Result of GENSCAN for pF1KB9497
GENSCAN 1.0	Date run:  3-Nov-116	Time: 23:59:36

Sequence gi568815597r:16886224_17105781 : 219558 bp : 51.46% C+G : Isochore 3 (51 - 57 C+G%)

Parameter matrix: HumanIso.smat

Predicted genes/exons:

Gn.Ex Type S .Begin ...End .Len Fr Ph I/Ac Do/T CodRg P.... Tscr..
----- ---- - ------ ------ ---- -- -- ---- ---- ----- ----- ------

 1.05 PlyA -    825    820    6                               1.05
 1.04 Term -   3225   3102  124  2  1   66   49    74 0.318  -0.54
 1.03 Intr -   3380   3325   56  2  2  105  101    18 0.348   3.07
 1.02 Intr -  15375  15274  102  0  0   44  110    34 0.217   2.07
 1.01 Init -  16640  16593   48  2  0   90  111    -9 0.626   2.49
 1.00 Prom -  16721  16682   40                              -3.81

 2.04 PlyA -  17978  17973    6                               1.05
 2.03 Term -  18805  18734   72  1  0   35   41   155 0.575   3.70
 2.02 Intr -  25801  25667  135  1  0   66   92    38 0.355   3.27
 2.01 Init -  28117  28010  108  1  0   88  104    98 0.789   9.60
 2.00 Prom -  30221  30182   40                              -5.11

 3.00 Prom +  30727  30766   40                              -7.00
 3.01 Init +  31749  31826   78  2  0   78   77    45 0.724   3.41
 3.02 Intr +  31938  32003   66  2  0   54   93    46 0.523   1.29
 3.03 Intr +  36440  36575  136  1  1  106   50   118 0.997  10.45
 3.04 Intr +  36824  36973  150  0  0   37   18   138 0.801   2.35
 3.05 Intr +  38102  38256  155  0  2   47   59   354 0.455  28.70
 3.06 Intr +  43623  43808  186  2  0   79   77   359 0.977  34.30
 3.07 Intr +  43901  43984   84  1  0   70   59   195 0.998  15.31
 3.08 Intr +  44063  44124   62  1  2  108   78   141 0.999  13.12
 3.09 Intr +  44206  44371  166  1  1   70   64   273 0.934  23.58
 3.10 Intr +  45068  45174  107  1  2   83   78   192 0.995  17.21
 3.11 Intr +  50414  50650  237  2  0   43   94   419 0.992  35.26
 3.12 Intr +  51418  51514   97  1  1   79   93   132 0.983  13.31
 3.13 Intr +  52177  52260   84  0  0   65   64   104 0.973   6.21
 3.14 Intr +  52686  52919  234  2  0  117   91   250 0.984  26.62
 3.15 Intr +  53671  53870  200  0  2   86   55   454 0.998  40.57
 3.16 Intr +  57877  58059  183  1  0   76   99   348 0.998  34.12
 3.17 Intr +  59239  59383  145  1  1  106   98   219 0.995  25.49
 3.18 Intr +  60036  60182  147  2  0   61  101   264 0.999  25.94
 3.19 Intr +  60538  60768  231  0  0   60   80   322 0.910  27.10
 3.20 Intr +  62120  62301  182  1  2   29   91   278 0.845  21.38
 3.21 Intr +  62576  62703  128  2  2   41   72   177 0.987  12.23
 3.22 Intr +  64730  64899  170  0  2  108   26   228 0.318  18.78
 3.23 Intr +  67079  67258  180  1  0   54   79   288 0.999  25.08
 3.24 Intr +  68000  68134  135  1  0   87   53   209 0.964  18.57
 3.25 Intr +  68511  68654  144  2  0   41   83   179 0.995  13.69
 3.26 Intr +  69089  69327  239  1  2   70   75   442 0.999  38.04
 3.27 Intr +  69774  69933  160  0  1   86   78   247 0.997  24.00
 3.28 Intr +  72360  72527  168  2  0  105   78   248 0.978  26.16
 3.29 Intr +  74535  74907  373  2  1   60  116   437 0.710  38.90
 3.30 Intr +  79500  79669  170  1  2  123  102   104 0.991  15.48
 3.31 Intr +  79776  79896  121  2  1   43  113   123 0.988  10.87
 3.32 Intr +  80185  80348  164  2  2   32   80   297 0.998  23.51
 3.33 Intr +  81980  82195  216  1  0   63   80   348 0.866  30.73
 3.34 Intr +  82893  83108  216  2  0   77   17   407 0.551  31.73
 3.35 Intr +  83562  83711  150  2  0   71   78   216 0.901  19.77
 3.36 Intr +  84030  84230  201  2  0   92  102   345 0.999  36.30
 3.37 Intr +  84413  84544  132  1  0  107   25   242 0.996  21.15
 3.38 Intr +  85242  85424  183  2  0   40   69   320 0.399  25.80
 3.39 Term +  86137  86223   87  0  0  138   49   100 0.999   9.06
 3.40 PlyA +  86736  86741    6                              -0.45

