Result of GENSCAN for pF1KF0190
GENSCAN 1.0	Date run: 18-Jul-119	Time: 21:06:20

Sequence gi568815597r:24057133_24287248 : 230116 bp : 48.76% 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..
----- ---- - ------ ------ ---- -- -- ---- ---- ----- ----- ------

 1.38 Term -    495    232  264  0  0   79   48   466 0.638  37.21
 1.37 Intr -   1847   1792   56  0  2   84   79    66 0.870   4.00
 1.36 Intr -   3950   3823  128  1  2  104    9   103 0.491   4.32
 1.35 Intr -   4177   4141   37  2  1  107  100    38 0.999   4.22
 1.34 Intr -   4977   4814  164  2  2   62  105   203 0.989  19.02
 1.33 Intr -   6102   5994  109  1  1   94  108   205 0.999  22.44
 1.32 Intr -   6398   6360   39  0  0  110   91    64 0.993   7.10
 1.31 Intr -   7027   6940   88  1  1  107   70    98 0.659   9.44
 1.30 Intr -   7459   7356  104  2  2   54   59     7 0.354  -5.71
 1.29 Intr -   8869   8755  115  1  1  102    8   153 0.748   8.72
 1.28 Intr -   9480   9443   38  1  2   51  107    21 0.479  -1.72
 1.27 Intr -  10945  10838  108  2  0  109   90    25 0.605   5.06
 1.26 Intr -  11235  11091  145  0  1   44   61   233 0.940  16.06
 1.25 Intr -  14121  13985  137  1  2   83   48   178 0.976  13.59
 1.24 Intr -  14881  14837   45  2  0   87  115    42 0.972   5.18
 1.23 Intr -  17137  17028  110  0  2  104   90   167 0.999  18.43
 1.22 Intr -  18343  18187  157  2  1  100  108   213 0.999  23.57
 1.21 Intr -  19141  19027  115  1  1  110   91   127 0.993  15.22
 1.20 Intr -  23062  22884  179  2  2   91  110   176 0.999  19.74
 1.19 Intr -  24324  24198  127  0  1   98   94   142 0.999  16.05
 1.18 Intr -  25056  24869  188  1  2   79   97   216 0.969  21.01
 1.17 Intr -  25582  25461  122  0  2   71   92    78 0.995   6.64
 1.16 Intr -  27489  27336  154  1  1   89   98    61 0.805   6.33
 1.15 Intr -  29695  29512  184  1  1   62   80   213 0.994  17.26
 1.14 Intr -  32533  32406  128  2  2   38   97   178 0.999  14.10
 1.13 Intr -  32986  32933   54  2  0  106  107    72 0.989   9.85
 1.12 Intr -  33864  33665  200  2  2   50   94   166 0.999  12.39
 1.11 Intr -  35183  35042  142  0  1   56  101   136 0.994  11.11
 1.10 Intr -  35976  35815  162  1  0  113   78   284 0.929  29.85
 1.09 Intr -  37858  37721  138  2  0   65   91   179 0.999  16.34
 1.08 Intr -  38409  38310  100  0  1   26  106   121 0.831   7.38
 1.07 Intr -  39442  39354   89  2  2   96   77    30 0.685   2.39
 1.06 Intr -  40879  40791   89  0  2   99   92   164 0.995  17.51
 1.05 Intr -  42643  42548   96  0  0  103   78   163 0.846  15.92
 1.04 Intr -  48945  48788  158  0  2  103  107   173 0.997  19.51
 1.03 Intr -  50100  49941  160  2  1   88   90   291 0.999  29.29
 1.02 Intr -  50995  50861  135  0  0    1   97   201 0.818  11.98
 1.01 Init -  51504  51344  161  0  2   94   75   223 0.920  19.26
 1.00 Prom -  58474  58435   40                              -4.06

