Result of GENSCAN for pF1KE5380
GENSCAN 1.0	Date run:  8-Nov-116	Time: 00:14:00

Sequence gi568815597f:1_170005 : 170005 bp : 42.78% C+G : Isochore 1 ( 0 - 43 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..
----- ---- - ------ ------ ---- -- -- ---- ---- ----- ----- ------

 1.18 PlyA -  11731  11726    6                              -0.45
 1.17 Term -  12075  11911  165  0  0   85   47    87 0.407   1.23
 1.16 Intr -  12392  12301   92  0  2  107   91    54 0.641   6.39
 1.15 Intr -  13529  13141  389  1  2   41   91   218 0.256  10.91
 1.14 Intr -  14162  13965  198  1  0  -22   81   175 0.288   3.34
 1.13 Intr -  14829  14700  130  1  1   91   19   226 0.597  14.83
 1.12 Intr -  15038  14970   69  0  0   92   53    77 0.840   2.84
 1.11 Intr -  15891  15796   96  1  0   31  105   197 0.989  14.76
 1.10 Intr -  16765  16607  159  2  0   74   75   102 0.951   6.54
 1.09 Intr -  17055  16854  202  0  1  128   71   238 0.998  24.04
 1.08 Intr -  17364  17233  132  0  0   16   75   129 0.803   4.32
 1.07 Intr -  17742  17578  165  0  0   65  -17   163 0.313   2.74
 1.06 Intr -  18061  17915  147  1  0  131   46   127 0.999  12.31
 1.05 Intr -  18379  18268  112  0  1   93   61   119 0.995   9.16
 1.04 Intr -  18637  18501  137  1  2   45   58   116 0.824   2.75
 1.03 Intr -  19075  18913  163  0  1   -8   94   167 0.034   6.76
 1.02 Intr -  19933  19751  183  0  0   47    2   156 0.024   0.88
 1.01 Init -  24886  24738  149  1  2  107   94   242 0.913  26.31
 1.00 Prom -  25610  25571   40                             -13.20

 2.00 Prom +  25684  25723   40                              -8.55
 2.01 Init +  25741  25743    3  0  0   52   91     0 0.228  -3.25
 2.02 Intr +  28718  29206  489  1  0   19   45   201 0.252   1.17
 2.03 Intr +  29247  29727  481  2  1   73   45   343 0.920  20.18
 2.04 Intr +  30564  30781  218  1  2   97   74   138 0.463  10.60
 2.05 Intr +  34877  35050  174  1  0   65   90   154 0.090  12.51
 2.06 Intr +  62916  62972   57  2  0  121   52    38 0.088   1.66
 2.07 Intr +  69037  69679  643  0  1  128   42   183 0.250   8.36
 2.08 Intr +  74913  76718 1806  1  0   73   77   589 0.143  42.67
 2.09 Intr +  88962  89138  177  1  0  135   42    72 0.906   6.27
 2.10 Intr +  90341  90479  139  0  1   67  110   118 0.935  10.50
 2.11 Intr +  92820  92857   38  0  2   60   98    21 0.124  -2.71
 2.12 Intr + 104636 104784  149  0  2   76   18   132 0.148   4.03
 2.13 Intr + 131241 131501  261  2  0   81   42   178 0.477   9.26
 2.14 Intr + 131588 132002  415  1  1  -10   21   439 0.254  20.15
 2.15 Intr + 132014 132299  286  0  1   55   68   229 0.531  13.08
 2.16 Intr + 132601 132829  229  1  1   61   16   194 0.902   6.45
 2.17 Intr + 133135 133316  182  0  2   93   76   151 0.983  12.14
 2.18 Intr + 133414 133592  179  1  2   88   52    81 0.560   3.14
 2.19 Intr + 134414 134623  210  0  0   96  109    83 0.840   9.16
 2.20 Term + 134763 134833   71  1  2   43   41    77 0.476  -4.38
 2.21 PlyA + 134851 134856    6                               1.05