 4.41 PlyA -  87562  87557    6                              -0.45
 4.40 Term -  88153  88020  134  2  2   69   45   124 0.365   4.76
 4.39 Intr -  89119  89046   74  0  2   93   75    80 0.997   6.74
 4.38 Intr -  89507  89420   88  0  1   52   99    66 0.992   3.63
 4.37 Intr -  90322  90278   45  2  0   78   87    25 0.545   0.27
 4.36 Intr -  90571  90485   87  2  0   56   96    78 0.982   5.84
 4.35 Intr -  90700  90674   27  2  0  107   92    26 0.907   3.47
 4.34 Intr -  90975  90886   90  1  0   99   99   169 0.950  19.56
 4.33 Intr -  92091  92014   78  1  0   73  119    45 0.349   6.12
 4.32 Intr -  93808  93757   52  1  1   78   59    30 0.026  -1.93
 4.31 Intr -  94926  94728  199  2  1    7   96    70 0.019  -0.42
 4.30 Intr - 100135 100002  134  1  2  139   57   206 0.824  22.55
 4.29 Intr - 100409 100240  170  0  2   91   59   336 0.992  31.18
 4.28 Intr - 100733 100582  152  1  2  105    5   290 0.948  22.72
 4.27 Intr - 101046 100823  224  0  2   85  101   400 0.999  38.45
 4.26 Intr - 102011 101915   97  1  1   73  113   117 0.991  13.21
 4.25 Intr - 102251 102099  153  1  0   99  110   233 0.989  26.30
 4.24 Intr - 103547 103468   80  2  2  123   70   143 0.966  14.84
 4.23 Intr - 103780 103664  117  1  0   67   97   139 0.977  13.87
 4.22 Intr - 104064 103904  161  1  2   96  100   172 0.980  19.42
 4.21 Intr - 105635 105511  125  1  2   72   87   218 0.989  20.83
 4.20 Intr - 105906 105786  121  1  1  104   64   164 0.999  15.66
 4.19 Intr - 106179 106020  160  0  1   93   61   201 0.966  17.97
 4.18 Intr - 106358 106263   96  2  0   76   89    54 0.969   5.01
 4.17 Intr - 107612 107406  207  2  0  121   68   206 0.993  21.70
 4.16 Intr - 109941 109753  189  0  0   73   81   278 0.664  25.90
 4.15 Intr - 110077 110031   47  2  2  105  102   107 0.827  12.42
 4.14 Intr - 110273 110163  111  0  0  105   92   116 0.999  14.55
 4.13 Intr - 110952 110797  156  1  0   43   80   173 0.998  12.49
 4.12 Intr - 113919 113788  132  1  0   93   99   157 0.998  18.42
 4.11 Intr - 114089 114023   67  2  1  106   78    66 0.999   6.37
 4.10 Intr - 114311 114177  135  2  0  123  113   235 0.995  30.77
 4.09 Intr - 115880 115811   70  1  1  110   75   146 0.999  15.18
 4.08 Intr - 116150 116073   78  1  0   59   78    64 0.681   1.66
 4.07 Intr - 118188 118109   80  0  2   95   91   150 0.945  14.84
 4.06 Intr - 118598 118484  115  1  1   44  101    73 0.601   5.15
 4.05 Intr - 118849 118791   59  1  2  100   94   111 0.997  11.07
 4.04 Intr - 119333 119151  183  2  0   95   78   210 0.836  21.20
 4.03 Intr - 119555 119461   95  0  2  144  103    73 0.996  14.58
 4.02 Intr - 123114 123033   82  0  1   66   84    28 0.710  -0.09
 4.01 Init - 125297 125136  162  2  0   73   75   129 0.698   7.81
 4.00 Prom - 127664 127625   40                              -1.51

 5.09 PlyA - 128043 128038    6                               1.05
 5.08 Term - 132735 132658   78  0  0   93   36    72 0.795   0.56
 5.07 Intr - 136507 136385  123  1  0   87  102   150 0.988  17.59
 5.06 Intr - 137851 137750  102  1  0  108   94   100 0.999  13.47
 5.05 Intr - 141642 141526  117  0  0  103    1   179 0.936  11.87
 5.04 Intr - 142513 142377  137  2  2   66   86    75 0.907   5.90
 5.03 Intr - 146922 146837   86  2  2   69  105    29 0.120   2.66
 5.02 Intr - 158665 158538  128  1  2   36   78   135 0.184   7.28
 5.01 Init - 167796 167725   72  0  0  115  109   116 0.995  15.46
 5.00 Prom - 180767 180728   40                              -1.81

 6.16 PlyA - 181630 181625    6                               1.05
 6.15 Term - 183054 182821  234  0  0   77   43   389 0.854  29.95
 6.14 Intr - 183993 183865  129  0  0   99   77   157 0.998  17.10
 6.13 Intr - 185268 185183   86  1  2   79   94   122 0.944  11.94
 6.12 Intr - 188726 188633   94  2  1  109  113   180 0.999  22.64
 6.11 Intr - 189600 189456  145  2  1  129  121   232 0.997  31.39
 6.10 Intr - 193192 193041  152  1  2   52   47   246 0.543  16.37
 6.09 Intr - 196429 196322  108  1  0  106   99   168 0.664  20.68
 6.08 Intr - 197614 197503  112  0  1   86  110   179 0.999  20.78
 6.07 Intr - 198479 198376  104  2  2   70   95   136 0.998  11.97
 6.06 Intr - 200476 200298  179  2  2  110   94   308 0.997  33.76
 6.05 Intr - 206310 206185  126  1  0  101   70   177 0.902  18.36
 6.04 Intr - 207461 207344  118  2  1   77   45   221 0.999  17.24
 6.03 Intr - 209747 209686   62  0  2  115   77   132 0.603  13.74
 6.02 Intr - 216836 216764   73  2  1   71   97   154 0.999  14.07
 6.01 Intr - 218838 218655  184  2  1  150   76   170 0.999  22.31

Suboptimal exons with probability > 0.800

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

S.001 Init +  35796  35855   60  2  0   69   94    49 0.930   4.52
S.002 Term - 158665 158534  132  1  0   36   48   143 0.811   3.50
S.003 Init - 160020 159946   75  0  0   71   93    26 0.930   2.44


Predicted peptide sequence(s):

Predicted coding sequence(s):


>gi568815597r:16886224_17105781|GENSCAN_predicted_peptide_1|109_aa
MDGDLLQTKINAGAEQGLSEQKFWGSGQSPGDFPQVVVMEEEARQDRKAQSPPGRTTEQG
LGKPERLERSFQELPGRRPSPSRLGPQGKLNALWAPGMVLPVLCAAFTH