 2.23 PlyA -  58487  58482    6                               1.05
 2.22 Term -  64605  63673  933  0  0   71   55   413 0.782  28.43
 2.21 Intr -  66291  66170  122  1  2   78   93   136 0.974  13.31
 2.20 Intr -  71147  71009  139  2  1   65  109   114 0.960  11.24
 2.19 Intr -  77254  77079  176  2  2  103  101   178 0.936  20.26
 2.18 Intr -  80177  79999  179  1  2   98   79   185 0.998  18.16
 2.17 Intr -  81582  81450  133  1  1  116   29   210 0.995  17.60
 2.16 Intr -  85117  84978  140  0  2   36   48    36 0.002  -5.49
 2.15 Intr -  85985  85908   78  1  0   65  105    65 0.003   4.57
 2.14 Intr - 100161 100002  160  1  1  -11   99   135 0.182   3.75
 2.13 Intr - 100672 100474  199  1  1   75   44   176 0.463  10.82
 2.12 Intr - 102050 101920  131  0  2  105   40    67 0.971   4.01
 2.11 Intr - 102501 102342  160  0  1  116   94   121 0.977  15.06
 2.10 Intr - 104552 104410  143  0  2   99   81   155 0.983  15.97
 2.09 Intr - 112469 112285  185  1  2  121  100   139 0.797  17.83
 2.08 Intr - 123722 123599  124  0  1  119   65    93 0.971   9.74
 2.07 Intr - 130123 130059   65  0  2   16  110    92 0.002   2.56
 2.06 Intr - 130871 130539  333  1  0   95  -13   245 0.002   9.79
 2.05 Intr - 142517 142469   49  0  1  100  110   113 0.980  12.44
 2.04 Intr - 146094 146057   38  2  2   92   49    13 0.216  -4.29
 2.03 Intr - 149543 149474   70  0  1  141   97    33 0.333   7.74
 2.02 Intr - 151235 151081  155  1  2   63   26   154 0.061   6.42
 2.01 Init - 155536 154701  836  1  2   91  -27   646 0.030  47.58
 2.00 Prom - 156411 156372   40                              -2.26

 3.03 PlyA - 156542 156537    6                               1.05
 3.02 Term - 157829 157724  106  1  1   93   49    99 0.977   4.38
 3.01 Init - 163454 163285  170  2  2   83   81   106 0.966   8.41
 3.00 Prom - 183407 183368   40                              -4.86

 4.00 Prom + 185297 185336   40                              -0.66
 4.01 Init + 196265 196336   72  1  0   70   92    60 0.774   5.67
 4.02 Intr + 197393 197497  105  1  0   53   80   106 0.956   6.71
 4.03 Intr + 199779 199829   51  2  0   73  111    10 0.486   0.90
 4.04 Intr + 200288 200389  102  1  0   90   62    33 0.495   1.27
 4.05 Term + 209239 209313   75  0  0   86   47    48 0.122  -1.66
 4.06 PlyA + 211764 211769    6                               1.05

 5.02 PlyA - 212881 212876    6                               1.05
 5.01 Sngl - 216748 216458  291  1  0   68   54   190 0.652   9.25

Suboptimal exons with probability > 0.800

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

S.001 Init -  85950  85908   43  0  1   73  105    82 0.993   8.63
S.002 Init - 130116 130059   58  0  1   92  110   148 0.996  16.89
S.003 Term - 130871 130535  337  1  1   95   42   249 0.906  15.04
S.004 Sngl - 155536 154685  852  1  0   91   49   672 0.965  59.40


Predicted peptide sequence(s):

Predicted coding sequence(s):