 3.07 PlyA - 134962 134957    6                              -3.94
 3.06 Term - 139679 138530 1150  1  1   49   42   299 0.400  11.79
 3.05 Intr - 139847 139790   58  0  1   87  101    24 0.325   0.62
 3.04 Intr - 143765 143578  188  1  2   67   73   101 0.497   4.91
 3.03 Intr - 144176 144050  127  0  1   37   50    79 0.057  -2.18
 3.02 Intr - 146509 146386  124  1  1   99  115   -16 0.151   1.44
 3.01 Init - 153449 153354   96  2  0   71  115    53 0.474   6.69
 3.00 Prom - 157964 157925   40                              -5.45

 4.04 PlyA - 159739 159734    6                               1.05
 4.03 Term - 162489 162406   84  0  0   99   38   107 0.923   3.47
 4.02 Intr - 168204 168100  105  0  0   46   80   111 0.633   5.59
 4.01 Intr - 169795 169686  110  2  2   53   75    59 0.345   0.18

Suboptimal exons with probability > 0.800

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

S.001 Sngl +  79850  80458  609  1  0   89   36   214 0.900  12.24


Predicted peptide sequence(s):

Predicted coding sequence(s):


>gi568815597f:1_170005|GENSCAN_predicted_peptide_1|895_aa
MTPVRMQHSLAGQTYAVPFIQPDLRREEAVQQMADALQYLQKVSGDIFSRAYAPTEGRVS
TQGRTRLPWELGSIKTACAGGPFTADEGLSPARKDGAHAGWWSRFLTGRRCIRHLGLGHQ
EPATGMSGEMAFHEMQAHKNALGTSGEQQAADITGPTPHQGGWKQIACTGGSIGPVPTES
AGNSAPSTPRPCRSDYPCRGPLDGTKIGPGKISQQVEQSRSQVQAIGEKVSLAQAKIEKI
KGSKKAIKVFSSAKYPAPGRLQEYGSIFTGAQDPGLQRRPRHRIQSKHRPLDERALQEKL
KDFPVCVSTKPEPEDDAEEGLGGLPSNISSVSSLLLFNTTENLYGQRAGPRGKKYVFLDP
LAGAVTKTHVMLGAETEEKLFDAPLSISKREQLEQQVPENYFYVPDLGQVPEIDVPSYLP
DLPGIANDLMYIADLGPGIAPSAPGTIPELPTFHTEVAEPLKVDLQDGVLTPPPPPPPPP
PAPEVLASAPPLPPSTAAPVGQGARQDDSSSSASPSESIRQAGGIGKAKLRSMKERKLEK
QQQKEQEQVRATSQGGHLMSDLFNKLVMRRKGISGKGPGAGEGPGGAFARVSDSIPPLPP
PQQPQAEEDEDDWESHAESLMALGTIAGVGVEDVLEFAQVVEREGGAIDLEELAPSQGDR
NPGKAVGQVREQGCRNDSGRSGQSKGRAQRQAVVQLPVRKRPTSGETGQTKGSEKCDLGV
VEALGKGKGRSELPHSSNGRTKGGFDLHQGSDPGQQRVQDRVPGVSLVQEHYAGRIPLVP
DGPAFVGTEAKALSYSCLPNSASPSPSSASGPKPDLLSPSLQPAGLSSHSPALGSDGSRR
QENSTPVLSLHPGTGQQLLEVRHLQMKTTASRPCDLSKARWKGHGKSGLRDSKYT

