Result of GENSCAN for pF1KB9972
GENSCAN 1.0	Date run:  4-Nov-116	Time: 09:03:33

Sequence gi568815582r:3558132_3790987 : 232856 bp : 49.26% 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..
----- ---- - ------ ------ ---- -- -- ---- ---- ----- ----- ------

 1.06 Intr -   3657   3571   87  2  0   75   92   155 0.888  13.69
 1.05 Intr -   6627   4878 1750  1  1  122   45  2167 0.972 203.12
 1.04 Intr -   6981   6728  254  2  2   77   58   185 0.753  11.48
 1.03 Intr -  16303  16201  103  2  1  104   25    39 0.021  -1.57
 1.02 Intr -  17045  16933  113  1  2  121   76    13 0.044   3.42
 1.01 Init -  19082  19018   65  2  2   84  107    21 0.040   3.87
 1.00 Prom -  22760  22721   40                              -7.66

 2.15 PlyA -  23075  23070    6                               1.05
 2.14 Term -  24670  24211  460  0  1   66   45   504 0.576  38.46
 2.13 Intr -  25379  24966  414  1  0   76   76   431 0.999  33.92
 2.12 Intr -  26740  26638  103  2  1   88   24   160 0.948   8.83
 2.11 Intr -  33179  30871 2309  1  2  109   81  1438 0.929 132.54
 2.10 Intr -  34734  34568  167  0  2  120   41   146 0.999  11.86
 2.09 Intr -  36468  36322  147  0  0   87   92   192 0.988  19.93
 2.08 Intr -  37562  37474   89  0  2   84   91    87 0.994   8.29
 2.07 Intr -  38262  38022  241  0  1   93   94   175 0.484  15.72
 2.06 Intr -  39564  39248  317  1  2   97  109   173 0.984  16.08
 2.05 Intr -  39868  39615  254  0  2   97  100   174 0.557  16.58
 2.04 Intr -  43060  42848  213  0  0   87  111   139 0.999  13.93
 2.03 Intr -  44176  43987  190  2  1   81   75   178 0.992  14.44
 2.02 Intr -  48516  48343  174  1  0   64   60    80 0.359   2.71
 2.01 Init -  50704  50299  406  1  1   60   76   112 0.546   3.95
 2.00 Prom -  52545  52506   40                              -5.06

 3.00 Prom +  54949  54988   40                              -6.86
 3.01 Init +  83004  83106  103  2  1  111  113   109 0.964  14.22
 3.02 Term +  84761  84858   98  0  2   90   49    87 0.908   3.13
 3.03 PlyA +  86619  86624    6                               1.05

 4.00 Prom +  90524  90563   40                              -6.36
 4.01 Init +  97243  97389  147  0  0   78   94   392 0.967  36.89
 4.02 Intr +  97718  97806   89  1  2   95   20   183 0.577  10.97
 4.03 Intr +  97971  98054   84  0  0   75   94   121 0.968  10.34
 4.04 Intr +  98507  98622  116  2  2  121   94   220 0.921  25.99
 4.05 Intr +  98868  98980  113  1  2   67   78   124 0.780   9.40
 4.06 Intr +  99056  99210  155  1  2   19   99   182 0.989  11.27
 4.07 Intr +  99589  99685   97  1  1   31   84    67 0.645   0.61
 4.08 Term +  99775  99822   48  0  0   86   53    84 0.933   2.00
 4.09 PlyA +  99886  99891    6                              -0.45

