Result of GENSCAN for pF1KB6887
GENSCAN 1.0	Date run:  5-Nov-116	Time: 00:12:47

Sequence gi568815597r:16874923_17078273 : 203351 bp : 50.99% 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..
----- ---- - ------ ------ ---- -- -- ---- ---- ----- ----- ------

 1.00 Prom +   3443   3482   40                              -1.66
 1.01 Init +  10332  10404   73  2  1   66   96    10 0.315   0.83
 1.02 Intr +  14175  14243   69  1  0   60  105    71 0.325   5.15
 1.03 Intr +  14272  14387  116  2  2   38   47    93 0.055   0.37
 1.04 Intr +  32940  33053  114  2  0   78   81    38 0.004   2.74
 1.05 Intr +  43239  43304   66  2  0   54   93    46 0.258   0.80
 1.06 Intr +  47741  47876  136  1  1  106   50   118 0.997   9.94
 1.07 Intr +  48125  48274  150  0  0   37   18   138 0.751   1.83
 1.08 Intr +  49403  49557  155  0  2   47   59   354 0.598  28.19
 1.09 Intr +  54924  55109  186  2  0   79   77   359 0.978  33.79
 1.10 Intr +  55202  55285   84  1  0   70   59   195 0.998  14.82
 1.11 Intr +  55364  55425   62  1  2  108   78   141 0.999  12.63
 1.12 Intr +  55507  55672  166  1  1   70   64   273 0.935  23.06
 1.13 Intr +  56369  56475  107  1  2   83   78   192 0.999  16.71
 1.14 Intr +  61715  61951  237  2  0   43   94   419 0.997  34.73
 1.15 Intr +  62719  62815   97  1  1   79   93   132 0.987  12.81
 1.16 Intr +  63478  63561   84  0  0   65   64   104 0.968   5.72
 1.17 Intr +  63987  64220  234  2  0  117   91   250 0.984  26.09
 1.18 Intr +  64972  65171  200  0  2   86   55   454 0.998  40.05
 1.19 Intr +  69178  69360  183  1  0   76   99   348 0.999  33.60
 1.20 Intr +  70540  70684  145  1  1  106   98   219 0.995  24.98
 1.21 Intr +  71337  71483  147  2  0   61  101   264 0.999  25.43
 1.22 Intr +  71839  72069  231  0  0   60   80   322 0.952  26.57
 1.23 Intr +  73421  73602  182  1  2   29   91   278 0.916  20.87
 1.24 Intr +  73877  74004  128  2  2   41   72   177 0.988  11.72
 1.25 Intr +  76031  76200  170  0  2  108   26   228 0.713  18.27
 1.26 Intr +  78380  78559  180  1  0   54   79   288 0.999  24.56
 1.27 Intr +  79301  79435  135  1  0   87   53   209 0.964  18.06
 1.28 Intr +  79812  79955  144  2  0   41   83   179 0.995  13.18
 1.29 Intr +  80390  80628  239  1  2   70   75   442 0.999  37.51
 1.30 Intr +  81075  81234  160  0  1   86   78   247 0.997  23.49
 1.31 Intr +  83661  83828  168  2  0  105   78   248 0.979  25.64
 1.32 Intr +  85836  86208  373  2  1   60  116   437 0.712  38.34
 1.33 Intr +  90801  90970  170  1  2  123  102   104 0.991  14.97
 1.34 Intr +  91077  91197  121  2  1   43  113   123 0.988  10.37
 1.35 Intr +  91486  91649  164  2  2   32   80   297 0.999  22.99
 1.36 Intr +  93281  93496  216  1  0   63   80   348 0.869  30.20
 1.37 Intr +  94194  94409  216  2  0   77   17   407 0.552  31.20
 1.38 Intr +  94863  95012  150  2  0   71   78   216 0.901  19.26
 1.39 Intr +  95331  95531  201  2  0   92  102   345 0.999  35.78
 1.40 Intr +  95714  95845  132  1  0  107   25   242 0.999  20.64
 1.41 Intr +  96543  96725  183  2  0   40   69   320 0.414  25.28
 1.42 Term +  97438  97524   87  0  0  138   49   100 0.999   8.76
 1.43 PlyA +  98037  98042    6                              -0.45