>gi568815597f:1_170005|GENSCAN_predicted_CDS_1|2688_bp
atgactcctgtgaggatgcagcactccctggcaggtcagacctatgccgtgcccttcatc
cagccagacctgcggcgagaggaggccgtccagcagatggcggatgccctgcagtacctg
cagaaggtctctggagacatcttcagcagagcttatgcacctaccgaaggtcgtgtcagc
acccaaggcagaacgaggctgccctgggaactagggtcaattaagacagcttgtgctgga
ggaccctttacagcagatgaaggcctctccccagccagaaaagatggagcacacgctggg
tggtggtcccgcttcctcactggaaggagatgcatcagacacttgggcctcgggcatcag
gagccagccacagggatgtctggggaaatggcgttccatgagatgcaagcacacaagaat
gcacttggcacatctggggaacagcaggcagctgatatcactgggcccaccccgcaccag
ggaggatggaagcagatagcatgtacaggtggcagcatagggcctgtccctactgagagt
gcagggaactcagcaccgtcaactcctcgaccctgcaggtcagattatccttgtagaggc
cccctggatggcaccaagatcggccctggcaagatctcccagcaggtagagcagagccgg
agccaggtgcaggccattggagagaaggtctccttggcccaggccaagattgagaagatc
aagggcagcaagaaggccatcaaggtgttctccagtgccaagtaccctgctccagggcgc
ctgcaggaatatggctccatcttcacgggcgcccaggaccctggcctgcagagacgcccc
cgccacaggatccagagcaagcaccgccccctggacgagcgggccctgcaggagaagctg
aaggactttcctgtgtgcgtgagcaccaagccggagcccgaggacgatgcagaagaggga
cttgggggtcttcccagcaacatcagctctgtcagctccttgctgctcttcaacaccacc
gagaacctgtatggccagagggcagggccgaggggtaagaagtatgtcttcctggacccc
ctggctggtgctgtaacaaagacccatgtgatgctgggggcagagacagaggagaagctg
tttgatgcccccttgtccatcagcaagagagagcagctggaacagcaggtcccagagaac
tacttctatgtgccagacctgggccaggtgcctgagattgatgttccatcctacctgcct
gacctgcccggcattgccaacgacctcatgtacattgccgacctgggccccggcattgcc
ccctctgcccctggcaccattccagaactgcccaccttccacactgaggtagccgagcct
ctcaaggtagacctacaagatggggtactaacaccacccccaccgcccccaccaccaccc
ccagctcctgaggtgctggccagtgcacccccactcccaccctcaaccgcggcccctgta
ggccaaggcgccaggcaggacgacagcagcagcagcgcgtctccttcagagtccatccgc
caagctgggggcatcggcaaggccaagctgcgcagcatgaaggagcgaaagctggagaag
cagcagcagaaggagcaggagcaagtgagagccacgagccaaggtgggcacttgatgtcg
gatctcttcaacaagctggtcatgaggcgcaagggcatctctgggaaaggacctggggct
ggtgaggggcccggaggagcctttgcccgcgtgtcagactccatccctcctctgccgcca
ccgcagcagccacaggcagaggaggacgaggacgactgggaatctcatgctgagagccta
atggcccttggcacaattgctggtgttggggtagaagatgtcttggagtttgctcaagtg
gttgagagggagggaggtgccatcgacttggaggaactggcaccaagccagggagataga
aatccaggcaaggctgtggggcaggttagggagcaaggctgcaggaatgactcaggaaga
agcgggcagagcaaaggaagggcacagcgccaggcagtggtgcagctgcctgtcaggaag
aggcctacttctggtgaaactgggcagacaaaaggcagtgagaaatgtgatctcggggtg
gtggaggctctagggaaaggaaaaggcaggagtgaacttccacacagcagcaatggcaga
accaaaggtggctttgacctccaccagggctcagatccaggccaacagcgtgtccaggac
agggtgccgggtgtatcactggtccaggagcactatgctggcagaatccctttggtgcct
gatggccctgccttcgtgggaacagaggctaaggctttgagttacagctgcctccccaac
agtgcatccccttctccttcctcagcctcagggccaaagccagacctgctgagcccctcc
ctccagccggctggtctgagcagtcacagcccggctttgggctccgatggcagcagacgg
caggaaaactccactccagtgctcagcttgcaccctggcacaggccagcagttgctggaa
gtcagacacctgcagatgaagaccacagcatcaagaccctgtgacctctcaaaggcccgg
tggaaaggacacgggaagtctgggctaagagacagcaaatacacatga

