s):


>gi568815576r:46156564_46363322|GENSCAN_predicted_peptide_1|147_aa
MGPSNLSKQRGFLLNKPCGHPASWRLYLKPGNSCQHALNPTGPDVTSVFYLRTKLRLMAV
WTVWFVDRLVLTHGCQVPHLKENPDHLLGMGSSRAWLPSTQIHRTLLESHFLAVPLMSPP
CCPPCQDAPILMSAPPALTCFQPFLRC

>gi568815576r:46156564_46363322|GENSCAN_predicted_CDS_1|444_bp
atggggccaagtaacctgtcaaagcaacgaggcttcctactcaacaagccctgtggccac
cctgccagctggaggctctatctgaagcctggaaacagctgtcaacatgccttgaatcca
acaggtcccgatgtgacctcggtcttttacctccgcacaaagttacggcttatggctgtt
tggacagtctggtttgtcgatcgtttggttctcacacacggctgccaggttcctcacctg
aaggagaaccctgatcacctcctggggatgggctcttctcgagcatggcttccaagtacc
cagattcacaggacactgctcgagtcacacttcctggctgttcctctcatgagcccaccc
tgctgccctccctgtcaggatgctcccatcctgatgtctgctccacctgctctcacctgc
ttccagcccttcctcagatgctag

>gi568815576r:46156564_46363322|GENSCAN_predicted_peptide_2|579_aa
MVDTESPLCPLSPLEAGDLESPLSEEFLQEMGNIQEISQSIGEDSSGSFGFTEYQYLGSC
PGSDGSVITDTLSPASSPSSVTYPVVPGSVDESPSGALNIECRICGDKASGYHYGVHACE
GCKHRTPESVSPVVNCVFEESSLYAPYENLILDVPRWNTFILKLSLPTPICGKIVFHETG
PWWQKGASPPDSSDRNPLCIFILLLAQPALNRCDLGQECMKAGPVVLHAASWTGGPSVFV
SVGFFRRTIRLKLVYDKCDRSCKIQKKNRNKCQYCRFHKCLSVGMSHNAIRFGRMPRSEK
AKLKAEILTCEHDIEDSETADLKSLAKRIYEAYLKNFNMNKVKARVILSGKASNNPPFVI
HDMETLCMAEKTLVAKLVANGIQNKEAEVRIFHCCQCTSVETVTELTEFAKAIPGFANLD
LNDQVTLLKYGVYEAIFAMLSSVMNKDGMLVAYGNGFITREFLKSLRKPFCDIMEPKFDF
AMKFNALELDDSDISLFVAAIICCGGHIEKMQEGIVHVLRLHLQSNHPDDIFLFPKLLQK
MADLRQLVTEHAQLVQIIKKTESDAALHPLLQEIYRDMY

>gi568815576r:46156564_46363322|GENSCAN_predicted_CDS_2|1740_bp
atggtggacacggaaagcccactctgccccctctccccactcgaggccggcgatctagag
agcccgttatctgaagagttcctgcaagaaatgggaaacatccaagagatttcgcaatcc
atcggcgaggatagttctggaagctttggctttacggaataccagtatttaggaagctgt
cctggctcagatggctcggtcatcacggacacgctttcaccagcttcgagcccctcctcg
gtgacttatcctgtggtccccggcagcgtggacgagtctcccagtggagcattgaacatc
gaatgtagaatctgcggggacaaggcctcaggctatcattacggagtccacgcgtgtgaa
ggctgcaagcacagaacccctgagagcgtaagccctgttgtgaactgcgtatttgaggaa
tctagcttgtacgccccttatgagaatctaatacttgatgttccaaggtggaacactttc
atcctgaaactatccctccccacccccatctgtggaaaaattgtcttccatgaaaccggt
ccctggtggcaaaaaggggcttctccacctgattcaagcgacaggaaccccctgtgcatc
ttcatcctcctgctggctcagcctgccctaaacagatgtgacctgggccaggagtgcatg
aaggcaggccctgttgtcctgcatgctgccagctggactggtggcccttccgtgtttgtc
agcgtgggcttctttcggcgaacgattcgactcaagctggtgtatgacaagtgcgaccgc
agctgcaagatccagaaaaagaacagaaacaaatgccagtattgtcgatttcacaagtgc
ctttctgtcgggatgtcacacaacgcgattcgttttggacgaatgccaagatctgagaaa
gcaaaactgaaagcagaaattcttacctgtgaacatgacatagaagattctgaaactgca
gatctcaaatctctggccaagagaatctacgaggcctacttgaagaacttcaacatgaac
aaggtcaaagcccgggtcatcctctcaggaaaggccagtaacaatccaccttttgtcata
catgatatggagacactgtgtatggctgagaagacgctggtggccaagctggtggccaat
ggcatccagaacaaggaggcggaggtccgcatctttcactgctgccagtgcacgtcagtg
gagaccgtcacggagctcacggaattcgccaaggccatcccaggcttcgcaaacttggac
ctgaacgatcaagtgacattgctaaaatacggagtttatgaggccatattcgccatgctg
tcttctgtgatgaacaaagacgggatgctggtagcgtatggaaatgggtttataactcgt
gaattcctaaaaagcctaaggaaaccgttctgtgatatcatggaacccaagtttgatttt
gccatgaagttcaatgcactggaactggatgacagtgatatctccctttttgtggctgct
atcatttgctgtggaggacacattgaaaaaatgcaggagggtattgtacatgtgctcaga
ctccacctgcagagcaaccacccggacgatatctttctcttcccaaaacttcttcaaaaa
atggcagacctccggcagctggtgacggagcatgcgcagctggtgcagatcatcaagaag
acggagtcggatgctgcgctgcacccgctactgcaggagatctacagggacatgtactga