>gi568815597r:24057133_24287248|GENSCAN_predicted_peptide_1|1574_aa
MTLPHSLGGAGDPRPPQAMEVHRLEHRQEEEQKEERQHSLRMGSSVRRRTFRSREPPANP
ARAIYSPPSGSSEEEHEFSAADYALAAALALTASSELSWEAQLRRQTSAVELEERGQKRV
GFGNDWERTEIAFLQTHRLLRQRRDWKTLRRRTEEKVQEAKELRELCYGRGPWFWIPLRS
HAVWEHTTVLLTCTVQASPPPQVTWYKNDTRIDPRLFRAGKYRITNNYGLLSLEIRRCAI
EDSATYTVRVKNAHGQASSFAKVLVRTLRRQILLPGQALVQKFELSPQSMPRVKPKHRNV
GSEPSPTLFAFGFSAYLGKDAGFDSEIFKRSTFGPSVEFTSVLKPVFAREKEPFSLSCLF
SEDVLDAESIQWFRDGSLLRSSRRRKILYTDRQASLKVSCTYKEDEGLYMVRVPSPFGPR
EQSTYVLVRDAEAENPGAPGSPLNVRCLDVNRDCLILTWAPPSDTRGNPITAYTIERCQG
ESGEWIACHEAPGGTCRCPIQGLVEGQSYRFRVRAISRVGSSVPSKASELVVMGDHDAAR
RKTEIPFDLGNKITISTDAFEDTVTIPSPPTNVHASEIREAYVVLAWEEPSPRDRAPLTY
SLEKSVIGSGTWEAISSESPVRSPRFAVLDLEKKKSYVFRVRAMNQYGLSDPSEPSEPIA
LRGPPAQVQAFRDTQTSVSLTWDPVKDPELLGYYIYSRKVGTSEWQTVNNKPIQGTRFTV
PGLRTGKEYEFCVRSVSEAGVGESSAATEPIRVKQALATPSAPYGFALLNCGKNEMVIGW
KPPKRRGGGKILGYFLDQHDSEELDWHAVNQQPIPTRVCKVSDLHEGHFYEFRARAANWA
GVGELSAPSSLFECKEWTMPQPGPPYDVRASEVRATSLVLQWEPPLYMGAGPVTGYHVSF
QEEGSEQWKPVTPGPISGTHLRVSDLQPGKSYVFQVQAMNSAGLGQPSMPTDPVLLEDKP
GAHEIEVGVDEEGFIYLAFEAPEAPDSSEFQWSKDYKGPLDPQRVKIEDKVNKSKVILKE
PGLEDLGTYSVIVTDADEDISASHTLTEEELEKLKKLSHEIRNPVIKLISGWNIDILERG
EVRLWLEVEKLSPAAELHLIFNNKEIFSSPNRKINFDREKGLVEVIIQNLSEEDKGSYTA
QLQDGKAKNQITLTLVDDDPHSSRLMPVPPSVFTDFDKLLRKADAKRRDWKRKQDEKTNG
EIAQGHTVTNTKKETRFQWFFQRAEMPDGQYDPETGTGLLCIEEARENTLPPGELQVVGV
PPSRSPQGVKGGPGPDKLCKLSKKDKGIYRAMVSDDRGEDDTILDLTGDALDAIFTELGR
IGALSATPLKIQGTEEGIRIFSKVKYYNVEYMKTTWFHKDKRLESGDRIRTGTTLDEIWL
HILDPKDSDKGKYTLEIAAGKEVRQLSTDLSGQAFEDAMAEHQRLKTLAIIEKSKSADIS
VVFVSEFGANFLEAQPSWWAAEGLIPQWDRAKVVRGLPDVATIMEDKTLCLTCIVSGDPT
PEISWLKNDQPVTFLDRYRMEVRGTEVTITIEKVNSEDSGRYGVFVKNKYGSETGQVTIS
VFKHGDEPKELKSM