>gi568815597f:1_170005|GENSCAN_predicted_peptide_2|2068_aa
MENADTARLFGTAVYTFEVLGALPPDRSPTPRSRVSPGVTSLAVGPGNPTRCQRSGVPYE
GPGAPGGQQLRKSRARLPRTRQGREDAGVGRRNRDPAEPGSLRPTSLGFPARAGQGRVQG
AAPGRKLRGEPKTPPGRSGPSGGVRSGAGHRAAAAEHQLGAGFSPLRVPYFAPPGPHDPT
SRGPGRLLTCEPPSRKLPPPLPLCRSRWVLAPPPPVRPRLRVLTPPLALHCALPERGSRT
PSTRSAVLSGRVAGLGTELTLTPSSRRAHGSHALSSERQAAPTRAFCSADPLPRPPSFVP
SLPSPQAQGQAVRQPRLLRAALARVLSAFPASSSGGVRSSCNKNMPLSRWLQRVVPLPEV
KKRWISTHVVDRMFMSSPNAYVETLTPNVMVCGDGPLGQLGNTVWLSTQEEEQPVSAADD
QEVEKMFSQAGSGNRQDHKQLGASERERGGGETREVASESSLLSDSVDQVNDSLVTAEAI
SWNESTSETNNSMVTEFIFLGLSDSQELQTFLFMLFFVFYGGIVFGNLLIVITVVSDSHL
HSPMYFLLANLSLIDLSLSSVTAPKMITDFFSQRKVISFKGCLVQIFLLHFFGGSEMVIL
IAMGFDRYIAICKPLHYTTIMCGNACVGIMAVTWGIGFLHSVSQLAFAVHLLFCGPNEVD
SFYCDLPRVIKLACTDTYRLDIMVIANSEIQTTIREYYKHLYANKLENLEEMDKFLDTYT
LPSLNQEEVESLNRPITEAEIVAIINSLPTKKSPGPDGFTAEFYQRYKEELVPFLLKLFQ
SIEKEGVLPNSFYEASIILIPKPGRDTTKKENFRPISLMNIDAKILNKILAKRIQQHIKK
LIHQDQVGFIPGMQGWFNIRKSINVIQHINRAKDKNHMIISIDAEKAFDKIQQPFMLKTL
NKLGIDGTYFKIIRAIYDKPTANIILNGQKLEAFPLKTGTRQGCPLSPLLFNIVLEVLAR
AIRQEKEIKGIQLGKEEVKLSLFADDMIVYLENPIVSAQNLPKLISNFSKVSGYKINVQK
SQAFLYTNNRQTESQTMSELPFTIVSKRIKYLGIQLTRDVKDLFKENYKSLLKEIKEDTK
KWKNIPCSWVGRINIVKMAILPKVIYRFNAIPIKLPMTFFTELEKTTLKFIWNQKRACIA
KSILSQKNKAGGITLPDFKLYDKATVTKTAWYWYQNRDIDQWNRTEPSEIMPHIYNYLIF
DKPEKNKQWGKDSLFNKWCWENWLAICRKLKLDPFLTPYTKINSRWIKDLNVRPQTIKTL
EENLGFTIQDIGMGKDFMSKTPREALLCIVASPRTCLMWSHLGTHIATPLPVGVPTVIHT
VHSCLSGLCANITFSVETTPSGLRLCLAHINLLLPGGRQSLCPSVSANQLTCCFLEEDSH
SVSANPVDRRHAGLLRAGGVEGQKQVGEDPNTLGGHVQYEYLTEKEIYTREVHLQKASWH
VNHSKTQGVLDKEDSGRQPHEAQQPASHSVASNQRKQPAKLAAVAHERPPGGTGSVDPGR
PPGATCPESPGPATPHTLGLVEPGKSSPPTMEEEPWAPQGSPCWTAQSLSALRKEQDSSS
EKDGRSPNKSDKDHIRWPMSGAHDLQQAAPGPGGAHQGHPNQDNRTVSQMLSERWYTLGP
NEMQKYNLAFQVKVAHLQQGPKEVQLRGQAHKPGASRSVTRARGSGAYQRRALPLPLGCP
LNSSQTLQSSDTKEQLLWGRTAAHSQGTWLSLAQAFSHSGVHSLDGREIDRQALRELTQV
VSGTASYSGPKPSTQHGAPGHFAAPGEGGDPWAALLPPTFWQSMVTPCPPPTHTRMLPPQ
PWHPPPSYWAQEPSKPRSLVNAAERAPYGPNPWGWGPRDAFQGGLFPPNGSCHLLVEKPR
TGSGNRRPRRRCPLHCMYPGPVPALIMQLFQAHCFFLSTRPQPPSRPTMHTSSPPSASAR
ESREAESRGRGSSGASWGAVQWEEPQPRRLLRGTDDCMIFWAPHGSSTAGETDAGAVPGE
SWAVSLLRAPVHTMNCGTFRAFHFSENSSCWGYKMECEEGLGPQGGACGLGGVHAPLLSP
EGLDSEHVDRGRYFSLCQKVAMTVIKPV