>gi568815597r:16886224_17105781|GENSCAN_predicted_CDS_1|330_bp
atggatggtgatctcctccagacaaaaataaatgctggtgcagaacaggggctgtcagaa
cagaagttttggggaagtggccagagccctggggactttccccaggtggtggtgatggaa
gaagaagcaaggcaggacaggaaggctcagagcccgcccggcaggaccaccgagcaaggc
cttggaaaaccagagagattagagcgaagcttccaggaactcccgggtcggcgacccagc
ccgagccgcctggggccccaagggaagctgaacgccctgtgggctcctgggatggttctt
cccgttctttgcgccgccttcacccattga

>gi568815597r:16886224_17105781|GENSCAN_predicted_peptide_2|104_aa
MGGRTRRGIRGACWERSPGLRCRAAAVAEHTAPPAPCCHPPVTLSCHQVVTGPVTPRTTH
QKRIMPGAHLLTAEGSKSATQHGKSFMAKQQPLRCLIYIETPYR

>gi568815597r:16886224_17105781|GENSCAN_predicted_CDS_2|315_bp
atgggcggcaggacgcggcggggcatccgcggagcctgttgggaacgctctcctggcctc
cggtgccgggccgcggcagtcgcggaacacacagcgcccccagccccgtgctgccaccca
ccggtcaccctgtcctgtcaccaggtggtgactggcccagtgacccccaggaccactcac
cagaaaagaatcatgccaggtgctcacctgctcactgcagagggctctaaatctgcaact
cagcacgggaaatccttcatggcgaagcagcagcccctgcgctgcctcatctacatagaa
acgccctatcggtga

>gi568815597r:16886224_17105781|GENSCAN_predicted_peptide_3|2088_aa
MAVSDCKGVWEMAFSHIPKRNRKCFVMRKLKLREVKTLVQGHTAGEGLTLESSVLCQEKG
LGARDLAQDAQITSLPALIREIVTRNLSQPESPACCRDVNPKSRIPTRGRCELAEPKIQE
EGSSAQTRVLRKSEWMAPSIRFPLLLPATEMASLLSLQEENQLLQQELSRVEDLLAQSRA
ERDELAIKYNAVSERLEQALRLEPGELETQEPRGLVRQSVELRRQLQEEQASYRRKLQAY
QEGQQRQAQLVQRLQGKILQYKKRCSELEQQLLERSGELEQQRLRDTEHSQDLESALIRL
EEEQQRSASLAQVNAMLREQLDQAGSANQALSEDIRKVTNDWTRCRKELEHREAAWRREE
ESFNAYFSNEHSRLLLLWRQVVGFRRLVSEVKMFTERDLLQLGGELARTSRAVQEAGLGL
STGLRLAESRAEAALEKQALLQAQLEEQLRDKVLREKDLAQQQMQSDLDKADLSARVTEL
GLAVKRLEKQNLEKDQVNKDLTEKLEALESLRLQEQAALETEDGEGLQQTLRDLAQAVLS
DSESGVQLSGSERTADASNGSLRGLSGQRTPSPPRRSSPGRGRSPRRGPSPACSDSSTLA
LIHSALHKRQLQVQDMRGRYEASQDLLGTLRKQLSDSESERRALEEQLQRLRDKTDGAMQ
AHEDAQREVQRLRSANELLSREKSNLAHSLQVAQQQAEELRQEREKLQAAQEELRRQRDR
LEEEQEDAVQDGARVRRELERSHRQLEQLEGKRSVLAKELVEVREALSRATLQRDMLQAE
KAEVAEALTKAEAGRVELELSMTKLRAEEASLQDSLSKLSALNESLAQDKLDLNRLVAQL
EEEKSALQGRQRQAEQEATVAREEQERLEELRLEQEVARQGLEGSLRVAEQAQEALEQQL
PTLRHERSQLQEQLAQLSGREQELEQARREAQRQVEALERAAREKEALAKEHAGLAVQLV
AAEREGRTLSEEATRLRLEKEALEGSLFEVQRQLAQLEARREQLEAEGQALLLAKETLTG
ELAGLRQQIIATQEKASLDKELMAQKLVQAEREAQASLREQRAAHEEDLQRLQREKEAAW
RELEAERAQLQSQLQREQEELLARLEAEKEELSEEIAALQQERDEGLLLAESEKQQALSL
KESEKTALSEKLMGTRHSLATISLEMERQKRDAQSRQEQDRSTVNALTSELRDLRAQREE
AAAAHAQEVRRLQEQARDLGKQRDSCLREAEELRTQLRLLEDARDGLRRELLEAQRKLRE
SQEGREVQRQEAGELRRSLGEGAKEREALRRSNEELRSAVKKAESERISLKLANEDKEQK
LALLEEARTAVGKEAGELRTGLQEVERSRLEARRELQELRRQMKMLDSENTRLGRELAEL
QGRLALGERAEKESRRETLGLRQRLLKGEASLEVMRQELQVAQRKLQEQEGEFRTRERRL
LGSLEEARGTEKQQLDHARGLELKLEAARAEAAELGLRLSAAEGRAQGLEAELARVEVQR
RAAEAQLGGLRSALRRGLGLGRAPSPAPRPVPGSPARDAPAEGSGEGLNSPSTLECSPGS
QPPSPGPATSPASPDLDPEAVRGALREFLQELRSAQRERDELRTQTSALNRQLAEMEAER
DSATSRARQLQKAVAESEEARRSVDGRLSGVQAELALQEESVRRSERERRATLDQVATLE
RSLQATESELRASQEKISKMKANETKLEGDKRRLKEVLDASESRTVKLELQRRSLEGELQ
RSRLGLSDREAQAQALQDRVDSLQRQVADSEVKAGTLQLTVERLNGALAKVEESEGALRD
KVRGLTEALAQSSASLNSTRDKNLHLQKALTACEHDRQERLDAARQALSEARKQSSSLGE
QVQTLRGEVADLELQRVEAEGQLQQLREVLRQRQEGEAAALNTVQKLQDERRLLQERLGS
LQRALAQLEAEKREVERSALRLEKDRVALRRTLDKVEREKLRSHEDTVRLSAEKGRLDRT
LTGAELELAEAQRQIQQLEAQVVVLEQSHSPAQLEVDAQQQQLELQQEVERLRSAQAQTE
RTLEARERAHRQRVRGLEEQVSTLKGQLQQELRRSSAPFSPPSGPPEK