 5.25 PlyA -  99929  99924    6                              -4.73
 5.24 Term - 100099  99998  102  1  0  125   48   161 0.999  14.08
 5.23 Intr - 100734 100662   73  2  1   92  109   113 0.998  13.21
 5.22 Intr - 104001 103856  146  0  2  100   94   239 0.998  24.78
 5.21 Intr - 104836 104751   86  2  2  112  100   101 0.993  13.24
 5.20 Intr - 105431 105293  139  2  1   72   57   259 0.756  21.24
 5.19 Intr - 106328 106143  186  2  0  103   90   397 0.972  41.29
 5.18 Intr - 107987 107840  148  1  1   85   75   191 0.909  17.74
 5.17 Intr - 112962 112847  116  0  2   -3   26   122 0.256  -3.85
 5.16 Intr - 113522 113397  126  2  0   93   81    47 0.452   5.38
 5.15 Intr - 114689 114438  252  2  0   89   23   390 0.434  30.23
 5.14 Intr - 116363 116208  156  2  0   98   77   360 0.917  36.11
 5.13 Intr - 117266 117193   74  0  2   89   99    75 0.800   7.83
 5.12 Intr - 117645 117441  205  0  1   80   49   112 0.408   5.27
 5.11 Intr - 118014 117912  103  2  1   67   53   124 0.594   6.98
 5.10 Intr - 119527 119367  161  1  2  111   92   144 0.998  15.89
 5.09 Intr - 121659 121588   72  0  0   86  121    69 0.949   9.60
 5.08 Intr - 128005 127865  141  1  0  108   82   248 0.997  26.75
 5.07 Intr - 131006 130924   83  0  2   72   92    60 0.974   4.16
 5.06 Intr - 132854 132696  159  0  0  102   30   156 0.959  11.16
 5.05 Intr - 138105 138048   58  0  1   81   91    32 0.250   1.26
 5.04 Intr - 152322 152254   69  0  0   60   68    63 0.080   0.88
 5.03 Intr - 156167 156016  152  0  2   68  110     5 0.174   0.58
 5.02 Intr - 156898 156860   39  2  0   59   94    42 0.292   0.10
 5.01 Init - 159377 159290   88  2  1   92   78   312 0.996  29.40
 5.00 Prom - 167540 167501   40                              -5.56

 6.26 PlyA - 168710 168705    6                               1.05
 6.25 Term - 171743 169587 2157  2  0  130   39  2356 0.794 220.27
 6.24 Intr - 173342 173061  282  2  0   99   80   459 0.994  43.82
 6.23 Intr - 173806 173645  162  1  0   91   80   330 0.992  32.67
 6.22 Intr - 178072 177905  168  1  0  103   77   167 0.999  17.24
 6.21 Intr - 178684 178519  166  0  1   95   75   135 0.983  12.86
 6.20 Intr - 180541 180428  114  0  0  114   96    32 0.979   6.16
 6.19 Intr - 181593 181447  147  2  0   98   53   170 0.999  13.85
 6.18 Intr - 182418 182268  151  1  1  101   73   152 0.988  14.22
 6.17 Intr - 186830 186763   68  1  2   65   89    61 0.559   2.45
 6.16 Intr - 187223 187146   78  1  0   93   96    18 0.459   1.77
 6.15 Intr - 193675 193595   81  0  0   67  105    77 0.864   6.05
 6.14 Intr - 199245 199157   89  0  2   80   87    49 0.743   2.77
 6.13 Intr - 199917 199678  240  0  0   93   87   294 0.998  27.55
 6.12 Intr - 200841 200723  119  1  2   62  100   117 0.886  10.48
 6.11 Intr - 209778 209589  190  0  1   63   30   213 0.865  12.16
 6.10 Intr - 211222 211043  180  1  0   81   90   176 0.985  17.16
 6.09 Intr - 212627 212439  189  2  0   99  119    14 0.775   5.38
 6.08 Intr - 215799 215620  180  0  0   87   84   113 0.895  10.86
 6.07 Intr - 216562 216438  125  2  2   61   98    41 0.946   2.70
 6.06 Intr - 220051 219880  172  1  1   91   80    51 0.965   4.12
 6.05 Intr - 220686 220569  118  2  1   50   73   203 0.997  15.47
 6.04 Intr - 222747 222601  147  2  0   67   55   114 0.972   5.35
 6.03 Intr - 223175 223073  103  0  1  100   69    22 0.948   0.73
 6.02 Intr - 224795 224553  243  0  0   76   69   126 0.510   6.97
 6.01 Init - 227552 227399  154  2  1   42   41   113 0.194   2.16

Suboptimal exons with probability > 0.800

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

S.001 Term -  17045  16999   47  0  2  121   53    47 0.814   1.87


Predicted peptide sequence(s):