 2.40 PlyA -  98863  98858    6                              -0.45
 2.39 Term -  99454  99321  134  2  2   69   45   124 0.365   4.45
 2.38 Intr - 100420 100347   74  0  2   93   75    80 0.996   6.25
 2.37 Intr - 100808 100721   88  0  1   52   99    66 0.992   3.13
 2.36 Intr - 101872 101786   87  2  0   56   96    78 0.975   5.34
 2.35 Intr - 102001 101975   27  2  0  107   92    26 0.879   2.99
 2.34 Intr - 102276 102187   90  1  0   99   99   169 0.950  19.07
 2.33 Intr - 103392 103315   78  1  0   73  119    45 0.353   5.62
 2.32 Intr - 105109 105058   52  1  1   78   59    30 0.077  -2.42
 2.31 Intr - 106227 106029  199  2  1    7   96    70 0.066  -0.95
 2.30 Intr - 111436 111303  134  1  2  139   57   206 0.870  22.04
 2.29 Intr - 111710 111541  170  0  2   91   59   336 0.994  30.67
 2.28 Intr - 112034 111883  152  1  2  105    5   290 0.948  22.21
 2.27 Intr - 112347 112124  224  0  2   85  101   400 0.999  37.93
 2.26 Intr - 113312 113216   97  1  1   73  113   117 0.991  12.71
 2.25 Intr - 113552 113400  153  1  0   99  110   233 0.989  25.79
 2.24 Intr - 114848 114769   80  2  2  123   70   143 0.966  14.35
 2.23 Intr - 115081 114965  117  1  0   67   97   139 0.971  13.36
 2.22 Intr - 115365 115205  161  1  2   96  100   172 0.974  18.91
 2.21 Intr - 116936 116812  125  1  2   72   87   218 0.989  20.33
 2.20 Intr - 117207 117087  121  1  1  104   64   164 0.999  15.15
 2.19 Intr - 117480 117321  160  0  1   93   61   201 0.966  17.46
 2.18 Intr - 117659 117564   96  2  0   76   89    54 0.957   4.51
 2.17 Intr - 118913 118707  207  2  0  121   68   206 0.993  21.17
 2.16 Intr - 121242 121054  189  0  0   73   81   278 0.665  25.38
 2.15 Intr - 121378 121332   47  2  2  105  102   107 0.828  11.93
 2.14 Intr - 121574 121464  111  0  0  105   92   116 0.999  14.05
 2.13 Intr - 122253 122098  156  1  0   43   80   173 0.998  11.98
 2.12 Intr - 125220 125089  132  1  0   93   99   157 0.998  17.92
 2.11 Intr - 125390 125324   67  2  1  106   78    66 0.999   5.88
 2.10 Intr - 125612 125478  135  2  0  123  113   235 0.995  30.26
 2.09 Intr - 127181 127112   70  1  1  110   75   146 0.999  14.68
 2.08 Intr - 127451 127374   78  1  0   59   78    64 0.675   1.17
 2.07 Intr - 129489 129410   80  0  2   95   91   150 0.985  14.35
 2.06 Intr - 129899 129785  115  1  1   44  101    73 0.601   4.65
 2.05 Intr - 130150 130092   59  1  2  100   94   111 0.997  10.58
 2.04 Intr - 130634 130452  183  2  0   95   78   210 0.837  20.68
 2.03 Intr - 130856 130762   95  0  2  144  103    73 0.996  14.08
 2.02 Intr - 134415 134334   82  0  1   66   84    28 0.693  -0.59
 2.01 Init - 136598 136437  162  2  0   73   75   129 0.707   7.84
 2.00 Prom - 138965 138926   40                              -4.26

 3.09 PlyA - 139344 139339    6                               1.05
 3.08 Term - 144036 143959   78  0  0   93   36    72 0.879   0.26
 3.07 Intr - 147808 147686  123  1  0   87  102   150 0.990  17.08
 3.06 Intr - 149152 149051  102  1  0  108   94   100 0.999  12.97
 3.05 Intr - 152943 152827  117  0  0  103    1   179 0.973  11.36
 3.04 Intr - 153814 153678  137  2  2   66   86    75 0.947   5.39
 3.03 Intr - 158223 158138   86  2  2   69  105    29 0.277   2.16
 3.02 Intr - 169966 169839  128  1  2   36   78   135 0.318   6.78
 3.01 Init - 179097 179026   72  0  0  115  109   116 0.996  15.51
 3.00 Prom - 192068 192029   40                              -4.56