>gi568815576r:46156564_46363322|GENSCAN_predicted_peptide_3|168_aa
MRSPCVNKIQGLEPNAKPVLSPATLQLLALMYPVPFKEMWSRKHPLSSSPLPAGHEEATS
SERPYQMRMETDAPKQALMKPRLPKEVCLNTSHFYGIGIAKHGEVSALLMLKVAQLFLTQ
SKLTCLAALEFLTNQIFASSKGGCVHLPNGSDDGCCHSSPSSDVTVWK

>gi568815576r:46156564_46363322|GENSCAN_predicted_CDS_3|507_bp
atgagaagcccctgtgtcaacaagatccaggggctggagcccaatgccaagcctgtgttg
tccccagcgaccctgcagctgctcgctctgatgtaccctgtgccattcaaggagatgtgg
tccaggaaacaccccctctcctcttcacctcttcctgctggccacgaggaagccacttcc
tcagagagaccctaccagatgcggatggaaacagatgcaccaaagcaagccctgatgaaa
ccgcgacttcctaaggaggtttgtctcaacacttcccatttttacggcattggcattgcc
aagcatggggaagtatctgctcttctcatgttaaaagtggcccagcttttcttaactcag
tccaagctgacttgtttagctgcactggaatttcttaccaaccaaatatttgcatcgagc
aaagggggctgtgtgcacctccctaatggcagcgatgatggctgctgtcattcaagccca
tcttcagacgtcacagtctggaagtga

>gi568815576r:46156564_46363322|GENSCAN_predicted_peptide_4|334_aa
MLQDVPSLDTARNKQTTQYVIFEMIQRIECRCSKYSGAHGQTRRPSARNPASRTTPKLRA
TSRAEDRGDRKSKAEAENHRERWGERGQAEARGDHQHPRTLSAVPVHRHRPQEPRQGPRT
PRRAEEKRDQMASHVECRPLGVFECELCTLTAPYSYVGQKPPNTQSMVLLEESYVMKDPF
TSDKDRFLVLGSCCSLCSRLVCVGPVGRMEVEQHGFHSVPSVLRVTPESEKSLSICHRLT
HTKGSCINSQGDEMGQGGRSLRSVAWEYLRLMEELVVQEKLGKEDCKGNSARLGEKESSI
KEDPQPARFSDGPGLSECCSDVTERDDLLQQGSS

>gi568815576r:46156564_46363322|GENSCAN_predicted_CDS_4|1005_bp
atgcttcaagatgttccatctttagacaccgccagaaacaaacaaacaacccagtatgtc
atctttgaaatgatccaacgaatcgaatgccgttgctctaagtacagtggagcgcacggc
cagacgcgacgcccctcagcacggaacccagcctcgcggactaccccgaagctcagagcc
acatcccgcgcagaggaccgcggcgaccggaaaagcaaggcagaggcggaaaaccaccgc
gagcgctggggcgagagagggcaggcggaggctcgcggggaccaccagcatccccggacc
ctctcagccgtccctgttcacaggcaccgcccccaggagcctcggcaggggcctaggacg
ccccggcgtgcagaagagaagcgggatcagatggcgtcccatgtagagtgccgtcctctg
ggagtgtttgagtgtgaactctgtaccttgacagctccgtacagctatgtgggacagaag
ccccccaacacccagtcgatggtcctcctggaggaaagctatgtcatgaaggatcccttc
acctccgacaaggacagattcctggtcctcggctcgtgctgcagtttgtgcagcaggctg
gtgtgtgtgggcccggtgggacggatggaagtggagcagcatggctttcacagcgtgccc
agtgtactcagagtgaccccagagtctgagaagtccctgagcatctgccacaggttgaca
cacacaaaggggagctgtatcaatagccagggggacgagatgggccagggtgggaggagc
ctccgcagtgtggcatgggagtatctgaggctcatggaggagctggtggtccaggagaag
ctgggaaaggaagactgcaaaggaaattcggcaagacttggagaaaaggaaagctccatc
aaagaggacccccagccagcccggttctcggacggcccaggcctgagtgagtgctgctca
gatgtgactgagagggatgacctccttcagcagggcagctcctaa