>gi568815597r:16886224_17105781|GENSCAN_predicted_CDS_3|6267_bp
atggccgtatctgactgcaagggagtctgggaaatggcttttagccatattcctaagagg
aatcggaaatgctttgtgatgaggaaactgaagctcagagaagtgaagacactggtgcag
ggtcacacagctggtgaggggctgacactggagagcagcgtcctgtgccaggagaaaggc
ttgggcgcgcgggacctggcccaggacgctcagatcaccagcctgcctgcccttatcagg
gagattgtcacccgcaacctctcccagcctgagagcccagcctgctgcagagatgtgaac
cccaaatcccgtattcccacccggggaaggtgtgagctggctgaacccaagatacaggaa
gagggcagctcagctcagaccagggttttgcggaagtctgagtggatggcgccgtccatc
cgtttcccactcctgctgccggccacagagatggcatcgctgctgtcgctgcaggaggag
aaccagctgctgcagcaggagctgtcccgcgtggaggacctgctggcccagagccgtgcc
gagcgcgatgagctcgccattaagtacaatgcggtcagcgagaggctggagcaggctctg
cggctggagcctggggagctggagacgcaggagcccagggggctggtacggcagagcgtg
gagttgcggaggcagctgcaggaggagcaggcctcctaccggcgcaagctgcaggcctac
caggagggccagcagcggcaggcccagcttgtgcagcggctgcagggcaagattctccag
tacaagaagaggtgctcggagctggagcagcagctgctggagagatccggagagctggag
cagcagcggctgagggacacagagcacagccaagacctggaaagcgccctcatccggctg
gaggaggagcagcagaggagtgccagcctggcccaggtgaatgccatgctccgagaacag
ctggaccaggcaggctcggccaaccaggctctgagtgaggacatacgaaaggtgaccaat
gactggacacgctgccgcaaggagctggagcaccgggaggcggcgtggaggcgcgaggag
gagtccttcaacgcctacttcagcaacgagcacagtcgcctgctcctcctctggaggcag
gtggtggggttccggcggctggtcagcgaggtgaagatgttcactgagagggacctgctg
cagctgggaggggagctggcccggacatcacgagctgtccaggaggcgggcctgggactg
agcacgggcctacggctggcagagagccgggccgaggcagccctggagaaacaggccctg
ctgcaggcccagctggaggagcagctgcgggacaaggtgctccgcgagaaggacctggcg
cagcagcagatgcaaagcgacctggacaaggctgacctcagtgccagagtgacagagctg
ggcctggcagtgaagcgtcttgagaagcagaatctggagaaggatcaggtcaacaaggac
ctcactgagaagcttgaggccctggaatccctgcggctacaggagcaggcggccctggag
acagaggatggagaggggctacagcagaccctaagggacctggcacaggccgtcttgtca
gactctgagagcggcgtccagctgagcggctctgagcgcaccgcggatgcttccaacggc
agcctgcgggggctctcgggccagcggaccccgtccccaccgcggcgctcctcgcccggc
cgaggccgttcaccccgccgaggcccctccccggcctgctcagactcctccacgctcgcc
ctgatccactccgccctgcacaagcgccagctgcaggtccaggacatgcgtgggcgctat
gaggcaagccaggacctactgggcaccctgcggaagcagcttagcgacagcgagagcgag
cggcgggccctagaggaacagctgcagcgcctgcgggacaagaccgacggcgccatgcag
gcccacgaggacgcccagcgcgaggtgcagcggctgcggagcgccaacgagctcctgagc
agggagaagagcaacctggcccacagcctgcaggtggcccagcagcaggccgaggagctg
cggcaggagcgggagaagctgcaggctgcccaggaggagctgcggcgccagcgggaccgg
ctggaggaagagcaggaggacgcagtgcaggatggcgcgcgggtgcgccgggagcttgag
cgcagccatagacaactagagcagctggaagggaagcgctcagtcctggccaaggagctg
gtggaggtgagggaggcgctgagccgcgccacactgcaacgggacatgctgcaggccgag
aaggccgaggtggccgaggcgctgaccaaggctgaggctggccgcgtggagctcgagctc
tccatgaccaagctgagggcagaggaggcctccctgcaggactccctgtccaagctgagc
gccctcaacgagagccttgctcaggacaagttggatctgaaccgccttgtcgcccagctg
gaggaagaaaagtccgccctgcagggccggcaacggcaggcagagcaggaggccacagtg
gcgcgggaagagcaggaacggctagaggagctgcggttggagcaggaggtggcgcggcag
ggcctggagggctccctacgagtggcggagcaggcccaggaggcattggagcagcagctc
cccacgctgcgccatgagcgcagccagctgcaggagcagctagcgcagctgagcgggcgg
gagcaggagctggagcaggcccggcgggaggcccagcggcaagtggaggcgctggagcga
gcggcccgtgagaaggaggcgctagccaaggagcacgctggcctggctgtgcagctggtg
gctgcggagcgtgaaggcaggaccctgtcagaggaggccacacgcctgcgcttggagaag
gaagccctggagggcagcctgtttgaggtgcaacggcagctggcccagcttgaggcccgc
cgggagcagctggaagccgaggggcaggccctgctgctggccaaggagaccctgactggg
gagttggcgggcctgcggcagcaaataatagctacacaggagaaagccagtctagacaag