 4.06 PlyA - 192931 192926    6                               1.05
 4.05 Term - 194355 194122  234  0  0   77   43   389 0.871  29.62
 4.04 Intr - 195294 195166  129  0  0   99   77   157 0.999  16.59
 4.03 Intr - 196569 196484   86  1  2   79   94   122 0.990  11.44
 4.02 Intr - 200027 199934   94  2  1  109  113   180 0.999  22.14
 4.01 Intr - 200901 200757  145  2  1  129  121   232 0.997  30.88

Suboptimal exons with probability > 0.800

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

S.001 Init -  39418  39311  108  1  0   88  104    98 0.930   9.64
S.002 Init +  47097  47156   60  2  0   69   94    49 0.807   4.57


Predicted peptide sequence(s):

Predicted coding sequence(s):


>gi568815597r:16874923_17078273|GENSCAN_predicted_peptide_1|2186_aa
MMLASSNPDIYGGFQSQTSESIIPGLFKGLKAKGDNEFIRQVLVVSPGDPRATLTTIPAL
VEPPCGTQDPKMAAEAPPRPRERLGRHPIKAPSLAIIISVIGFLCGNQQESQISEFWQRS
LLIKMRKLKLREVKTLVQGHTAGEGLTLESSVLCQEKGLGARDLAQDAQITSLPALIREI
VTRNLSQPESPACCRDVNPKSRIPTRGRCELAEPKIQEEGSSAQTRVLRKSEWMAPSIRF
PLLLPATEMASLLSLQEENQLLQQELSRVEDLLAQSRAERDELAIKYNAVSERLEQALRL
EPGELETQEPRGLVRQSVELRRQLQEEQASYRRKLQAYQEGQQRQAQLVQRLQGKILQYK
KRCSELEQQLLERSGELEQQRLRDTEHSQDLESALIRLEEEQQRSASLAQVNAMLREQLD
QAGSANQALSEDIRKVTNDWTRCRKELEHREAAWRREEESFNAYFSNEHSRLLLLWRQVV
GFRRLVSEVKMFTERDLLQLGGELARTSRAVQEAGLGLSTGLRLAESRAEAALEKQALLQ
AQLEEQLRDKVLREKDLAQQQMQSDLDKADLSARVTELGLAVKRLEKQNLEKDQVNKDLT
EKLEALESLRLQEQAALETEDGEGLQQTLRDLAQAVLSDSESGVQLSGSERTADASNGSL
RGLSGQRTPSPPRRSSPGRGRSPRRGPSPACSDSSTLALIHSALHKRQLQVQDMRGRYEA
SQDLLGTLRKQLSDSESERRALEEQLQRLRDKTDGAMQAHEDAQREVQRLRSANELLSRE
KSNLAHSLQVAQQQAEELRQEREKLQAAQEELRRQRDRLEEEQEDAVQDGARVRRELERS
HRQLEQLEGKRSVLAKELVEVREALSRATLQRDMLQAEKAEVAEALTKAEAGRVELELSM
TKLRAEEASLQDSLSKLSALNESLAQDKLDLNRLVAQLEEEKSALQGRQRQAEQEATVAR
EEQERLEELRLEQEVARQGLEGSLRVAEQAQEALEQQLPTLRHERSQLQEQLAQLSGREQ
ELEQARREAQRQVEALERAAREKEALAKEHAGLAVQLVAAEREGRTLSEEATRLRLEKEA
LEGSLFEVQRQLAQLEARREQLEAEGQALLLAKETLTGELAGLRQQIIATQEKASLDKEL
MAQKLVQAEREAQASLREQRAAHEEDLQRLQREKEAAWRELEAERAQLQSQLQREQEELL
ARLEAEKEELSEEIAALQQERDEGLLLAESEKQQALSLKESEKTALSEKLMGTRHSLATI
SLEMERQKRDAQSRQEQDRSTVNALTSELRDLRAQREEAAAAHAQEVRRLQEQARDLGKQ
RDSCLREAEELRTQLRLLEDARDGLRRELLEAQRKLRESQEGREVQRQEAGELRRSLGEG
AKEREALRRSNEELRSAVKKAESERISLKLANEDKEQKLALLEEARTAVGKEAGELRTGL
QEVERSRLEARRELQELRRQMKMLDSENTRLGRELAELQGRLALGERAEKESRRETLGLR
QRLLKGEASLEVMRQELQVAQRKLQEQEGEFRTRERRLLGSLEEARGTEKQQLDHARGLE
LKLEAARAEAAELGLRLSAAEGRAQGLEAELARVEVQRRAAEAQLGGLRSALRRGLGLGR
APSPAPRPVPGSPARDAPAEGSGEGLNSPSTLECSPGSQPPSPGPATSPASPDLDPEAVR
GALREFLQELRSAQRERDELRTQTSALNRQLAEMEAERDSATSRARQLQKAVAESEEARR
SVDGRLSGVQAELALQEESVRRSERERRATLDQVATLERSLQATESELRASQEKISKMKA
NETKLEGDKRRLKEVLDASESRTVKLELQRRSLEGELQRSRLGLSDREAQAQALQDRVDS
LQRQVADSEVKAGTLQLTVERLNGALAKVEESEGALRDKVRGLTEALAQSSASLNSTRDK
NLHLQKALTACEHDRQERLDAARQALSEARKQSSSLGEQVQTLRGEVADLELQRVEAEGQ
LQQLREVLRQRQEGEAAALNTVQKLQDERRLLQERLGSLQRALAQLEAEKREVERSALRL
EKDRVALRRTLDKVEREKLRSHEDTVRLSAEKGRLDRTLTGAELELAEAQRQIQQLEAQV
VVLEQSHSPAQLEVDAQQQQLELQQEVERLRSAQAQTERTLEARERAHRQRVRGLEEQVS
TLKGQLQQELRRSSAPFSPPSGPPEK