>gi568815576r:46156564_46363322|GENSCAN_predicted_peptide_5|2253_aa
MRPGPALLLLGVGLSLSVGRLPLPPVPRGAQAAVSGAPGGLLRGAPGLGVRGGRALLSLR
PSAVRAGGAVLSGRGSLCFPHGGTGRRWYCLDLRVLLSAQRLPWPAAPALALVDLQLSAR
GGRLSLTWSVRLPRSPGRLAWAFRLRLLGPGAARPASPAARVSPRSAAPGPRPQQGFVAR
TECPTDGPARVMLQAVNSSSHRAVESSVSCQINACVIQRVRINTDQKGAPVRLSMQAEAT
INASVQLDCPAARAIAQYWQVFSVPAVGQAPDWTQPLDLPQLEIRNSPLFIHIPNNSLQW
GVYVFNFTVSITTGNPKMPEVKDSDAVYVWIVRSSLQAVMLGDANITANFTEQLILDGST
SSDPDADSPLQGLQFFWYCTTDPRNYGGDRIILGSKEVCHPEQANLKWPWASGPVLTLLP
ETLKGDHVYFFRMVIRKDSRTAFSDKRVHVLQGPKAIAHITCIENCERNFIVSDRFSLFL
NCTNCASRDFYKWSILSSSGGEMLFDWMGETVTGRNGAYLSIKAFAFRHFLEAEFSISLY
LACWSGVTSVFRHSFIINHGPQIGECKINPAKGIALITKFVVQCSNFRDKHVPLTYKIIV
SDLHSVGEISSVKENTLGTILYLGPQSTVPPSFLPVGMLASQYGLKIYAQVYDSLGAFSQ
VTLHATAQAPTDKNSSKTVLNQLLSFTVGPSSLLSTLIQKKDFLPAGYLLYIVASVLNNM
KTELPLRDDRVNLRKHLIDQSFLLPVSTLVEIGQVVMTITKLTQKPSEFTWDAQKRATMR
VWQANQALQEYQQKDKRFRSEQIEIVSTGILMSLSNILKMTSPHQVVKDPFYVIESLSDT
ILANKVPGNKTTSMRTPNFNMYVKKVEKWGINQLFRNEKHCRNCFYPTLNVSSVPGLSAN
GPISTMFCDFTNDLFPWLNDQENTSVEVSGFRMTGVADNGSVLEITPDVAEVYLVRKNLT
FAAFNLTVGPNSEVDGSLKKTTGGFSFQVDSTVLREVLVHIVTEVMVLFTVLVYTGSQIT
PTALVATFLVPHDIPPFASQSALFDPACTVKKARVVCLPVSLLQLIAQHSHSPHCTVSIV
LQAPRFVMKLNDKLVRISIFSVQCLDMYGIQSEWREGYCILGEKTSWYEVHCICKNVVRA
RRQLGTIGLTGIHLHTHYVMAKVIVIPNPVDLRLNIIKSLHQNPVTLFTVLFIILLYVGL
AFWALYRDEMDQHLRGHVIVLPDNDPYDNLCYLVTIFTGSRWGSGTRANVFVQLRGTVST
SDVHCLSHPHFTTLYRGSINTFLLTTKSDLGDIHSIRVWHNNEGRSPSWYLSRIKVENLF
SRHIWLFICQKWLSVDTTLDRTFHVTHPDERLTRKDFFFIDVSSNLRKNHMWFSIFASVV
AKTFNRLQRLSCCLAMLLSSLLCNIMFFNLNRQEQTESRERKYMRSMMIGIESVLITIPV
QLLITFLFTCSQRKPQADLKEVSPQKHPLMSEASEHWEEYLRKWHAYETAKVHPREVAKP
ASKGKPRLPKASPKATSKPKHRHRKAQIKTPETLGPNTNSNNNIEDDQDVHSEQHPSQKD
LQQLKKKPRIVLPWWCVYVAWFLVFATSSISSFFIVFYGLTYGYDKSIEWLFASFCSFCQ
SVLLVQPSKIILLSGFRTNKPKYCKNLSWSTKYKYTEIRLDGMRMHPEEMQRIHDQIVRI
RGTRMYQPLTEDEIRIFKRKKRIKRRALLFLSYILTHFIFLALLLILIVLLRHTDCFYYN
QFIRDRFSMDLATVTKLEDIYRWLNSVLLPLLHNDLNPTFLPESSSKILGLPLMRQVRAK
SSEKMCLPAEKFVQNSIRREIHCHPKYGIDPEDTKNYSGFWNEVDKQAIDESTNGFTYKP
QGTQWLYYSYGLLHTYGSGGYALYFFPEQQRFNSTLRLKELQESNWLDEKTWAVVLELTT
FNPDINLFCSISVIFEVSQLGVVNTSISLHSFSLADFDRKASAEIYLYVAILIFFLAYVV
DEGCIIMQERASYVRSVYNLLNFALKCIFTVLIVLFLRKHFLATGIIRFYLSNPEDFIPF
HAVSQVDHIMRIILGFLLFLTILKTLRYSRFFYDVRLAQRAIQAALPGICHMAFVVSVYF
FVYMAFGYLVFGQHEWNYSNLIHSTQTVFSYCVSAFQNTEFSNNRILGVLFLSSFMLVMI
CVLINLFQAVILSAYEEMKQPVYEEPSDEVEAMTYLCRKLRTMFSFLTSQSKAKDEPEFF
IDMLYGQPEKNSHRYLGLKTRNINGKKMVYLVV