Predicted coding sequence(s):


>gi568815582r:3558132_3790987|GENSCAN_predicted_peptide_1|791_aa
MEMDAPRPPSLAVPGAASRPGRDSVQDESHVSSEWGLSRDARSDTGHLVKCEFQIIHFFA
PLGSRGSQLWLEPPEELKLDPRGGPCQTNQISGWLLDGGHGRQQVQALSSQLLEVIPDSM
RKQEVRTGREAGQGHGTGSPAEQVKALMDLLAGKGSQGSQAPQALDRTPDAPLGPCSNDS
RIQRHRKALLSKVGGGPELGGPWHRLASLLLVEGLTDLQLREHDFTQVEATRGGGHPART
VALDRLFLPLSRVSVPPRVSITIGVAGMGKTTLVRHFVRLWAHGQVGKDFSLVLPLTFRD
LNTHEKLCADRLICSVFPHVGEPSLAVAVPARALLILDGLDECRTPLDFSNTVACTDPKK
EIPVDHLITNIIRGNLFPEVSIWITSRPSASGQIPGGLVDRMTEIRGFNEEEIKVCLEQM
FPEDQALLGWMLSQVQADRALYLMCTVPAFCRLTGMALGHLWRSRTGPQDAELWPPRTLC
ELYSWYFRMALSGEGQEKGKASPRIEQVAHGGRKMVGTLGRLAFHGLLKKKYVFYEQDMK
AFGVDLALLQGAPCSCFLQREETLASSVAYCFTHLSLQEFVAAAYYYGASRRAIFDLFTE
SGVSWPRLGFLTHFRSAAQRAMQAEDGRLDVFLRFLSGLLSPRVNALLAGSLLAQGEHQA
YRTQVAELLQGCLRPDAAVCARAINVLHCLHELQHTELARSVEEAMESGALARLTGPAHR
AALAYLLQVSDACAQEANLSLSLSQGVLQSLLPQLLYCRKLRLDTNQFQDPVMELLGSVL
SGKDCRIQKIS