>gi568815597r:16874923_17078273|GENSCAN_predicted_CDS_1|6561_bp
atgatgttggcctccagtaacccagatatttatgggggcttccagtcacagacctctgaa
tctataataccagggctcttcaaaggactaaaagctaaaggcgacaatgaattcattcga
caagtcctagtcgtgagccctggggacccacgagcgaccctcaccaccatccctgccctg
gtggagcccccgtgcggaacacaggatccgaagatggcagcggaagctcctccgcggccc
cgagagcgactgggcaggcaccctattaaagcgccttccttggcaataatcatctcggtg
attggctttctctgtggcaaccagcaggaatcccagatctctgaattttggcaaaggagt
ctcctgataaagatgaggaaactgaagctcagagaagtgaagacactggtgcagggtcac
acagctggtgaggggctgacactggagagcagcgtcctgtgccaggagaaaggcttgggc
gcgcgggacctggcccaggacgctcagatcaccagcctgcctgcccttatcagggagatt
gtcacccgcaacctctcccagcctgagagcccagcctgctgcagagatgtgaaccccaaa
tcccgtattcccacccggggaaggtgtgagctggctgaacccaagatacaggaagagggc
agctcagctcagaccagggttttgcggaagtctgagtggatggcgccgtccatccgtttc
ccactcctgctgccggccacagagatggcatcgctgctgtcgctgcaggaggagaaccag
ctgctgcagcaggagctgtcccgcgtggaggacctgctggcccagagccgtgccgagcgc
gatgagctcgccattaagtacaatgcggtcagcgagaggctggagcaggctctgcggctg
gagcctggggagctggagacgcaggagcccagggggctggtacggcagagcgtggagttg
cggaggcagctgcaggaggagcaggcctcctaccggcgcaagctgcaggcctaccaggag
ggccagcagcggcaggcccagcttgtgcagcggctgcagggcaagattctccagtacaag
aagaggtgctcggagctggagcagcagctgctggagagatccggagagctggagcagcag
cggctgagggacacagagcacagccaagacctggaaagcgccctcatccggctggaggag
gagcagcagaggagtgccagcctggcccaggtgaatgccatgctccgagaacagctggac
caggcaggctcggccaaccaggctctgagtgaggacatacgaaaggtgaccaatgactgg
acacgctgccgcaaggagctggagcaccgggaggcggcgtggaggcgcgaggaggagtcc
ttcaacgcctacttcagcaacgagcacagtcgcctgctcctcctctggaggcaggtggtg
gggttccggcggctggtcagcgaggtgaagatgttcactgagagggacctgctgcagctg
ggaggggagctggcccggacatcacgagctgtccaggaggcgggcctgggactgagcacg
ggcctacggctggcagagagccgggccgaggcagccctggagaaacaggccctgctgcag
gcccagctggaggagcagctgcgggacaaggtgctccgcgagaaggacctggcgcagcag
cagatgcaaagcgacctggacaaggctgacctcagtgccagagtgacagagctgggcctg
gcagtgaagcgtcttgagaagcagaatctggagaaggatcaggtcaacaaggacctcact
gagaagcttgaggccctggaatccctgcggctacaggagcaggcggccctggagacagag
gatggagaggggctacagcagaccctaagggacctggcacaggccgtcttgtcagactct
gagagcggcgtccagctgagcggctctgagcgcaccgcggatgcttccaacggcagcctg
cgggggctctcgggccagcggaccccgtccccaccgcggcgctcctcgcccggccgaggc
cgttcaccccgccgaggcccctccccggcctgctcagactcctccacgctcgccctgatc
cactccgccctgcacaagcgccagctgcaggtccaggacatgcgtgggcgctatgaggca
agccaggacctactgggcaccctgcggaagcagcttagcgacagcgagagcgagcggcgg
gccctagaggaacagctgcagcgcctgcgggacaagaccgacggcgccatgcaggcccac
gaggacgcccagcgcgaggtgcagcggctgcggagcgccaacgagctcctgagcagggag
aagagcaacctggcccacagcctgcaggtggcccagcagcaggccgaggagctgcggcag
gagcgggagaagctgcaggctgcccaggaggagctgcggcgccagcgggaccggctggag
gaagagcaggaggacgcagtgcaggatggcgcgcgggtgcgccgggagcttgagcgcagc
catagacaactagagcagctggaagggaagcgctcagtcctggccaaggagctggtggag
gtgagggaggcgctgagccgcgccacactgcaacgggacatgctgcaggccgagaaggcc
gaggtggccgaggcgctgaccaaggctgaggctggccgcgtggagctcgagctctccatg
accaagctgagggcagaggaggcctccctgcaggactccctgtccaagctgagcgccctc
aacgagagccttgctcaggacaagttggatctgaaccgccttgtcgcccagctggaggaa
gaaaagtccgccctgcagggccggcaacggcaggcagagcaggaggccacagtggcgcgg
gaagagcaggaacggctagaggagctgcggttggagcaggaggtggcgcggcagggcctg
gagggctccctacgagtggcggagcaggcccaggaggcattggagcagcagctccccacg
ctgcgccatgagcgcagccagctgcaggagcagctagcgcagctgagcgggcgggagcag
gagctggagcaggcccggcgggaggcccagcggcaagtggaggcgctggagcgagcggcc
cgtgagaaggaggcgctagccaaggagcacgctggcctggctgtgcagctggtggctgcg
gagcgtgaaggcaggaccctgtcagaggaggccacacgcctgcgcttggagaaggaagcc