>gi568815576r:46156564_46363322|GENSCAN_predicted_CDS_5|6762_bp
atgaggcctgggcccgctctcctccttctgggcgtgggcctgagcctgagcgtcggccgc
ctcccgctgccgccggttcctcgcggggcacaagccgccgtctccggggcgcccggtggc
ctcctcaggggcgccccgggcctcggggtgcgcggcggccgcgccctcctcagtctgcgg
cccagcgcggtgcgggcgggcggcgctgtcctgagcggccgcggcagcctctgcttcccc
catggcgggaccgggcggcgctggtactgcctcgacttgcgcgtcctgctcagcgcccaa
cgcctgccctggccggccgcgcccgcgctcgcgctcgtcgacctgcagctctccgcgcgc
ggcggccgcctctccctgacgtggtccgtgcggctgccgcgctcgcccgggcgcctggcc
tgggccttccgcctgcggctgctcggacccggcgccgcccgcccggcctcccccgcggcc
cgcgtctccccgcgctccgccgcgccaggcccgcggccccagcagggcttcgtggcccgc
accgagtgccccacagacggccccgcgcgcgtgatgttgcaggccgtcaactcgtccagc
cacagagccgtcgagtcgtccgtgtcctgtcagataaacgcctgcgtcatccagcgcgtg
aggatcaacacggaccagaagggcgcccccgtgcgcctgagcatgcaggcggaggccacc
atcaacgcctcggtgcagctggactgcccggccgcgcgcgccatcgcccagtactggcag
gtgttctccgtgcccgccgtgggtcaggcgcccgactggacgcagcccttggatctgccc
cagctcgagatcaggaacagccccttgttcattcacatccccaataattcgttacagtgg
ggagtgtatgtgtttaatttcacggtgtccatcaccacagggaaccccaagatgcccgag
gtgaaagactcggacgccgtctatgtctggatcgtcaggagttccctgcaggcggtgatg
cttggcgatgccaacataacagctaatttcacagagcagctgattctggacgggtccacg
tcctcggacccagatgcggacagcccgttacagggactccagttcttttggtactgtacc
acagatcccagaaactacggtggggatcgaataatcctggggagcaaggaagtctgtcac
cccgagcaggccaatctgaaatggccctgggcctcgggccctgtactgacacttttgcca
gaaacacttaaaggcgaccacgtgtatttcttcagaatggtgattcggaaggactctagg
acagcgttttctgataagagggtccacgtgctccaaggaccaaaagccatagcacacatc
acatgtatcgaaaattgtgagagaaacttcattgtctctgatagattttctttgttccta
aattgcacaaattgtgcaagccgtgatttctataaatggtcaattttgtcttcttcaggt
ggtgagatgctatttgattggatgggggaaactgtaacaggaaggaatggtgcttatctg
tctataaaagcttttgcttttcggcattttttggaagctgagttttcgatttctctgtat
ctagcatgttggagtggagtgacctcggtcttcaggcattcttttattattaaccatggc
cctcagatcggagaatgcaaaattaatccagctaaaggaattgcacttattactaaattt
gttgtccagtgtagtaattttagggataagcacgtccctcttacatataaaataattgtt
tctgatttgcacagtgttggtgaaatcagttcagtaaaagagaacaccctggggaccatc
ctgtacttggggcctcagtccacagtacccccttcctttctccctgttggtatgttggct
agtcaatatggcttgaagatatatgcccaggtctatgattctctaggagctttttctcag
gtgactttgcatgccaccgcacaggctcccactgacaaaaattcatcaaagacagtgttg
aatcagttactcagtttcaccgtgggaccaagttcattgctgtctactttgattcaaaag
aaggattttttacctgcaggttacttactgtatatagtagcttccgttttgaataacatg
aaaactgaattacctctccgagatgacagagtcaatctccgaaaacacctcatcgatcag
tctttccttcttcctgtaagcactttggtagaaattggccaggtagtcatgactattacc
aaattaacccagaaaccctctgaattcacttgggatgctcagaaacgtgccaccatgagg
gtatggcaagcaaatcaagccctacaagagtatcagcaaaaagataaacgctttcgatct
gaacaaatagaaatcgtgagtactggaatactaatgagtttgtctaatattcttaaaatg
acttctcctcaccaagtagttaaagatcctttctatgtaatagaatctctatcagacaca
atactggctaataaagtgccagggaacaaaaccacctcaatgagaacccccaatttcaac
atgtatgtcaagaaagttgaaaagtggggtatcaaccagctcttcagaaatgagaaacac
tgcagaaattgtttttatccaacactcaatgtgagcagtgttcctggtctgtctgcaaat
ggtcccatttctacaatgttttgtgatttcacaaatgacctctttccttggttaaatgat
caggaaaacacttcggtggaggtgtctggattcagaatgacaggagttgcagataacggt
agtgtgctagagatcacacctgatgtagcggaagtgtaccttgtcaggaaaaacttgacc
tttgcagcttttaatctcacagtgggacccaacagcgaggttgatgggtccttgaagaag
acgacaggtgggtttagctttcaagtggacagcacagtgcttagggaggttctggtccac
atagtaacagaagtgatggtgctgttcacagtgttggtgtacacaggcagtcagatcact
cccacagcgctggtcgccaccttcctggtgcctcatgacatccctccatttgccagccag
agtgccctgtttgacccagcctgcacagtgaagaaggcccgtgtagtctgcctccctgtg
tccctgctgcaactcatagctcagcacagccactctccccactgtactgtatccatagtt
ctgcaggcacctcgttttgtcatgaagctcaatgacaagctagtgagaatttctattttc
agcgtccagtgcttggacatgtatgggatccagagtgaatggagagagggttattgcatt