>gi568815597f:1_170005|GENSCAN_predicted_CDS_2|6207_bp
atggaaaatgcagacacagcacgcctctttgggaccgcggtttatactttcgaagtgctc
ggagcccttcctccagaccgttctcccacaccccgctccagggtctctcccggagttaca
agcctcgctgtaggccccgggaacccaacgcggtgtcagagaagtggggtcccctacgag
ggaccaggagctccgggcgggcagcagctgcggaagagccgcgcgaggcttcccagaacc
cggcaggggcgggaagacgcaggagtggggaggcggaaccgggaccccgcagagcccggg
tccctgcgccccacaagccttggcttccctgctagggccgggcaaggccgggtgcagggc
gcggctccagggaggaagctccggggcgagcccaagacgcctcccgggcggtcggggccc
agcggcggcgttcgcagtggagccgggcaccgggcagcggccgcggaacaccagcttggc
gcaggcttctcgcccctccgggtcccctacttcgccccgccaggcccccacgaccctact
tcccgcggccccggacgcctcctcacctgcgagccgccctcccggaagctcccgccgccg
cttccgctctgccggagccgctgggtcctagccccgccgcccccagtccgcccgcgcctc
cgggtcctaacgccgccgctcgccctccactgcgccctccccgagcgcggctccaggacc
ccgtcgacccggagcgctgtcctgtcgggccgagtcgcgggcctgggcacggaactcacg
ctcactccgagctcccgacgtgcacacggctcccatgcgttgtcttccgagcgtcaggcc
gcccctacccgtgctttctgctctgcagaccctcttcctagacctccgtcctttgtccca
tcgctgccttcccctcaagctcagggccaagctgtccgccaacctcggctcctccgggca
gccctcgcccgggttttgtccgccttccctgcctcctcttctgggggagttagatcgagt
tgtaacaagaacatgccactgtctcgctggctgcagcgtgtggtccccttaccagaggta
aagaagagatggatctccactcatgttgtagacagaatgtttatgtcctctccaaatgct
tatgttgaaaccctaacccctaatgtgatggtatgtggagatgggcctttggggcagctg
ggaaatacagtctggctgtctacccaggaggaagagcagccagtttctgctgctgatgat
caggaggtggagaaaatgttcagtcaggcagggagtgggaatagacaagaccacaagcag
cttggtgcctctgaaagggagaggggtggaggggagactagagaggttgcttcagagtct
tcccttctatctgattcagtggaccaagtaaatgactctctggtaactgcagaggctatt
tcctggaatgaatcaacgagtgaaacgaataactctatggtgactgaattcatttttctg
ggtctctctgattctcaggaactccagaccttcctatttatgttgttttttgtattctat
ggaggaatcgtgtttggaaaccttcttattgtcataacagtggtatctgactcccacctt
cactctcccatgtacttcctgctagccaacctctcactcattgatctgtctctgtcttca
gtcacagcccccaagatgattactgactttttcagccagcgcaaagtcatctctttcaag
ggctgccttgttcagatatttctccttcacttctttggtgggagtgagatggtgatcctc
atagccatgggctttgacagatatatagcaatatgcaagcccctacactacactacaatt
atgtgtggcaacgcatgtgtcggcattatggctgtcacatggggaattggctttctccat
tcggtgagccagttggcgtttgccgtgcacttactcttctgtggtcccaatgaggtcgat
agtttttattgtgaccttcctagggtaatcaaacttgcctgtacagatacctacaggcta
gatattatggtcattgctaacagtgaaatacaaactaccatcagagaatactacaaacac
ctctacgcaaataaactagaaaatctagaagaaatggataaattcctggacacatacact
ctcccaagcctaaaccaggaagaagttgaatctctgaatagaccaataacagaagctgaa
attgtggcaataatcaatagcttaccaaccaaaaagagtccaggaccagatggattcaca
gccgaattctaccagaggtacaaggaggaactggtaccattccttctgaaactattccaa
tcaatagaaaaagagggagtcctccctaactcattttatgaggccagcatcattctgata
ccaaagccaggcagagacacaacaaaaaaagagaattttagaccaatatccttgatgaac
attgatgcaaaaatcctcaataaaatactggcaaaacgaatccagcagcacatcaaaaag
cttatccaccaagatcaagtgggcttcatccctgggatgcaaggctggttcaatatacgc
aaatcaataaatgtaatccagcatataaacagagccaaagacaaaaaccacatgattatc
tcaatagatgcagaaaaggcctttgacaaaattcaacaacccttcatgctaaaaactctc
aataaattaggtattgatgggacgtatttcaaaataataagagctatctatgacaaaccc
acagccaatatcatactgaatgggcaaaaactggaagcattccctttgaaaactggcaca
agacagggatgccctctctcaccactcctattcaacatagtgttggaagttctggccagg
gcaattaggcaggagaaggaaataaagggtattcagttaggaaaagaggaagtcaaattg
tccctgtttgcagacgacatgattgtatatctagaaaaccccattgtctcagcccaaaat
cttcctaagctgataagcaacttcagcaaagtctcaggatacaaaatcaatgtacaaaaa