ctggagggcagcctgtttgaggtgcaacggcagctggcccagcttgaggcccgccgggag
cagctggaagccgaggggcaggccctgctgctggccaaggagaccctgactggggagttg
gcgggcctgcggcagcaaataatagctacacaggagaaagccagtctagacaaggagctg
atggcccagaagctggtgcaggctgagcgggaggcccaggcctctctgcgggagcagcgg
gcagctcacgaggaggacttacagcgactccagcgtgaaaaggaggcagcatggcgggag
ctggaggccgagcgggcccagctgcagagtcagctgcagcgtgagcaggaggagctgctg
gcccggctggaggctgagaaggaagagctgagtgaggagattgctgccctgcagcaggag
cgcgacgagggcctcctcctagcagagagtgagaagcagcaggccttgtctctgaaggag
tctgagaagacggcgctgtcagagaagttgatgggtacacggcacagcctggccaccatc
tccctggagatggagcggcagaaacgagatgcccagagccggcaggagcaggaccggagc
accgtgaacgctctgacgtctgagctgcgggacctacgggcccagcgggaggaggctgct
gcggcccacgcccaggaggtgaggaggctgcaagagcaggcccgagacctgggcaagcag
cgggactcctgtcttcgcgaggcagaagagcttcggacccagctgcgtctgctggaggat
gcccgtgacgggctgcggcgggagctgctggaggcccagcgcaagctgcgtgagagccag
gagggccgggaggtgcagcgccaggaggcaggcgagctgcgacgcagcctgggcgagggt
gccaaggagcgcgaggccctgcggcgttccaatgaggagcttcggtctgctgtgaagaag
gcagagagcgagcgcatcagcctgaagcttgccaatgaggacaaggagcagaagctggca
ctcctagaggaggcacggacagctgtgggcaaggaggccggggagctgcgaactgggctg
caggaggtggagcgctcacggctggaggctcggcgggagctgcaggagctccggcgtcag
atgaagatgctggacagtgagaacaccagactgggccgggagctggcggagctgcagggc
cgcctggcgctgggcgagcgggcagagaaggagagcaggcgggagaccctgggcctccgg
cagaggctgctgaagggcgaggccagcctggaggtgatgcggcaggagctccaggtagcc
cagcggaagctgcaggaacaagaaggcgagttccggacccgcgagcgacgcctgctgggc
tccctggaggaggcgcgtggcactgaaaagcagcagctggaccacgcccgcggcctggag
ctgaagctggaggcggcgcgggccgaggctgcagagctgggcctgcggctgagcgcagcc
gagggccgggcacaaggcctggaggccgagctggcccgcgtggaggtgcagcggcgcgcg
gcggaggcccagctgggtggcctgcgctcggctctgcgccggggcctcggcctcggtcgc
gcgcccagcccagccccgcggccagtgcccggttcccctgcccgggacgcacccgcagaa
ggaagcggggaagggctcaacagccccagcaccttagaatgcagccctgggtcccagcca
ccatctccaggacctgccacctccccagcctctccagacctggacccggaggcagtgcgc
ggggccctccgggaattcctgcaagagctgcggagtgcccagagagaacgggacgaactt
cggacccagaccagtgccctgaatcgccagctggccgagatggaggctgagagggacagc
gcaacctcgagggccaggcagctgcagaaggcggtggctgagagtgaggaagcccggcgc
agtgtggatgggcggctgagcggggtccaggcggagctggcgctgcaggaggagagtgtg
cggcgcagtgagcgggagcgccgggccacgctggaccaggtggccacactggagaggagc
ctgcaggccaccgagagcgagctccgggccagccaggagaagatcagcaagatgaaggcc
aatgagacaaagctggagggcgacaagcggcgcctgaaggaggttctggacgcctccgag
agccgcactgtcaagctggagctgcagcggcgctcgcttgagggggagctgcagcgcagc
cgcctgggcctcagtgaccgcgaggcccaagcccaggccctccaggatcgggtggattcc
ctgcagagacaggtggccgacagcgaggtgaaggcagggaccctgcagctgaccgtggag
cggctgaatggggccctggctaaggtggaggaaagcgagggggccctgcgggacaaggtg
cggggcctgacagaggccctggcccagagcagtgccagcctcaacagcacccgggacaag
aacctgcatctgcagaaggctctgaccgcctgtgaacatgaccgccaagaacggctggat
gccgcccggcaggcattatctgaggcacggaagcagagcagctccctgggcgagcaggtg
cagacgttgcgaggcgaggtggctgacctggaactgcagcgggtggaggccgagggccag
ctacaacagctacgggaggtgctgcggcagcggcaggagggtgaggctgcagccctgaac
accgtccagaagctgcaagacgagcggcggctgctgcaggagcgcctgggaagcctgcag
cgcgccctggctcagctggaagctgagaagcgggaggtggagcgctcagccctgcggctg
gagaaggaccgtgtagccctcaggaggacgctggacaaggtggagcgggagaagcttcgt
agccatgaggacacagtgcggctgagcgcagagaagggccgcctggaccgcaccctcacg
ggggctgagctggagctggcagaggcgcagaggcagatccagcagctggaggcgcaggtg
gtggtgctggagcagagccacagcccggcccagctggaggtggatgcgcagcagcagcag
ctggagctgcagcaggaggtggagcggctgcgcagcgcccaggcgcagactgagcgcacc
ctggaggctcgggagcgggcccaccgccagagggtgcgtgggctggaggagcaggtgtcc
acactgaagggccagctgcagcaggagcttcgaaggagctcagcacccttctccccaccc
tccggccccccagagaaatga