>gi568815597r:24057133_24287248|GENSCAN_predicted_CDS_1|4725_bp
atgactctgccgcacagcttgggaggtgcgggggacccccggcccccccaggccatggag
gttcacaggctggagcaccggcaggaggaggagcagaaggaggagcggcagcacagcctg
cgcatgggctcctctgtgcggaggcggaccttccgcagcagggagcccccagccaatcct
gcaagagccatttactcccctccttctgggagcagcgaagaagagcatgagttcagcgcc
gcggactacgccctggcagcagccctggctctgacggcctcctccgagctgtcttgggaa
gcccagctgagacgccagacctctgccgtggagctggaggagcgagggcagaagcgggtg
ggcttcggcaatgactgggagaggactgagatcgccttcctgcagacccaccggctgctg
cgccagaggcgggactggaagacgctgaggcggcggacagaggagaaggtccaggaggcc
aaggagctgagggagctgtgctacggccgcgggccctggttctggatccctcttcgctcc
cacgccgtctgggagcacaccacggtcctgctgacctgcactgtccaggcctcaccacca
ccccaggtcacctggtacaaaaatgacacacggattgatccccgcctctttcgtgccgga
aaataccgaatcaccaacaactacgggctgctgtccctggagattaggagatgcgccatt
gaggactcagcaacttacactgtgcgagtgaagaacgcccacggccaggcctcctccttc
gccaaagtcctcgtccgcactcttaggaggcagatcctgctgccaggccaagctcttgtg
cagaaatttgagctgtccccacagtccatgcccagagtcaagcccaagcataggaatgtg
ggctctgaaccttctccaactctgtttgcctttggtttttcagcttacctggggaaggat
gctggcttcgattcagagatcttcaaaagatcgacgtttggccccagcgtggaattcacc
tcggtgctgaagccagtctttgctcgtgagaaggaacccttctccctgtcatgcttgttt
tcggaagatgtgttagatgctgagagcatccagtggttccgagatgggagcctactgagg
tcctcgagacgtcggaagatcctctacacagaccgccaggcatccctgaaggtgtcctgc
acctacaaggaggacgaggggctctacatggtccgggtgccctcgcccttcggaccccgg
gaacagagcacctacgtgcttgtgagagatgccgaggccgagaaccccggggccccaggc
tccccactgaacgtccgatgcctggatgtgaacagagactgcctcatcctgacttgggcc
ccgcccagtgacacccggggcaaccccatcactgcctacaccattgagcggtgccagggc
gagtctggggaatggatcgcctgccatgaggcccccggagggacttgtcggtgcccaatc
caaggcctcgtcgaaggtcagagctatcggttccgggtgagagccatcagcagggtaggc
agcagcgtcccctccaaggcctcagagttggttgtcatgggtgaccatgatgcagcccgg
aggaagacagagatcccctttgatctgggaaacaagatcaccatcagcacagacgctttt
gaagatactgtgaccatcccctcaccgccaaccaatgtccatgccagcgagatccgagag
gcctatgtggttctggcctgggaggagcccagcccccgggacagagcaccactgacgtac
tccctggagaagtcagtcataggtagtggcacctgggaggccatcagctcggaaagccct
gtgagatccccgagattcgccgttctggacctggagaaaaagaagtcgtatgtcttcaga
gtgcgagcaatgaaccagtatggcctgagcgatccctcggagcccagcgaacccatcgcc
ttgcggggcccgccagctcaagttcaagctttcagagacacacagacctctgtctccctg
acatgggatcctgtgaaagacccagagctcctgggttattacatctactcccggaaggtg
gggacatctgagtggcaaacagttaacaacaaacccatccaaggcaccaggtttacagtt
cccgggctgaggacggggaaggagtacgagttttgtgtcaggtcagtcagcgaggctggg
gtaggcgagagctcagccgccaccgagcccatcagggtcaagcaggctctggctaccccg
tctgccccatatggctttgccctcctgaactgcgggaagaatgaaatggtcattgggtgg