gagctgatggcccagaagctggtgcaggctgagcgggaggcccaggcctctctgcgggag
cagcgggcagctcacgaggaggacttacagcgactccagcgtgaaaaggaggcagcatgg
cgggagctggaggccgagcgggcccagctgcagagtcagctgcagcgtgagcaggaggag
ctgctggcccggctggaggctgagaaggaagagctgagtgaggagattgctgccctgcag
caggagcgcgacgagggcctcctcctagcagagagtgagaagcagcaggccttgtctctg
aaggagtctgagaagacggcgctgtcagagaagttgatgggtacacggcacagcctggcc
accatctccctggagatggagcggcagaaacgagatgcccagagccggcaggagcaggac
cggagcaccgtgaacgctctgacgtctgagctgcgggacctacgggcccagcgggaggag
gctgctgcggcccacgcccaggaggtgaggaggctgcaagagcaggcccgagacctgggc
aagcagcgggactcctgtcttcgcgaggcagaagagcttcggacccagctgcgtctgctg
gaggatgcccgtgacgggctgcggcgggagctgctggaggcccagcgcaagctgcgtgag
agccaggagggccgggaggtgcagcgccaggaggcaggcgagctgcgacgcagcctgggc
gagggtgccaaggagcgcgaggccctgcggcgttccaatgaggagcttcggtctgctgtg
aagaaggcagagagcgagcgcatcagcctgaagcttgccaatgaggacaaggagcagaag
ctggcactcctagaggaggcacggacagctgtgggcaaggaggccggggagctgcgaact
gggctgcaggaggtggagcgctcacggctggaggctcggcgggagctgcaggagctccgg
cgtcagatgaagatgctggacagtgagaacaccagactgggccgggagctggcggagctg
cagggccgcctggcgctgggcgagcgggcagagaaggagagcaggcgggagaccctgggc
ctccggcagaggctgctgaagggcgaggccagcctggaggtgatgcggcaggagctccag
gtagcccagcggaagctgcaggaacaagaaggcgagttccggacccgcgagcgacgcctg
ctgggctccctggaggaggcgcgtggcactgaaaagcagcagctggaccacgcccgcggc
ctggagctgaagctggaggcggcgcgggccgaggctgcagagctgggcctgcggctgagc
gcagccgagggccgggcacaaggcctggaggccgagctggcccgcgtggaggtgcagcgg
cgcgcggcggaggcccagctgggtggcctgcgctcggctctgcgccggggcctcggcctc
ggtcgcgcgcccagcccagccccgcggccagtgcccggttcccctgcccgggacgcaccc
gcagaaggaagcggggaagggctcaacagccccagcaccttagaatgcagccctgggtcc
cagccaccatctccaggacctgccacctccccagcctctccagacctggacccggaggca
gtgcgcggggccctccgggaattcctgcaagagctgcggagtgcccagagagaacgggac
gaacttcggacccagaccagtgccctgaatcgccagctggccgagatggaggctgagagg
gacagcgcaacctcgagggccaggcagctgcagaaggcggtggctgagagtgaggaagcc
cggcgcagtgtggatgggcggctgagcggggtccaggcggagctggcgctgcaggaggag
agtgtgcggcgcagtgagcgggagcgccgggccacgctggaccaggtggccacactggag
aggagcctgcaggccaccgagagcgagctccgggccagccaggagaagatcagcaagatg
aaggccaatgagacaaagctggagggcgacaagcggcgcctgaaggaggttctggacgcc
tccgagagccgcactgtcaagctggagctgcagcggcgctcgcttgagggggagctgcag
cgcagccgcctgggcctcagtgaccgcgaggcccaagcccaggccctccaggatcgggtg
gattccctgcagagacaggtggccgacagcgaggtgaaggcagggaccctgcagctgacc
gtggagcggctgaatggggccctggctaaggtggaggaaagcgagggggccctgcgggac
aaggtgcggggcctgacagaggccctggcccagagcagtgccagcctcaacagcacccgg
gacaagaacctgcatctgcagaaggctctgaccgcctgtgaacatgaccgccaagaacgg
ctggatgccgcccggcaggcattatctgaggcacggaagcagagcagctccctgggcgag
caggtgcagacgttgcgaggcgaggtggctgacctggaactgcagcgggtggaggccgag
ggccagctacaacagctacgggaggtgctgcggcagcggcaggagggtgaggctgcagcc
ctgaacaccgtccagaagctgcaagacgagcggcggctgctgcaggagcgcctgggaagc
ctgcagcgcgccctggctcagctggaagctgagaagcgggaggtggagcgctcagccctg
cggctggagaaggaccgtgtagccctcaggaggacgctggacaaggtggagcgggagaag
cttcgtagccatgaggacacagtgcggctgagcgcagagaagggccgcctggaccgcacc
ctcacgggggctgagctggagctggcagaggcgcagaggcagatccagcagctggaggcg
caggtggtggtgctggagcagagccacagcccggcccagctggaggtggatgcgcagcag
cagcagctggagctgcagcaggaggtggagcggctgcgcagcgcccaggcgcagactgag
cgcaccctggaggctcgggagcgggcccaccgccagagggtgcgtgggctggaggagcag
gtgtccacactgaagggccagctgcagcaggagcttcgaaggagctcagcacccttctcc
ccaccctccggccccccagagaaatga