>gi568815597r:16874923_17078273|GENSCAN_predicted_peptide_2|1528_aa
MAPPLAAGPSPPLHPSAAGLEAGRLCKRVLGPCGDGEATPRPLNRIPPRVTDVQLCCVQE
TDIHSFSQSVNQCFLTPEHMADSSPLVGSTPTGYGTLTIGTSIDPLSSSVSSVRLSGYCG
SPWRVIGYHVVVWMMAGIPLLLFRWKPLWGVRLRLRPCNLAHAETLVIEIRDKEDSSWQL
FTVQVQTEAIGEGSLEPSPQSQAEDGRSQAAVGAVPEGAWKDTAQLHKSEEAKRVLRYYL
FQGQRYIWIETQQAFYQVSLLDHGRSCDDVHRSRHGLSLQDQMVRKAIYGPNVISIPVKS
YPQLLVDEALNPYYGFQAFSIALWLADHYYWYALCIFLISSISICLSLYKTRKQSQTLRD
MVKLSMRVCVCRPGGEEEWVDSSELVPGDCLVLPQEGGLMPCDAALVAGECMVNESSLTG
ESIPVLKTALPEGLGPYCAETHRRHTLFCGTLILQARAYVGPHVLAVVTRTGFCTAKGGL
VSSILHPRPINFKFYKHSMKFVAALSVLALLGTIYSIFILYRNRVPLNEIVIRALDLVTV
VVPPALPAAMTVCTLYAQSRLRRQGIFCIHPLRINLGGKLQLVCFDKTGTLTEDGLDVMG
VVPLKGQAFLPLVPEPRRLPVGPLLRALATCHALSRLQDTPVGDPMDLKMVESTGWVLEE
EPAADSAFGTQVLAVMRPPLWEPQLQAMEEPPVPVSVLHRFPFSSALQRMSVVVAWPGAT
QPEAYVKGSPELVAGLCNPETVPTDFAQMLQSYTAAGYRVVALASKPLPTVPSLEAAQQL
TRDTVEGDLSLLGLLVMRNLLKPQTTPVIQALRRTRIRAVMVTGDNLQTAVTVARGCGMV
APQEHLIIVHATHPERGQPASLEFLPMESPTAVNGVKDPDQAASYTVEPDPRSRHLALSG
PTFGIIVKHFPKLLPKVLVQGTVFARMAPEQKTELVCELQKLQYCVGMCGDGANDCGALK
AADVGISLSQAEASVVSPFTSSMASIECVPMVIREGRCSLDTSFSVFKYMALYSLTQFIS
VLILYTINTNLGDLQFLAIDLVITTTVAVLMSRTGPALVLGRVRPPGALLSVPVLSSLLL
QMVLVTGVQLGGYFLTLAQPWFVPLNRTVAAPDNLPNYENTVVFSLSSFQYLILAAAVSK
GAPFRRPLYTNVPFLVALALLSSVLVGLVLVPGLLQGPLALRNITDTGFKLLLLGLVTLN
FVGAFMLESVLDQCLPACLRRLRPKRASKKRFKQLERELAEQPWPPLPAGPLRKGKKEPL
VVEASHGPELSSVGEEGAGLREAAGLAGEAEGKPRQESVLEAGRRQREIEAYFLAEGPRD
AGESGVGEAAAVEEARAVLSDTTPACLFVAMRAAYLFLLFLPAGLLAQGQYDLDPLPPFP
DHVQYTHYSDQIDNPDYYDYQEVTPRPSEEQFQFQSQQQVQQEVIPAPTPDCREEQYPCT
RLYSIHRPCKQCLNEVCFYSLRRVYVINKEICVRTVCAHEELLRVPAPPPYPPAPALPCP
ERCVMTVYARMRVVGIAREMEGFRDTAF