aaaccccccaagcgtcgtggaggtggcaagatcctgggctacttcctggaccagcatgac
tcggaagagctggactggcatgcggtcaatcagcagcccatccccacccgggtctgcaag
gtcagtgaccttcatgaaggccacttctatgagttccgtgcccgggctgccaactgggca
ggtgttggcgagctgtcggcacccagcagcctgtttgagtgcaaagagtggacaatgccc
cagccaggccccccgtacgatgtacgggcatccgaggtgcgggccacatccctggtgctg
cagtgggaacccccactgtatatgggggctgggcctgtcacaggctatcacgtcagtttc
caggaggaaggctctgagcagtggaagccggtcaccccaggccccatctctggcacccac
ctgagggtttccgacttgcagccaggaaagagttacgtgttccaggtacaggccatgaat
tcagctggtctggggcaaccgtccatgcccactgatcccgtgctcctggaggacaagcca
ggtgcccatgagatcgaggttggtgtggatgaagagggctttatctatttggcttttgaa
gcccctgaagcccccgactcctcagagtttcagtggtccaaagactacaagggcccactg
gacccccagagggtcaagatcgaggataaagttaacaagtccaaggtcatcctgaaagaa
cccggcctcgaggatttgggcacctactcagtcatagtcactgatgccgatgaagacatc
tccgcaagccacacgctaaccgaggaagagctggagaagctgaagaagctgagtcatgag
atcagaaacccagtgatcaaactgatctccggctggaacattgacatcctggagcgaggg
gaggtgcggctttggctggaagtagaaaagttatctccagccgctgagctacatctaatc
ttcaacaacaaggagatcttcagctcgccgaaccgcaaaatcaattttgaccgagagaag
ggcctggtggaagtgatcatccagaacttgtctgaggaggacaaagggtcgtacaccgct
caactccaagatggaaaagccaaaaaccagattaccttgacactggtggatgacgaccca
cactcctctcggctcatgccagttcctccctctgtgttcacagattttgacaagcttctg
aggaaggcagatgctaagagaagggactggaagagaaaacaggatgagaaaacaaatgga
gaaatagctcaaggccacacggtgaccaacaccaagaaggagactcgctttcagtggttc
ttccagagggcagagatgccagatggtcagtatgacccagagacgggaacgggacttctc
tgcattgaagaggcaagagaaaacacgcttcctcctggggaactgcaggtggtgggggtc
cctccatccaggagcccccagggagtgaaaggtgggccaggcccagacaagctctgcaaa
ttgtccaaaaaggacaagggaatttacagagcgatggtttctgacgatcgaggggaggac
gacaccatattggacctcacgggtgacgccctggatgccatcttcaccgagttgggcagg
attggtgccctctctgcaactccactgaaaatccaggggaccgaggaagggatccggatc
ttcagcaaggtcaagtactacaacgtggagtacatgaaaaccacctggttccacaaagac
aaacgtctggagagtggtgatcggataaggacgggcaccaccctggatgagatctggctt
cacatcctggaccccaaagactcagacaagggcaaatacactctggaaatagctgcaggg
aaggaagtccggcagctctcaacagatctctcagggcaagcttttgaggatgcaatggct
gaacaccagagactgaaaaccttggccatcatcgagaagagtaagtcggccgatatttct
gttgtttttgtttctgaatttggggcaaacttcctggaagctcaaccctcttggtgggct
gctgaaggcctcattccacagtgggatcgtgccaaagtggtgagaggtctgccggatgtg
gccactatcatggaagataagaccctgtgcttgacttgcatcgtctcaggagaccccacc
cctgaaatctcttggctgaagaatgaccagcctgtcaccttccttgaccgataccgcatg
gaagtgagggggacagaggtcaccatcaccattgagaaggtcaacagtgaagacagcggc
cgctacggcgtcttcgtcaagaacaagtatggctccgagacgggccaggtcaccatcagt
gtgttcaagcacggggacgagcccaaggagctgaagagcatgtga