cttggtgagaagaccagctggtatgaggtgcactgcatctgcaagaatgtagtaagggct
aggcggcagctgggcacaatcggactcacgggcattcacctgcatacccactatgtgatg
gccaaggtgattgtgatccctaatcctgtggatctacggttaaacatcatcaagagcctt
caccaaaaccccgtgaccctcttcactgtgcttttcattattctcttatacgtgggccta
gctttttgggctttatacagggatgaaatggaccagcatcttcgggggcatgtgatagtt
ctaccagataatgatccttatgataatttatgctacttggtgactatttttacaggaagt
cgttgggggtctgggaccagggccaatgtctttgtgcaacttagaggaactgtgagtacc
agcgacgtgcattgtttaagccatccacatttcacaactctctaccgaggtagcatcaac
actttcctcctaacgacaaaaagtgacttgggggacatccattccatccgtgtgtggcac
aacaacgagggtcgatcgcctagctggtatttaagtagaatcaaagtggaaaatctgttt
agcaggcacatttggctgttcatatgccagaaatggctttctgttgataccactttggac
agaacatttcacgttacccatccagatgagcgtctgactagaaaagactttttctttata
gatgtgagtagtaatctccggaaaaaccacatgtggttctctatttttgctagtgttgtt
gctaaaacattcaataggctccagagattgtcctgttgtttagcaatgttgcttagctct
cttctttgtaacattatgttctttaatctaaatagacaagaacaaactgagtcaagagag
aggaaatacatgagatcaatgatgataggaattgaaagtgtcttaattacaatccctgtg
caattattaataacttttttgttcacctgttcccagaggaaacctcaagcggatctaaag
gaggtatctcctcaaaagcatcctctaatgtcagaagcaagtgagcactgggaagaatac
ttgagaaagtggcatgcttacgaaactgctaaggtgcaccccagggaggttgcaaaacct
gcatctaaaggaaagcccaggcttccaaaggcttctcctaaggcaacctccaaacccaag
cacaggcataggaaagcacaaatcaagaccccggagaccctcgggccaaatacaaattcc
aataacaacatagaagatgatcaggatgtccattccgaacagcacccttcccaaaaggat
ctccagcagcttaagaaaaagccccggatcgtcctaccttggtggtgtgtttatgttgca
tggtttttggtttttgctacttctagcatatcctcattcttcattgtattttatggactg
acttacggctatgacaagtcaatagaatggctctttgcatctttttgttcattctgtcag
tcagttcttctggtgcagccatctaaaattatactcctgtcaggcttcagaacgaataaa
cccaagtattgcaaaaacctttcatggtcaaccaagtataaatatactgagatcaggttg
gatggaatgcgtatgcatccagaagaaatgcagaggatacatgaccagatcgtccgaatc
cgaggcacgaggatgtaccaaccccttacagaagatgaaatcagaatattcaaaagaaag
aagaggatcaagagaagagcactcctgtttctgagttacattctaactcactttatcttt
ctagcccttctgttgatccttatcgtcttactacgtcacactgactgcttttactataac
cagtttattcgtgatcggttctctatggatcttgctactgtgactaagctggaagacatc
tatagatggctaaacagcgtgctgttgcctttgttacacaatgacctgaatccaacattt
cttcctgaaagctcgtctaaaatccttggccttccattgatgaggcaagtgagagcaaaa
tctagtgaaaaaatgtgtctacctgccgaaaagtttgtgcaaaacagcatcagaagagaa
attcattgtcaccccaaatatggcattgacccagaagacacaaaaaactattctggcttt
tggaatgaagttgataagcaggctatagatgagagtaccaatggatttacttataagcct
caaggaacgcaatggctatattattcctatggactactacacacctatggatctggagga
tatgcactctatttttttccagaacagcagcggtttaattccacactgaggctcaaagaa
cttcaagaaagcaattggctggatgagaagacatgggctgtggttttggaattaacaact
tttaatccagatataaatctgttctgtagcatttcggtcatatttgaagtctctcagtta
ggagttgtcaacacaagcatatctctgcactctttttcacttgctgattttgacagaaaa
gcttcagcagaaatctacttgtatgtggccattctcatttttttcttagcctacgttgtt
gatgagggttgtatcattatgcaagaaagagcctcctatgtgagaagtgtgtataatttg
ctcaactttgctttaaagtgcatatttactgtgttgattgtgctctttctcaggaaacat
ttcctggccactggcataattcggttttacttgtcgaacccagaagacttcattcccttt
catgcagtttctcaggtagatcacattatgaggataattttgggtttcctgttatttctg
acaattttgaagaccctcaggtattccagattcttctacgatgtgcgcctggctcagagg
gccatccaggctgccctccctggcatctgccacatggcatttgttgtgtccgtgtatttc
ttcgtatacatggcttttggttacctggtgtttggtcagcatgaatggaactacagtaac
ttgattcattccactcagacagtattttcctattgtgtctcagctttccagaacactgaa
ttttccaataacaggattctgggggtcctgttcctctcatctttcatgctggtgatgatc
tgcgtcttgatcaacttatttcaggctgtaattctgtctgcatatgaggaaatgaagcag
cccgtgtatgaggagccatcggatgaagtggaagcaatgacctatttgtgccgtaagctg
agaaccatgttcagctttctgacctcgcaatctaaggccaaagatgagcctgagttcttt
attgacatgctgtatgggcagccagagaagaacagccaccgttatctggggctgaagacc
agaaacatcaacgggaagaaaatggtttaccttgttgtttga