>gi568815597r:16886224_17105781|GENSCAN_predicted_peptide_4|1543_aa
MAPPLAAGPSPPLHPSAAGLEAGRLCKRVLGPCGDGEATPRPLNRIPPRVTDVQLCCVQE
TDIHSFSQSVNQCFLTPEHMADSSPLVGSTPTGYGTLTIGTSIDPLSSSVSSVRLSGYCG
SPWRVIGYHVVVWMMAGIPLLLFRWKPLWGVRLRLRPCNLAHAETLVIEIRDKEDSSWQL
FTVQVQTEAIGEGSLEPSPQSQAEDGRSQAAVGAVPEGAWKDTAQLHKSEEAKRVLRYYL
FQGQRYIWIETQQAFYQVSLLDHGRSCDDVHRSRHGLSLQDQMVRKAIYGPNVISIPVKS
YPQLLVDEALNPYYGFQAFSIALWLADHYYWYALCIFLISSISICLSLYKTRKQSQTLRD
MVKLSMRVCVCRPGGEEEWVDSSELVPGDCLVLPQEGGLMPCDAALVAGECMVNESSLTG
ESIPVLKTALPEGLGPYCAETHRRHTLFCGTLILQARAYVGPHVLAVVTRTGFCTAKGGL
VSSILHPRPINFKFYKHSMKFVAALSVLALLGTIYSIFILYRNRVPLNEIVIRALDLVTV
VVPPALPAAMTVCTLYAQSRLRRQGIFCIHPLRINLGGKLQLVCFDKTGTLTEDGLDVMG
VVPLKGQAFLPLVPEPRRLPVGPLLRALATCHALSRLQDTPVGDPMDLKMVESTGWVLEE
EPAADSAFGTQVLAVMRPPLWEPQLQAMEEPPVPVSVLHRFPFSSALQRMSVVVAWPGAT
QPEAYVKGSPELVAGLCNPETVPTDFAQMLQSYTAAGYRVVALASKPLPTVPSLEAAQQL
TRDTVEGDLSLLGLLVMRNLLKPQTTPVIQALRRTRIRAVMVTGDNLQTAVTVARGCGMV
APQEHLIIVHATHPERGQPASLEFLPMESPTAVNGVKDPDQAASYTVEPDPRSRHLALSG
PTFGIIVKHFPKLLPKVLVQGTVFARMAPEQKTELVCELQKLQYCVGMCGDGANDCGALK
AADVGISLSQAEASVVSPFTSSMASIECVPMVIREGRCSLDTSFSVFKYMALYSLTQFIS
VLILYTINTNLGDLQFLAIDLVITTTVAVLMSRTGPALVLGRVRPPGALLSVPVLSSLLL
QMVLVTGVQLGGYFLTLAQPWFVPLNRTVAAPDNLPNYENTVVFSLSSFQYLILAAAVSK
GAPFRRPLYTNVPFLVALALLSSVLVGLVLVPGLLQGPLALRNITDTGFKLLLLGLVTLN
FVGAFMLESVLDQCLPACLRRLRPKRASKKRFKQLERELAEQPWPPLPAGPLRKGKKEPL
VVEASHGPELSSVGEEGAGLREAAGLAGEAEGKPRQESVLEAGRRQREIEAYFLAEGPRD
AGESGVGEAAAVEEARAVLSDTTPACLFVAMRAAYLFLLFLPAGLLAQGQYDLDPLPPFP
DHVQYTHYSDQIDNPDYYDYQEVTPRPSEEQFQFQSQQQVQQEVIPAPTPEPGNAELEPT
EPGPLDCREEQYPCTRLYSIHRPCKQCLNEVCFYSLRRVYVINKEICVRTVCAHEELLRV
PAPPPYPPAPALPCPERCVMTVYARMRVVGIAREMEGFRDTAF