>gi568815597r:24057133_24287248|GENSCAN_predicted_peptide_2|1515_aa
MASSIIHPTTTNIPSTSPVSPPLPSPPASPPSPSPPLSPSPPPSSSPTPSPSPPPSPPPS
PSPPPSPPPSPSPPPSPPPSPSPPPSPPPSPSPPPSPPPSPSPPPSPPPSPSPPPSPPLS
LPPSLTPPPSPPSSPSPSPSPPLLLPPSPSPPPSPPLSLPVTLTTSTTTSITLTTSITTS
ITTSITLTTSITTFITLTTSLTTSITLTTSITTSLTTSITLTTSITTSITLTTSLTTSIT
LTTSITSITLITFITTSITTSITVTTPITTTTTFVQEMHLQMKPKCAAGQKPAFRFLPVR
RKGVYGGPVQAYTQHQYIHKVGKILKRFHTGLEPSPESALGFLLGAQTLPAQGRAFPEVH
LMLSSRASYGYIRESPKRLQNVSVLQTPRCRYTPFGNVLLKGRIILRVVACALLGSYCCP
GEHHSLRGQKDSFPQNKHLKLWGLPLPGREVRGEGQHGSAGIPGGIKGNRVCKARSSASG
SETRSDPANGIEAAKAMAGPERWGPLLLCLLQAAPGRPRLAPPQNVTLLSQNFSVYLTWL
PGLGNPQDVTYFVAYQSSPTRRRWREVEECAGTKELLCSMMCLKKQDLYNKFKGRVRTVS
PSSKSPWVESEYLDYLFEVEPAPPVLVLTQTEEILSANATYQLPPCMPPLDLKYEVAFWK
EGAGNKTLFPVTPHGQPVQITLQPAASEHHCLSARTIYTFSVPKYSKFSKPTCFLLEVPE
ANWAFLVLPSLLILLLVIAAGGVIWKTLMGNPWFQRAKMPRALELTRGVRPTPRVRAPAT
QQTRWKKDLAEDEEEEDEEDTEDGVSFQPYIEPPSFLGQEHQAPGHSEAVSLQTLTFCWE
SSPEEEEEARESEIEDSDAGSWGAESTQRTEDRGRTLGHYMARVEAKGGLCASPDEDAAD
HLDCGIPGWTRPTKRQSFPPSLPLSRQGCLRLQGFQLCGTPSSLLPSIKLGVPGRSHAPE
DPSDLLQHVKFQSSNFENILTWDSGPEGTPDTVYSIEYKTYGERDWVAKKGCQRITRKSC
NLTVETGNLTELYYARVTAVSAGGRSATKMTDRFSSLQHTTLKPPDVTCISKVRSIQMIV
HPTPTPIRAGDGHRLTLEDIFHDLFYHLELQVNRTYQMHLGGKQREYEFFGLTPDTEFLG
TIMICVPTWAKESAPYMCRVKTLPDRTWTYSFSGAFLFSMGFLVAVLCYLSYRYVTKPPA
PPNSLNVQRVLTFQPLRFIQEHVLIPVFDLSGPSSLAQPVQYSQIRVSGPREPAGAPQRH
SLSEITYLGQPDISILQPSNVPPPQILSPLSYAPNAAPEVGPPSYAPQVTPEAQFPFYAP
QAISKVQPSSYAPQATPDSWPPSYGVCMEGSGKDSPTGTLSSPKHLRPKGQLQKEPPAGS
CMLGGLSLQEVTSLAMEESQEAKSLHQPLGICTDRTSDPNVLHSGEEGTPQYLKGQLPLL
SSVQIEGHPMSLPLQPPSRPCSPSDQGPSPWGLLESLVCPKDEAKSPAPETSDLEQPTEL
DSLFRGLALTVQWES