>gi568815576r:46156564_46363322|GENSCAN_predicted_peptide_6|1188_aa
MAAASPLRDCQAWKDARLPLSTTSNEACKLFDATLTQYVKWTNDKSLGGIEGCLSKLKAA
DPTFVMGHAMATGLVLIGTGSSVKLDKELDLAVKTMVEISRTQPLTRREQLHVSAVETFA
NGNFPKACELWEQILQDHPTDMLALKFSHDAYFYLGYQEQMRDSVARIYPFWTPDIPLSS
YVKGIYSFGLMETNFYDQAEKLAKEAPTLCLQHQHPTDNYWAGKAGCDGARSGNTWALCL
QPQADAWSVHTVAHIHEMKAEIKDGLEFMQHSETFWKDSDMLACHNYWHWALYLIEKGLI
RRTLFFQGEYEAALTIYDTHILPSLQANDAMLDVVDSCSMLYRLQMEGVSVGQRWQDVLP
VARKHSRDHILLFNDAHFLMASLGAHDPQTTQELLTTLRDASEYAEGPSRGGGPHPAERC
QAFACIISNPDGSVRLALLCLLTDEQTEAGRSPGENCQHLLARDVGLPLCQALVEAEDGN
PDRVLELLLPIRYRIVQLGGSNAQRDVFNQLLIHAALNCTSSVHKNVARSLLMERDALKP
NSPLTERLIRKAATVHLMHANEDDEVFFGPFGHKERCIAASLELNNPVPEQPPLPTSESP
FAWSPLAGEKFVEVYKEAHLLALHIESSSRNQAAQAAKPEDPRSQGVERFIQESKLKINL
FEKEKEMKKSPTSLKRETYYLSDSPLLGPPVGNHALLMLQVRQRLRGSPGPNCCCLERPL
LEEEASLGLRRRELLGCLKEEEKENNRCYFEDEDVVEDEEKAEDVEKLEAHALLVNNEIF
ADSVFSHFAPVGAEEDPVKSTRLYQQSRKEVLLGACLERGIQCVHIPSSGQRPLLHTRVS
RKARETPALLLLQDDTFSALAHVAVQRGTRVSLRFWRNLGAATHVTGGLEEAAGRVHGPI
LEVVRCWGEHGGLVNAQVTPRTAQHQSFRGHSGRSRARQLAAHDTDVVFARVTVHSTPVR
RSSGPAPQSLLSAWRVSALPTPASRRCSGLPPMTPKTMPRAVGSPLCVPARRRSSEPRKN
SAMRTEPTRESNRKTDSRLVDVSPDRGSPPSRVPQALNFSPEESDSTFSKSTATEVAREE
AKPGGDAAPSEALLVDIKLEPLAVTPDAASQPLIDLPLIDFCDTPEAHVAVGSESRPLID
LMTNTPDMNKNVAKPSPVVGQLIDLSSPLIQLSPEADKENVDSPLLKF