>gi568815597r:16886224_17105781|GENSCAN_predicted_CDS_4|4632_bp
atggcgccgccgctcgcagccggtccctcccctcccctgcacccctcagccgcgggattg
gaagccgggcgcttgtgcaagagggtcctggggccgtgcggggacggggaggccacccca
cgcccacttaatcggatcccaccccgagtgacggatgtccagctctgttgtgtccaagag
acagacattcattcattcagtcagtcggtcaatcagtgtttcctgacccctgagcacatg
gcagacagcagccctctcgtgggcagcacgcccaccggttatgggaccctgacgataggg
acatcaatagatcccctcagctcctcagtttcatccgtgaggctcagcggctactgtggc
agtccatggagggtcatcggctatcacgtcgtggtctggatgatggctgggatccctttg
ctgctcttccgttggaagcccctgtggggggtgcggctgcggctccggccctgcaacctg
gcccacgccgaaacactcgttatcgaaataagagacaaagaggatagttcctggcagctc
ttcactgtccaggtgcagactgaggccatcggcgagggcagcctggagccgtccccacag
tcccaggcagaggatggccggagccaggcggcagttggggcggtaccagagggtgcctgg
aaggatacggcccagctccacaagagcgaggaggcgaagcgggtgctgcggtattacctc
ttccagggccagcgctatatctggatcgagacccagcaagccttctaccaggtcagcctc
ctggaccatggccgctcttgtgacgacgtccaccgctcccgccatggcctcagcctccag
gaccaaatggtgaggaaggccatttacggccccaacgtgatcagcataccggtcaagtcc
tacccccagctgctggtggacgaggcactgaacccctactatgggttccaggccttcagc
atcgcgctgtggctggctgaccactactactggtacgccctgtgcatcttcctcatttcc
tccatctccatctgcctgtcgctgtacaagaccagaaagcaaagccagactctaagggac
atggtcaagttgtccatgcgggtgtgcgtgtgccggccagggggagaggaagagtgggtg
gactccagtgagctagtgcccggagactgcctggtgctgccccaggagggtgggctgatg
ccctgtgatgccgccctggtggccggcgagtgcatggtgaatgagagctctctgacagga
gagagcattccagtgctgaagacggcactgccggaggggctggggccctactgtgcagag
acacaccggcggcacacactcttctgcgggaccctcatcttgcaggcccgggcctatgtg
ggaccgcacgtcctggcagtggtgacccgcacagggttctgcacggcaaaagggggcctg
gtgagctccatcttgcacccccggcccatcaacttcaagttctataaacacagcatgaag
tttgtggctgccctctctgtcctggctctcctcggcaccatctacagcatcttcatcctc
taccgaaaccgggtgcctctgaatgagattgtaatccgggctctcgacctggtgaccgtg
gtggtgccacctgccctgcctgctgccatgactgtgtgcacgctctacgcccagagccga
ctgcggagacagggcattttctgcatccacccactgcgcatcaacctggggggcaagctg
cagctggtgtgtttcgacaagacgggcaccctcactgaggacggcttagacgtgatgggg
gtggtgcccctgaaggggcaggcattcctgcccctggtcccagagcctcgccgcctgcct
gtggggcccctgctccgagcactggccacctgccatgccctcagccggctccaggacacc
cccgtgggcgaccccatggacttgaagatggtggagtctactggctgggtcctggaggaa
gagccggctgcagactcagcatttgggacccaggtcttggcagtgatgagacccccactt
tgggagccccagctgcaggcaatggaggagcccccggtgccagtcagcgtcctccaccgc
ttccccttctcttcggctctgcagcgcatgagtgtggtggtggcgtggccaggggccact
cagcccgaggcctacgtcaaaggctccccggagctggtggcagggctctgcaaccccgag
acagtgcccaccgacttcgcccagatgctgcagagctatacagctgctggctaccgtgtc
gtggccctggccagcaagccactgcccactgtgcccagcctggaggcagcccagcaactg
acgagggacactgtggaaggagacctgagcctcctggggctgctggtcatgaggaaccta
ctgaagccgcagacaacgccagttatccaggctctgcgaaggacccgcatccgcgccgtc
atggtgacaggggacaacctgcagacagcggtgactgtggcccggggctgtggcatggtg
gccccccaggagcatctgatcatcgtccacgccacccaccctgagcggggtcagcctgcc
tctctcgagttcctgccgatggagtcccccacagccgtgaatggcgttaaggatcctgac
caggctgcaagctacaccgtggagccagacccccgatccaggcacctggccctcagcggg
cccacctttggtatcattgtgaagcacttccccaagctgctgcccaaggtcctggtccag
ggcactgtctttgcccgcatggcccctgagcagaagacagagctggtgtgcgagctacag
aagcttcagtactgcgtgggcatgtgcggagacggcgccaatgactgtggggccctgaag
gcggctgatgtcggcatctcgctgtcccaggcagaagcctcagtggtctcacccttcacc
tcgagcatggccagtattgagtgcgtgcccatggtcatcagggaggggcgctgttccctt
gacacttcgttcagcgtcttcaagtacatggctctgtacagcctgacccagttcatctcc
gtcctgatcctctacacgatcaacaccaacctgggtgacctgcagttcctggccatcgac
ctggtcatcaccaccacagtggcagtgctcatgagccgcacggggccagcgctggtcctg
ggacgggtgcggccaccgggggcgctgctcagcgtgcccgtgctcagcagcctgctgctg
cagatggtcctggtgaccggcgtgcagctagggggctacttcctgaccctggcccagcca
tggttcgtgcctctgaacaggacagtggccgcaccagacaacctgcccaactacgagaac
accgtggtcttctctctgtccagcttccagtacctcatcctggctgcagccgtgtccaag
ggggcgcccttccgccggccgctctacaccaatgtgcccttcctggtggccctggcgctc
ctgagctccgtcctggtgggccttgtcctggtccccggcctcctgcaggggccgctggcg
ctgaggaacatcactgacaccggcttcaagctgctgctgctgggtctggtcaccctcaac
ttcgtgggggccttcatgctggagagcgtgctagaccagtgcctccccgcctgcctgcgc
cgcctccggcccaagcgggcctccaagaagcgcttcaagcagctggaacgagagctggcc
gagcagccctggccgccgctgcccgccggccccctgagaaaaggaaagaaagaaccgctg
gttgtggaagccagccatggcccagagctcagcagtgtaggagaggagggtgcgggcctg
agagaggcagcaggcttggctggagaggcagaaggaaaaccaaggcaggagagtgtcctg
gaagctgggagaaggcagagggagatcgaggcttactttctggctgaggggcctagggac
gcaggggagtcgggggtgggggaggccgcagctgtggaagaggccagagctgtcctctct
gacaccaccccggcctgcctctttgttgccatgagagctgcctacctcttcctgctattc
ctgcctgcaggcttgctggctcagggccagtatgacctggacccgctgccgccgttccct
gaccacgtccagtacacccactatagcgaccagatcgacaacccagactactatgattat
caagaggtgactcctcggccctccgaggaacagttccagttccagtcccagcagcaagtc
caacaggaagtcatcccagccccaaccccagaaccaggaaatgcagagctggagcccaca
gagcctgggcctcttgactgccgtgaggaacagtacccgtgcacccgcctctactccata
cacaggccttgcaaacagtgtctcaacgaggtctgcttctacagcctccgccgtgtgtac
gtcattaacaaggagatctgtgttcgtacagtgtgtgcccatgaggagctcctccgagtc
ccagccccaccgccttacccgccggctccagctctgccctgcccagaacgctgcgtcatg
acagtgtacgcgcgcatgcgtgttgtgggaattgcacgggagatggaaggcttcagggac
acagctttctga