>gi568815597r:24057133_24287248|GENSCAN_predicted_CDS_2|4548_bp
atggcttcatctatcatccaccccactacgactaacatcccatcaacctcaccagtatca
ccacctctaccatctcctccagcatcacctccatcaccatcaccacctctatcaccatca
ccacctccatcatcatcaccaactccatcaccatcaccacctccatcaccacctccatca
ccctcaccacctccatcaccacctccatcaccctcaccacctccatcaccacctccatca
ccctcaccacctccgtcaccacctccatcaccctcaccacctccatcaccacctccatca
ccctcaccacctccatcaccacctccatcaccctcaccacctccatcaccacctctatca
ctgcctccatcactcacaccacctccatcaccaccttcatcaccctcaccatctccatca
ccacctctattactacctccatcaccctcaccacctccatcaccacctctatcactacct
gtcaccctcaccacctccaccaccacctccatcaccctcaccacctccatcaccacctct
atcaccacctccatcaccctcaccacctccatcaccaccttcatcaccctcaccacctcc
ctcaccacctccatcaccctcaccacctccatcaccacctccctcaccacctccatcacc
ctcaccacctccatcaccacctccatcaccctcaccacctccctcaccacctccatcacc
ctcaccacctccatcacctctatcaccctcatcaccttcatcaccacctccatcactacc
tctatcaccgtcaccacccccatcaccactaccaccacctttgtgcaagagatgcatttg
caaatgaaaccaaaatgtgctgctggacagaaaccagcattccgcttcctcccagtgcgc
aggaagggtgtttatggtggtccggtccaggcctacactcagcaccagtacatccacaaa
gttggcaaaatattgaaacgcttccacactggtctagaaccatctcctgagtcagctctg
ggcttcctgctaggagctcagacccttcctgctcagggaagggccttcccagaagttcac
ctgatgctaagcagcagggcctcctatgggtacatccgagagtctcccaagaggctgcag
aacgtcagtgtgttgcaaacacctcggtgtcgatacacaccattcggcaacgtcctccta
aagggccgcataatattgcgcgtcgtggcgtgtgccttactgggaagctactgctgtcca
ggtgaacaccacagccttcggggtcagaaagacagctttccccagaacaagcacctgaag
ctctggggcctgccgctccccgggagagaagtacgtggagaagggcagcacggatccgcc
gggatccccgggggcattaaagggaatcgcgtgtgtaaggcgcggagctcagcatccggc
tcagaaacgcgctcggatcccgccaatggcattgaggccgcgaaggccatggcggggccc
gagcgctggggccccctgctcctgtgcctgctgcaggccgctccagggaggccccgtctg
gcccctccccagaatgtgacgctgctctcccagaacttcagcgtgtacctgacatggctc
ccagggcttggcaacccccaggatgtgacctattttgtggcctatcagagctctcccacc
cgtagacggtggcgcgaagtggaagagtgtgcgggaaccaaggagctgctatgttctatg
atgtgcctgaagaaacaggacctgtacaacaagttcaagggacgcgtgcggacggtttct
cccagctccaagtccccctgggtggagtccgaatacctggattacctttttgaagtggag
ccggccccacctgtcctggtgctcacccagacggaggagatcctgagtgccaatgccacg
taccagctgcccccctgcatgcccccactggatctgaagtatgaggtggcattctggaag
gagggggccggaaacaagaccctatttccagtcactccccatggccagccagtccagatc
actctccagccagctgccagcgaacaccactgcctcagtgccagaaccatctacacgttc
agtgtcccgaaatacagcaagttctctaagcccacctgcttcttgctggaggtcccagaa
gccaactgggctttcctggtgctgccatcgcttctgatactgctgttagtaattgccgca
gggggtgtgatctggaagaccctcatggggaacccctggtttcagcgggcaaagatgcca
cgggccctggaactgaccagaggggtcaggccgacgcctcgagtcagggccccagccacc
caacagacaagatggaagaaggaccttgcagaggacgaagaggaggaggatgaggaggac
acagaagatggcgtcagcttccagccctacattgaaccaccttctttcctggggcaagag
caccaggctccagggcactcggaggctgtttctcttcagacactgaccttctgctgggaa
agcagccctgaggaggaagaggaggcgagggaatcagaaattgaggacagcgatgcgggc
agctggggggctgagagcacccagaggaccgaggacaggggccggacattggggcattac
atggccagagtagaggccaagggagggctctgtgccagccccgatgaggacgctgctgac
catcttgactgtgggatccctggctggacgaggcccacgaaaaggcagagcttcccacct
tctctgccactgtcccgccagggctgcctgcgtctccagggcttccagctctgtgggacc
ccctccagtctgcttcccagcatcaagctgggcgttccaggaagatctcacgcccctgag
gacccctcggatctgctccagcacgtgaaattccagtccagcaactttgaaaacatcctg
acgtgggacagcgggccggagggcaccccagacacggtctacagcatcgagtataagacg
tacggagagagggactgggtggcaaagaagggctgtcagcggatcacccggaagtcctgc
aacctgacggtggagacgggcaacctcacggagctctactatgccagggtcaccgctgtc
agtgcgggaggccggtcagccaccaagatgactgacaggttcagctctctgcagcacact
accctcaagccacctgatgtgacctgtatctccaaagtgagatcgattcagatgattgtt
catcctacccccacgccaatccgtgcaggcgatggccaccggctaaccctggaagacatc
ttccatgacctgttctaccacttagagctccaggtcaaccgcacctaccaaatgcacctt
ggagggaagcagagagaatatgagttcttcggcctgacccctgacacagagttccttggc
accatcatgatttgcgttcccacctgggccaaggagagtgccccctacatgtgccgagtg
aagacactgccagaccggacatggacctactccttctccggagccttcctgttctccatg
ggcttcctcgtcgcagtactctgctacctgagctacagatatgtcaccaagccgcctgca
cctcccaactccctgaacgtccagcgagtcctgactttccagccgctgcgcttcatccag
gagcacgtcctgatccctgtctttgacctcagcggccccagcagtctggcccagcctgtc
cagtactcccagatcagggtgtctggacccagggagcccgcaggagctccacagcggcat
agcctgtccgagatcacctacttagggcagccagacatctccatcctccagccctccaac
gtgccacctccccagatcctctccccactgtcctatgccccaaacgctgcccctgaggtc
gggcccccatcctatgcacctcaggtgacccccgaagctcaattcccattctacgcccca
caggccatctctaaggtccagccttcctcctatgcccctcaagccactccggacagctgg
cctccctcctatggggtatgcatggaaggttctggcaaagactcccccactgggacactt
tctagtcctaaacaccttaggcctaaaggtcagcttcagaaagagccaccagctggaagc
tgcatgttaggtggcctttctctgcaggaggtgacctccttggctatggaggaatcccaa
gaagcaaaatcattgcaccagcccctggggatttgcacagacagaacatctgacccaaat
gtgctacacagtggggaggaagggacaccacagtacctaaagggccagctccccctcctc
tcctcagtccagatcgagggccaccccatgtccctccctttgcaacctccttcccgtcca
tgttccccctcggaccaaggtccaagtccctggggcctgctggagtcccttgtgtgtccc
aaggatgaagccaagagcccagcccctgagacctcagacctggagcagcccacagaactg
gattctcttttcagaggcctggccctgactgtgcagtgggagtcctga