>gi568815576r:46156564_46363322|GENSCAN_predicted_CDS_6|3567_bp
atggccgcagcctcgcctctgcgcgactgccaggcctggaaggatgcgaggctcccgctc
tccaccacaagcaacgaagcctgcaagctgttcgatgccacgctgacccagtatgtaaaa
tggaccaatgacaagagtctcggtggcatcgagggctgcctgtcaaagctcaaagcagca
gatccaacctttgtgatgggccacgccatggctactggccttgtgctgattggcactgga
agctccgtgaagctggacaaagagctggacctggctgtgaagacaatggtggagatttca
agaacccagccgctgacaaggcgggagcagctgcacgtgtctgcagtagagacatttgcc
aatgggaactttccgaaagcctgtgaactatgggaacagattctccaggaccacccgaca
gacatgttggccctgaaattttcccatgatgcttatttttacctgggctatcaggaacag
atgagagattctgttgctcgaatttaccccttctggacacctgacatccccctaagcagc
tatgtgaaaggcatctactcttttggcttgatggaaaccaacttctacgaccaggcagaa
aaactcgccaaagaggcaccaactctttgtcttcaacaccagcaccccacagacaactac
tgggcaggaaaagcaggctgtgatggggccaggagtggtaacacatgggctctgtgtctg
cagccccaggctgacgcatggtcggtgcacaccgtcgctcacatccacgagatgaaagca
gagatcaaggatgggttggaattcatgcagcactcagagaccttctggaaggactctgat
atgttggcttgtcataactattggcactgggctttatatctgattgagaagggtttaata
aggagaactttattcttccagggcgaatatgaggccgcgctgaccatctacgatacccac
atccttcccagcctgcaggccaacgatgcaatgctggacgtggtggacagctgctccatg
ctctaccgcctgcagatggaaggagtgtctgtgggccagcggtggcaggatgtcctgcct
gtggcccggaagcacagccgagaccacatcctgctgttcaatgacgcacacttcctgatg
gcatccctgggtgcacacgacccccagaccacacaggagctgctgaccaccctgcgggac
gccagcgagtatgcagaggggccttctcggggtgggggtcctcaccctgccgagaggtgc
caggcctttgcctgtattatcagcaatcctgacggttctgttagattggcactgttatgc
ctgcttacagatgagcaaactgaggctggaagatccccaggggagaactgccagcacctc
ctggcccgagacgtggggctgcccctgtgccaggccctggtggaggctgaggacgggaac
cctgaccgcgtcctggagctgctcctgcccatccgctaccggatcgtccagctcggtggg
agcaatgcccagagagacgtcttcaaccagctgctgattcacgcggccttaaactgcacc
tccagcgtccataagaacgtagcccggagccttctgatggagcgtgatgccttgaagccc
aactcgcccctgaccgagcggctcatccgcaaggcagctaccgtccacctcatgcatgca
aatgaagatgatgaagtcttcttcggaccctttggacataaagaaagatgtattgctgcc
agcttggaattaaataatccggttcccgaacagcctccgttgcccacatctgagagtccc
tttgcctggagccctctggccggggagaagttcgtggaggtgtacaaagaagctcactta
ctggctttacacattgagagcagcagccggaaccaggcagcccaagctgccaagcctgaa
gaccctcggagccagggcgtggaaagattcatacaggagtcaaaattaaaaataaacctc
tttgagaaagaaaaggaaatgaagaaaagccccacgtctcttaaaagggagacatactac
ctgtcagacagccccttgctggggccccctgtggggaatcatgcactgctcatgctgcaa
gtcaggcagcgactcagaggaagcccgggaccaaattgctgctgcctcgagcggcctctg
ttagaggaagaagcatccctggggctgcggagaagagaactgctaggatgcctaaaggaa
gaagaaaaagaaaataacaggtgttattttgaggatgaggatgttgtggaggatgaggag
aaggctgaggatgtggagaagctggaagctcacgcattgctggtaaataacgagatcttt
gctgattctgttttttcacattttgccccagttggggctgaagaagaccctgttaaaagc
acccggctctaccagcaatctcgcaaggaagtcctcctcggggcctgtttggagcggggc
atccagtgcgtgcacatccccagcagtgggcaaaggcctctgctgcacacccgtgtgtcc
cgcaaggcccgcgagacccctgcactcctgctgctgcaagatgacaccttctcggccctg
gctcatgtggcagtgcagagagggactcgagtgtccctgaggttctggcggaacctgggt
gctgccactcatgtgacaggagggctggaagaggcagcgggcagagtccacggccccatt
ttggaagtagtgaggtgctggggtgaacatggaggcctggtgaacgcacaggtgactccc
cggacagctcaacaccaaagctttcgcgggcacagcggccgcagtcgtgcacgtcagttg
gcagctcacgacactgatgttgtgtttgccagggtcactgtccacagcaccccggttaga
cgctcatctgggccagcaccacaaagcctgctgagcgcatggcgtgtgtcagccttgccc
acacccgccagccggcgctgctctggccttccaccgatgacccccaaaacgatgcccagg
gccgtgggctctcccctgtgtgtgccagctcggagacgttcctctgagccccgcaagaac
tctgcaatgagaactgaaccaacaagggagagcaacagaaagacagattccaggctggtg
gatgtgtcccctgacaggggttctcctccttcccgtgtgcctcaggcacttaacttttct
ccagaggaaagcgattctactttctccaaaagtactgccacagaagtagctcgggaggaa
gccaagccgggtggagatgcagcccctagtgaggctcttcttgtagatatcaaactggaa
ccactcgcggtcactccagatgctgcaagccagcccctcattgaccttcctctcatcgac
ttctgcgataccccagaagcacacgtggctgtaggatctgaaagcaggcctctgatcgac
ctcatgacaaacactccagacatgaataaaaatgtggccaaaccttcaccggtggtggga
cagctcatagacctgagctcccctctgatccagctgagccctgaggctgacaaggagaac
gtggattccccactcctcaagttctaa