tcacaagcattcttatacaccaacaacagacaaacagagagccaaaccatgagtgaactc
ccattcacaattgtttcaaagagaataaaatacctaggaatccaacttacaagggacgtg
aaggacctcttcaaggagaactacaaatcactgctcaaggaaataaaagaggatacaaag
aaatggaagaacattccatgctcatgggtaggaagaatcaatatcgtgaaaatggccata
ctgcccaaggtaatttacagattcaatgccatccccatcaagctaccaatgactttcttc
acagaattggaaaaaactactttaaagttcatatggaaccaaaaaagagcctgcattgcc
aagtcaatcctaagccaaaagaacaaagctggaggcatcacgctacctgacttcaaacta
tacgacaaggctacagtaaccaaaacagcatggtactggtaccaaaacagagatatagat
caatggaacagaacagagccctcagaaataatgccgcatatctacaactatctgatcttt
gacaaacctgagaaaaacaagcaatggggaaaggattccctatttaataaatggtgctgg
gaaaactggctagccatatgtagaaagctgaaactggatcccttccttacaccttataca
aaaatcaattcaagatggattaaagacttaaacgttagacctcaaaccataaaaacccta
gaagaaaacctaggctttaccattcaggacataggcatgggcaaggacttcatgtctaaa
acaccgagagaggcactcttatgcattgttgctagtcctcgaacatgtctgatgtggtcc
caccttgggacccacattgctactcctctgcctgtaggggtacccacagttatccacaca
gttcactcctgtctttcaggtctttgtgcaaatatcaccttctcagtggagactacacct
tcaggacttaggctgtgcctggcacatattaacctgctgcttcctggaggaagacagtcc
ctctgtccctctgtctctgccaaccagttaacctgctgcttcctggaggaagacagtcac
tctgtctctgccaacccagttgaccgcagacatgcaggtctgctcagagctggtggggtg
gagggacagaaacaagtgggagaagacccaaacacacttggaggtcatgttcaatatgaa
tacctcacagagaaggaaatttacacgcgagaagtacatctgcagaaagccagctggcat
gtcaaccattcaaaaactcagggtgttctggataaagaagactcaggaagacaaccacac
gaggcccagcaacctgccagtcactcagtggcctccaaccagagaaaacaacctgccaag
ttggcagctgttgctcatgagcgtccaccaggtgggacagggagtgttgaccctgggcgg
ccccctggagccacctgccctgaaagcccagggcccgcaaccccacacactttggggttg
gtggaacctggtaaaagctcacctcccaccatggaggaggagccctgggcccctcagggg
agtccctgctggacagcccagtccctcagtgccctgcgcaaggaacaggactcatcttct
gagaaggatggacgcagccccaacaaatcagacaaggaccacatccggtggcccatgagt
ggcgctcatgatcttcagcaggcggcaccaggccctggcggggcgcaccagggtcacccc
aaccaggataaccggaccgtcagccagatgctgagcgagcggtggtacaccctggggccc
aatgagatgcagaaatacaacctggccttccaggtgaaggtggcccacttgcaacaagga
ccgaaagaagtccagctcagaggccaagcccacaagccaggggctagcaggagtgtaaca
agggctcgtgggagcggagcatatcagagacgggcactgccactgcccctggggtgtcct
ctgaactcctcccaaacactccagagctcggataccaaggagcagcttctgtggggcaga
acggctgcacacagtcagggaacctggctcagcctggcccaagccttctcccacagcggg
gtacacagcctggacggcagggaaatagaccgtcaggcactacgggaactgacacaggtg
gtgtctggcactgcatcatactctggcccaaagccttctactcagcatggagctccaggc
cactttgcagcccctggtgagggaggtgacccgtgggcagccctgctgccgcccaccttt
tggcagtctatggtcacaccctgtcctcctcctacacatactcggatgcttcctcctcaa
ccttggcacccacctccttcttactgggcccaggagccttcaaagcccaggagtctggtc
aacgcagcagagcgggccccctacggccccaacccctggggatgggggcccagggacgcc
ttccaaggtggcctgtttcctcccaatggatcctgccaccttctggtggagaagccgagg
acaggctcagggaaccggagaccaagaaggcgctgtcctcttcactgcatgtaccctgga
ccagtgccggccctgatcatgcagctcttccaggcccactgcttcttcctgtccactagg
ccacagccgccctccaggcccactatgcacacatcttcccctccaagtgcttctgcccga
gagtcacgtgaggctgagagtaggggcaggggcagcagtggtgccagttggggggcggtc
cagtgggaggagcctcagcctcgcaggctgctccgtgggactgatgactgcatgatcttc
tgggcacctcacggatcttcaactgcaggtgaaacggatgctggtgctgtgccgggggaa
agctgggcagtttccctcctccgagcccctgtacataccatgaattgtgggaccttcaga
gcttttcacttttcggaaaatagctcctgctggggctacaagatggagtgtgaagagggc
cttgggccacagggaggcgcctgtggactagggggagttcatgcaccccttctttcccca
gaggggctggactcagaacacgttgatcgtgggcgatatttttcattgtgccaaaaagtt
gccatgaccgtcattaaacctgtttaa