>gi568815597r:16886224_17105781|GENSCAN_predicted_peptide_5|280_aa
MAAVVALSLRRRLPATTLGGACLQASRGAQTAAATAPRIKKFAIYRWDPDKAGDKPHMQT
YEVDLNKCGPMVLDALIKIKNEVDSTLTFRRSCREGICGSCAMNINGGNTLACTRRIDTN
LNKVSKIYPLPHMYVIKDLVPDLSNFYAQYKSIEPYLKKKDESQEGKQQYLQSIEEREKL
DGLYECILCACCSTSCPSYWWNGDKYLGPAVLMQAYRWMIDSRDDFTEERLAKLQDPFSL
YRCHTIMNCTRTCPKGLNPGKAIAEIKKMMATYKEKKASV

>gi568815597r:16886224_17105781|GENSCAN_predicted_CDS_5|843_bp
atggcggcggtggtcgccctctccttgaggcgccggttgccggccacaacccttggcgga
gcctgcctgcaggcctcccgaggagcccagacagctgcagccacagctccccgtatcaag
aaatttgccatctatcgatgggacccagacaaggctggagacaaacctcatatgcagact
tatgaagttgaccttaataaatgtggccccatggtattggatgctttaatcaagattaag
aatgaagttgactctactttgaccttccgaagatcatgcagagaaggcatctgtggctct
tgtgcaatgaacatcaatggaggcaacactctagcttgcacccgaaggattgacaccaac
ctcaataaggtctcaaaaatctaccctcttccacacatgtatgtgataaaggatcttgtt
cccgatttgagcaacttctatgcacagtacaaatccattgagccttatttgaagaagaag
gatgaatctcaggaaggcaagcagcagtatctgcagtccatagaagagcgtgagaaactg
gacgggctctacgagtgcattctctgtgcctgctgtagcaccagctgccccagctactgg
tggaacggagacaaatatctggggcctgcagttcttatgcaggcctatcgctggatgatt
gactccagagatgacttcacagaggagcgcctggccaagctgcaggacccattctctcta
taccgctgccacaccatcatgaactgcacaaggacctgtcctaagggtctgaatccaggg
aaagctattgcagagatcaagaaaatgatggcaacctataaggagaagaaagcttcagtt
taa

>gi568815597r:16886224_17105781|GENSCAN_predicted_peptide_6|635_aa
XAAPAGAQTFSLKHSEHVWVEVVRDGEAEEVATNGKQRWLLSPSTTLRVTMSQASTEASS
DKVTVNYYDEEGSIPIDQAGLFLTAIEISLDVDADRDGVVEKNNPKKASWTWGPEGQGAI
LLVNCDRETPWLPKEDCRDEKVYSKEDLKDMSQMILRTKGPDRLPAGYEIVLYISMSDSD
KVGVFYVENPFFGQRYIHILGRRKLYHVVKYTGGSAELLFFVEGLCFPDEGFSGLVSIHV
SLLEYMAQDIPLTPIFTDTVIFRIAPWIMTPNILPPVSVFVCCMKDNYLFLKEVKNLVEK
TNCELKVCFQYLNRGDRWIQDEIEFGYIEAPHKGFPVVLDSPRDGNLKDFPVKELLGPDF
GYVTREPLFESVTSLDSFGNLEVSPPVTVNGKTYPLGRILIGSSFPLSGGRRMTKVVRDF
LKAQQVQAPVELYSDWLTVGHVDEFMSFVPIPGTKKFLLLMASTSACYKLFREKQKDGHG
EAIMFKGLGGMSSKRITINKILSNESLVQENLYFQRCLDWNRDILKKELGLTEQDIIDLP
ALFKMDEDHRARAFFPNMVNMIVLDKDLGIPKPFGPQVEEECCLEMHVRGLLEPLGLECT
FIDDISAYHKFLGEVHCGTNVRRKPFTFKWWHMVP

>gi568815597r:16886224_17105781|GENSCAN_predicted_CDS_6|1908_bp
nncgcggccccagccggggcccaaaccttcagcctgaagcactcggaacacgtgtgggtg
gaggtggtgcgtgatggggaggctgaggaggtggccaccaatggcaagcagcgctggctt
ctctcgcccagcaccaccctgcgggtcaccatgagccaggcgagcaccgaggccagcagt
gacaaggtcaccgtcaactactatgacgaggaagggagcattcccatcgaccaggcgggg
ctcttcctcacagccattgagatctccctggatgtggacgcagaccgggatggtgtggtg
gagaagaacaacccaaagaaggcatcctggacctggggccccgagggccagggggccatc
ctgctggtgaactgtgaccgagagacaccctggttgcccaaggaggactgccgtgatgag
aaggtctacagcaaggaagatctcaaggacatgtcccagatgatcctgcggaccaaaggc
cccgaccgcctccccgccggatacgagatagttctgtacatttccatgtcagactcagac
aaagtgggcgtgttctacgtggagaacccgttcttcggccaacgctatatccacatcctg
ggccggcggaagctctaccatgtggtcaagtacacgggtggctccgcggagctgctgttc
ttcgtggaaggcctctgtttccccgacgagggcttctcaggcctggtctccatccatgtc
agcctgctggagtacatggcccaggacattcccctgactcccatcttcacggacaccgtg
atattccggattgctccgtggatcatgacccccaacatcctgcctcccgtgtcggtgttt
gtgtgctgcatgaaggataattacctgttcctgaaagaggtgaagaaccttgtggagaaa
accaactgtgagctgaaggtctgcttccagtacctaaaccgaggcgatcgctggatccag
gatgaaattgagtttggctacatcgaggccccccataaaggcttccccgtggtgctggac
tctccccgagatggaaacctaaaggacttccctgtgaaggagctcctgggcccagatttt
ggctacgtgacccgggagcccctctttgagtctgtcaccagccttgactcatttggaaac
ctggaggtcagtcccccagtgaccgtgaacggcaagacatacccgcttggccgcatcctc
atcgggagcagctttcctctgtctggtggtcggaggatgaccaaggtggtgcgtgacttc
ctgaaggcccagcaggtgcaggcgcccgtggagctctactcagactggctgactgtgggc
cacgtggatgagttcatgtcctttgtccccatccccggcacaaagaaattcctgctactc
atggccagcacctcggcctgctacaagctcttccgagagaagcagaaggacggccatgga
gaggccatcatgttcaaaggcttgggtgggatgagcagcaagcgaatcaccatcaacaag
attctgtccaacgagagccttgtgcaggagaacctgtacttccagcgctgcctagactgg
aaccgtgacatcctcaagaaggagctgggactgacagagcaggacatcattgacctgccc
gctctgttcaagatggacgaggaccaccgtgccagagccttcttcccaaacatggtgaac
atgatcgtgctggacaaggacctgggcatccccaagccattcgggccacaggttgaggag
gaatgctgcctggagatgcacgtgcgtggcctcctggagcccctgggcctcgaatgcacc
ttcatcgacgacatttctgcctaccacaaatttctgggggaagtccactgtggcaccaac
gtccgcaggaagcccttcaccttcaagtggtggcacatggtgccctga
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