>gi568815597r:24057133_24287248|GENSCAN_predicted_peptide_3|91_aa
MVNTLRLESCIPLSTNEVPTVCQVQFLAPRKQQQTGQSPLHEKLTILAGEDYEEARKTIK
GQIKDVAIEAKEKVREMEFSEDSKGGIRSPT

>gi568815597r:24057133_24287248|GENSCAN_predicted_CDS_3|276_bp
atggtcaatactttacggctggagtcttgcattccactgagcactaatgaggtgcctact
gtgtgccaggtacagtttttggctccaaggaagcagcagcagacaggacagagtcccctg
catgagaagctgaccattctggctggggaagactatgaagaggcaaggaaaaccataaaa
ggccagatcaaagatgtagcaatagaagcaaaagaaaaagtgagagagatggaattttct
gaagatagtaaaggagggattcggagccccacatga

>gi568815597r:24057133_24287248|GENSCAN_predicted_peptide_4|134_aa
MNQTQIRPSRTPVEADSATDNYFQDADALCGHGHVCIILMLHLVLRLRQPSIESCPDFQD
YVWFQFLPPYVIIINLKFCEWIILPHLADVATEDQKVEVISLTQCQVSTQGQPKGLAESG
KDCERKVGKKTHPM

>gi568815597r:24057133_24287248|GENSCAN_predicted_CDS_4|405_bp
atgaatcagacacagatccggccctcgaggaccccagtggaagcagactcagccacagat
aattactttcaggacgcagatgctctttgtggacacgggcacgtgtgcatcatcttgatg
ctccacctggtgcttaggttacggcagccatcaatcgagtcctgtccagacttccaagac
tatgtctggtttcagtttctaccaccatatgtaataatcatcaacttgaaattctgtgaa
tggatcatattaccccatcttgcagatgtggccactgaggatcagaaagttgaagtgatt
tcattaacacagtgccaagtttcaacacagggacagcccaagggcctggctgagagtgga
aaagactgtgagagaaaagtagggaagaaaacacaccccatgtga

>gi568815597r:24057133_24287248|GENSCAN_predicted_peptide_5|96_aa
MRKNQCKKAENSKNQNTSSPPKDHNSSPAREQNWRENEFVELTEVGFRRWGITNFSELKE
QCKEAKNLAKRLEELLTRITSLEKNINDLMELKNTG

>gi568815597r:24057133_24287248|GENSCAN_predicted_CDS_5|291_bp
atgaggaaaaaccagtgcaaaaaggctgaaaattccaaaaaccagaatacttcttctcct
ccaaaggatcacaactcctcaccagcaagggaacaaaactggagggagaatgagtttgtc
gaattgacagaagtaggcttcagaaggtggggaataacaaacttctctgagctaaaggag
caatgcaaggaagctaagaaccttgcaaaaaggttagaggaattgctaactagaataacc
agtttagagaagaacataaatgacctgatggagctgaaaaacacaggatga
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