>gi568815597r:16874923_17078273|GENSCAN_predicted_CDS_2|4587_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
caacaggaagtcatcccagccccaaccccagactgccgtgaggaacagtacccgtgcacc
cgcctctactccatacacaggccttgcaaacagtgtctcaacgaggtctgcttctacagc
ctccgccgtgtgtacgtcattaacaaggagatctgtgttcgtacagtgtgtgcccatgag
gagctcctccgagtcccagccccaccgccttacccgccggctccagctctgccctgccca
gaacgctgcgtcatgacagtgtacgcgcgcatgcgtgttgtgggaattgcacgggagatg
gaaggcttcagggacacagctttctga

>gi568815597r:16874923_17078273|GENSCAN_predicted_peptide_3|280_aa
MAAVVALSLRRRLPATTLGGACLQASRGAQTAAATAPRIKKFAIYRWDPDKAGDKPHMQT
YEVDLNKCGPMVLDALIKIKNEVDSTLTFRRSCREGICGSCAMNINGGNTLACTRRIDTN
LNKVSKIYPLPHMYVIKDLVPDLSNFYAQYKSIEPYLKKKDESQEGKQQYLQSIEEREKL
DGLYECILCACCSTSCPSYWWNGDKYLGPAVLMQAYRWMIDSRDDFTEERLAKLQDPFSL
YRCHTIMNCTRTCPKGLNPGKAIAEIKKMMATYKEKKASV