>gi568815576r:46156564_46363322|GENSCAN_predicted_peptide_7|100_aa
MAVSTETSFHGIACPPYPSLLSTAEDSLFRVAALESRSNRRKGRSWYDPGSTGVGSEIQS
PAAGSLLSAMKPLNQGEQLLLKGCVSGHRVSITCVPSNNY

>gi568815576r:46156564_46363322|GENSCAN_predicted_CDS_7|303_bp
atggcagtttccaccgagacgtctttccacggcatcgcctgtccaccctacccctccctg
ctctcgacggcagaggactcgctgttccgagtggcagctttagaatcacgcagtaaccgc
aggaaaggcagatcctggtatgacccagggagcactggagtggggtccgaaatacagagt
ccggccgctggctcgctgctgtctgccatgaagccgctcaaccaaggtgagcagcttctt
ctcaaggggtgtgtctcaggccatcgagtcagcatcacctgtgtgcctagtaacaattac
tag

>gi568815576r:46156564_46363322|GENSCAN_predicted_peptide_8|323_aa
MQALRHVVCALSGGVDSAVAALLLRRRGYQVTGVFMKNWDSLDEHGVCTADKDCEDAYRV
CQILDIPFHQVSYVKEYWNDVFSDFLNEYEKGRTPNPDIVCNKHIKFSCFFHYAVDNLGA
DAIATGHYARTSLEDEEVFEQKHVKKPEGLFRNRFEVRNGWFLYTLGQRANIGGLREPWY
VVEKDSVKGDVFVAPRTDHPALYRDLLRTSRVHWIAEEPPAALVRDKMMECHFRFRHQMA
LVPCVLTLNQDGTVWVTAVQAVRALATGQFAVFYKGDECLGSGKILRLGPSAYTLQKGQR
RAGMATESPSDSPEDGPGLSPLL

>gi568815576r:46156564_46363322|GENSCAN_predicted_CDS_8|972_bp
atgcaggccttgcggcacgtcgtgtgcgccctgtccggcggcgtggacagcgccgtggcc
gcgctgctgctgaggcggagaggttaccaggtgacaggggtgtttatgaagaactgggac
tcactggatgaacatggggtctgtactgccgacaaagactgtgaagatgcttacagagtt
tgccagatcttagacatccctttccatcaagtgtcctacgtaaaggagtattggaatgat
gtgttcagtgactttttgaatgagtatgaaaaaggaaggactcccaatcctgacatagtt
tgcaacaagcacatcaaatttagttgcttttttcattatgctgtggataatcttggggca
gatgccattgccacaggtcactatgcaagaacttccctggaagatgaagaagtctttgag
cagaagcacgttaagaagcccgaagggcttttcagaaatcggtttgaagttagaaatggt
tggttcctgtataccttgggccagagagcaaacataggtggcctgagagagccctggtac
gtggtggagaaggacagcgtcaagggtgacgtgtttgtggccccccggacagaccaccca
gccctgtacagggacctgctgaggaccagccgcgtgcactggattgcggaggagcctccc
gcagcactggtccgggacaagatgatggagtgccacttccgattccgccaccagatggca
ctagtgccctgtgtgctgaccctcaatcaagatggcaccgtgtgggtgacagctgtgcag
gctgtgcgtgcccttgccacaggacagtttgctgtgttctacaagggggacgagtgcctg
ggcagcgggaagatcctgcggctggggccgtctgcctacacgctccagaagggccagcgc
agagctgggatggccactgagagccccagtgacagcccagaagatggtccaggcctgagt
cccttgctctga

>gi568815576r:46156564_46363322|GENSCAN_predicted_peptide_9|101_aa
VARELQVGMALSFAPAPRGTWDLKALQVPDLDRECSVANMIEYFYLNPKAMISRKILEAS
EREKAVQVARSRPVHQPGQDVHVRTTKCSAEHPQQTVTGEG

>gi568815576r:46156564_46363322|GENSCAN_predicted_CDS_9|306_bp
gtggcccgggagctgcaggtggggatggctttgtcctttgctcctgctccccgtgggacc
tgggaccttaaagcgttgcaggttcctgatttggacagagaatgctcagtggctaacatg
atagaatatttctacctcaaccccaaagccatgattagcaggaaaatactagaagcatct
gagagagagaaagcagtccaggtagcccggagcaggcctgtccatcagccaggccaggat
gtccatgtgaggaccacgaagtgctccgcagagcatccgcagcagaccgtgacgggtgag
ggctga
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