>gi568815597f:1_170005|GENSCAN_predicted_peptide_3|580_aa
MSQCIWPPYFLLLAQCNGSISGTANERDAQDKKQDLALSLRMEFSGPIMAHYSLKLPGSS
NPTMSAFPVAGTTELMLGRVPGDRRTQMGFGNRFGYPRSSAELLAMGYGMLVISRISAAA
LDSHRSTNSVVKCACEGSRLCTPYENLMPDILLLSPITPDGQSSCRKTSSEIPLSLRYSG
NIQLQENKLNTPTDSTLCLSRPRTFSSQPLQTKLMTLNGLFRPIPYVTAASADEATASQQ
PPQAQLHRYNGLFRPSSCLPAFSPGPELSQVDLTRPSSCFFAASPGPAPASWWPLQAQPL
PPVSLYSPNVCLTADSSRPASTSLWTPQAKLPTFQQLLHTQLLPPSGLFRPSSCFTRAFP
GPTFVSWQPSLARFLPVSQQPRQAQVLPHTGLSTSSLCLTVASPRPTPVPGHHLRAQNLL
KSDSLVPTAASWWPMKAQNLLKLTCPGPAPASCQRLQAQPLPHGGFSRPTSSSWLGLQAQ
LLPHNSLFWPSSCPANGGQCRPKTSSSQTLQAHLLLPGGINRPSFDLRTASAGPALASQG
LFPGPALASWQLPQAKFLPACQQPQQAQLLPHSGPFRPNL