>gi568815597r:16874923_17078273|GENSCAN_predicted_CDS_3|843_bp
atggcggcggtggtcgccctctccttgaggcgccggttgccggccacaacccttggcgga
gcctgcctgcaggcctcccgaggagcccagacagctgcagccacagctccccgtatcaag
aaatttgccatctatcgatgggacccagacaaggctggagacaaacctcatatgcagact
tatgaagttgaccttaataaatgtggccccatggtattggatgctttaatcaagattaag
aatgaagttgactctactttgaccttccgaagatcatgcagagaaggcatctgtggctct
tgtgcaatgaacatcaatggaggcaacactctagcttgcacccgaaggattgacaccaac
ctcaataaggtctcaaaaatctaccctcttccacacatgtatgtgataaaggatcttgtt
cccgatttgagcaacttctatgcacagtacaaatccattgagccttatttgaagaagaag
gatgaatctcaggaaggcaagcagcagtatctgcagtccatagaagagcgtgagaaactg
gacgggctctacgagtgcattctctgtgcctgctgtagcaccagctgccccagctactgg
tggaacggagacaaatatctggggcctgcagttcttatgcaggcctatcgctggatgatt
gactccagagatgacttcacagaggagcgcctggccaagctgcaggacccattctctcta
taccgctgccacaccatcatgaactgcacaaggacctgtcctaagggtctgaatccaggg
aaagctattgcagagatcaagaaaatgatggcaacctataaggagaagaaagcttcagtt
taa

>gi568815597r:16874923_17078273|GENSCAN_predicted_peptide_4|229_aa
XSGGRRMTKVVRDFLKAQQVQAPVELYSDWLTVGHVDEFMSFVPIPGTKKFLLLMASTSA
CYKLFREKQKDGHGEAIMFKGLGGMSSKRITINKILSNESLVQENLYFQRCLDWNRDILK
KELGLTEQDIIDLPALFKMDEDHRARAFFPNMVNMIVLDKDLGIPKPFGPQVEEECCLEM
HVRGLLEPLGLECTFIDDISAYHKFLGEVHCGTNVRRKPFTFKWWHMVP

>gi568815597r:16874923_17078273|GENSCAN_predicted_CDS_4|690_bp
nngtctggtggtcggaggatgaccaaggtggtgcgtgacttcctgaaggcccagcaggtg
caggcgcccgtggagctctactcagactggctgactgtgggccacgtggatgagttcatg
tcctttgtccccatccccggcacaaagaaattcctgctactcatggccagcacctcggcc
tgctacaagctcttccgagagaagcagaaggacggccatggagaggccatcatgttcaaa
ggcttgggtgggatgagcagcaagcgaatcaccatcaacaagattctgtccaacgagagc
cttgtgcaggagaacctgtacttccagcgctgcctagactggaaccgtgacatcctcaag
aaggagctgggactgacagagcaggacatcattgacctgcccgctctgttcaagatggac
gaggaccaccgtgccagagccttcttcccaaacatggtgaacatgatcgtgctggacaag
gacctgggcatccccaagccattcgggccacaggttgaggaggaatgctgcctggagatg
cacgtgcgtggcctcctggagcccctgggcctcgaatgcaccttcatcgacgacatttct
gcctaccacaaatttctgggggaagtccactgtggcaccaacgtccgcaggaagcccttc
accttcaagtggtggcacatggtgccctga
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