>gi568815597f:1_170005|GENSCAN_predicted_CDS_3|1743_bp
atgagccagtgcatctggccaccttattttctattactggctcaatgtaatggctccatc
tcaggaacagccaatgaaagagatgcacaggacaagaaacaggaccttgccctgtcactc
aggatggagttcagtggtcctatcatggctcattatagcctcaaactcccaggctcaagc
aatcctaccatgtcagccttcccagtagctgggactacagaattgatgctaggaagggta
ccaggagatagacgcacacagatgggatttgggaataggtttggttatccaaggagcagt
gctgagctccttgcaatgggatatgggatgctggtgatttccaggatatcagcagcagca
ttagattctcacaggagcacaaactctgttgtgaagtgtgcatgcgagggatctaggttg
tgtactccttatgagaatctaatgcctgatattctgttactgtctcccatcaccccagat
ggacagtctagttgcaggaaaacaagctcagagatcccactgagtctacgttatagtggg
aacatccagttgcaggaaaacaagcttaacacgcccactgattctacattatgcctctcc
aggcccagaactttctccagtcagcctctacagaccaagctcatgactctcaatggccta
tttaggcccataccctacgtcacggcagcctccgcagatgaggctactgcctcacaacag
cctccacaggcacagctccatcgttacaatggcctctttagacccagctcctgcctccca
gccttctctccaggccctgaactttctcaagttgacctcaccaggcccagctcatgcttc
tttgcagcctctccaggcccagctcctgcatcttggtggcccctccaggcccagcctctg
cctcccgtcagcctctacagtcccaacgtctgcctcacagcagattcttcacgcccagct
tctacctcactgtggaccccccaagccaagctcccaacctttcagcagcttctacacacc
cagctcctgccacccagtggcctctttaggccaagctcatgcttcacaagggcctttcca
ggcccaacttttgtctcatggcaaccttccctggccagattcctgcctgtctcccagcag
cctagacaggcccaggtcttgcctcacactggcctctctacatccagcttatgcctcacg
gtggcctctccacggccaactcctgtcccaggacatcatctccgggcccaaaacttactc
aagtcagactctctagtcccaactgctgcctcctggtggcctatgaaggcccaaaatctc
ctcaagttgacctgtccaggcccagctcctgcctcctgtcagcgtctacaggcccaacct
ctgcctcatgggggcttctccaggcccacctcttcctcttggctgggtctacaggcacaa
ctgctgcctcacaacagccttttttggcccagttcctgtccagctaatggcggccaatgt
aggcccaaaacttcctcaagtcaaactctccaggcccaccttctgcttcccggtggcatc
aacaggcccagctttgacttgagaacagcctctgcaggccctgctcttgcctcccagggg
ctttttccaggcccagctcttgcctcatggcagctgccccaggccaaatttctgcctgcc
tgccagcagcctcaacaggcacagctcctccctcacagtggcccatttaggcccaactta
tga

>gi568815597f:1_170005|GENSCAN_predicted_peptide_4|99_aa
XLCHEEVLPSACPWPTAMECLFLGVGWESAGRTGNLQGRVIEKQLLLGFQRNGIIVSLIY
VNKLKNCLKENMWDDAARRPLPDAGPSTLDFLTSRTVKK

>gi568815597f:1_170005|GENSCAN_predicted_CDS_4|300_bp
ngcctctgccatgaggaggtgcttccttctgcctgtccgtggcccacagcaatggaatgt
ctgtttctgggggttgggtgggagagtgctggcagaactggaaaccttcagggacgtgtt
attgagaagcaacttttgcttggttttcagagaaatggaatcatcgtatcgctgatctac
gtaaacaaactgaagaattgtctgaaagaaaatatgtgggatgatgcagcaagaagacct
ttaccagatgcaggcccctcaaccttggacttcctaacatccagaactgttaagaaataa
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