>gi568815582r:3558132_3790987|GENSCAN_predicted_CDS_1|2373_bp
atggagatggacgcccccaggccccccagtcttgctgtccctggagcagcatcgaggccc
gggagggacagtgtccaggatgaaagccacgtttcgtctgaatggggcctgagcagggat
gccagatcagatacaggacacttggtcaaatgtgaatttcaaataatccatttctttgcc
ccgctcgggtcccgtggttctcaactctggttagaaccaccggaggagcttaaactagat
ccacgtgggggcccttgccagaccaatcaaatctctgggtggctgctggatggggggcac
ggcaggcagcaggttcaggccctctcttcacagctcctggaggtgatccccgactccatg
aggaagcaagaggtgcggacgggcagggaggccggccagggccacggtacgggctcccca
gccgagcaggtgaaagccctcatggatctgctggctgggaagggcagtcaaggctcccag
gccccgcaggccctggataggacaccggatgccccgctggggccctgcagcaatgactca
aggatacagaggcaccgcaaggccctgctgagcaaggtgggaggtggcccggagctgggc
ggaccctggcacaggctggcctccctcctgctggtggagggcctgacggacctgcagctg
agggaacacgacttcacacaggtggaggccacccgcgggggcgggcaccccgccaggacc
gtcgccctggaccggctcttcctgcctctctcccgggtgtctgtcccaccccgggtctcc
atcactatcggggtggccggcatgggcaagaccaccctggtgaggcacttcgtccgcctc
tgggcccatgggcaggtcggcaaggacttctcgctggtgctgcctctgaccttccgggat
ctcaacacccacgagaagctgtgtgccgaccgactcatctgctcggtcttcccgcacgtc
ggggagcccagcctggcggtggcagtcccagccagggccctcctgatcctggacggcttg
gatgagtgcaggacgcctctggacttctccaacaccgtggcctgcacggacccaaagaag
gagatcccggtggaccacctgatcaccaacatcatccgtggcaacctctttccggaagtt
tccatctggatcacctcccgtcccagtgcatctggccagatcccagggggcctggtggac
cggatgacggagatccggggctttaacgaggaggagatcaaggtgtgtttggagcagatg
ttccccgaggaccaggcccttctgggctggatgctgagccaagtgcaggctgacagggcc
ctgtacctgatgtgcaccgtcccagccttctgcaggctcacggggatggcgctaggccac
ctgtggcgcagcaggacggggccccaggatgcagagctgtggcccccgaggaccctgtgc
gagctctactcatggtactttaggatggccctcagcggggaggggcaggagaagggcaag
gcaagccctcgcatcgagcaggtggcccatggtggccgcaagatggtggggacattgggc
cgtctggccttccatgggctgctcaagaagaaatacgtgttttacgagcaagacatgaag
gcgtttggtgtagacctcgctctgctgcagggcgccccgtgcagctgcttcctgcagaga
gaggagacgttggcatcgtcagtggcctactgcttcacccacctgtccctgcaggagttt
gtggcagccgcgtattactatggcgcatccaggagggccatcttcgacctcttcactgag
agcggcgtatcctggcccaggctgggcttcctcacgcatttcaggagcgcagcccagcgg
gccatgcaggcagaggacgggaggctggacgtgttcctgcgcttcctctccggcctcttg
tctccgagggtcaatgccctcctggccggctccctgctggcccaaggcgagcaccaggcc
taccggacccaggtggctgagctcctgcagggctgcctgcgccccgatgccgcagtctgt
gcacgggccatcaacgtgttgcactgcctgcatgagctgcagcacaccgagctggcccgc
agcgtggaggaggccatggagagcggggccctggccaggctgactggtcccgcgcaccgc
gctgccctggcctacctcctgcaggtgtccgacgcctgtgcccaggaggccaacctgtcc
ctgagcctcagccagggcgtccttcagagcctgctgccccagctgctctactgccggaag
ctcaggctggacaccaaccagttccaggaccccgtgatggagctgctgggcagcgtgctg
agtgggaaggactgtcgcattcagaagatcagn

>gi568815582r:3558132_3790987|GENSCAN_predicted_peptide_2|1827_aa
MDESDEDFKELCASFFQRVKKHGIKEVSGERKTQKAASNGTQIRSKLKRTKQTATKTKTL
QGPAEKKPPSGSQAPRTKKQRVTKWQASEPAHSVNGEGGVLASAPDPPVLRETAQNTQTG
NQQEPSPNLSREKTRAVPSPSKPRTAQLVLQRMQQFKRADPERLRHASEECSLEAAREEN
VPKDPQEEMMAGNVYGLGPPAPESDAAVALTLQQEFARVGASAHDDSLEEKGLFFCQICQ
KNLSAMNVTRREQHVNRCLDEAEKTLRPSVPQIPECPICGKPFLTLKSRTSHLKQCAVKM
EVGPQLLLQAVRLQTAQPEGSSSPPMFSFSDHSRGLKRRGPTSKKEPRKRRKVDEAPSED
LLVAMALSRSEMEPGAAVPALRLESAFSERIRPEAGLCDQKSDPGRGHQQVPENKSRKKK
PPVSPPLLLVQDSETTGRQIEDRVALLLSEEVELSSTPPLPASRILKEGWERAGQCPPPP
ERKQSFLWEGSALTGAWAMEDFYTARLVPPLVPQRPAQGLMQEPVPPLVPPEHSELSERR
SPALHGTPTAGCGSRGPSPSASQREHQALQDLVDLAREGLSASPWPGSGGLAGSEGTAGL
DVVPGGLPLTGFVVPSQDKHPDRGGRTLLSLGLLVADFGAMVNNPHLSDVQFQTDSGEVL
YAHKFVLYARCPLLIQYVNNEGFSAVEDGVLTQRVLLGDVSTEAARTFLHYLYTADTGLP
PGLSSELSSLAHRFGVSELVHLCEQVPIATDSEGKPWEEKEAENCESRAENFQELLRSMW
ADEEEEAETLLKSKDHEEDQENVNEAEMEEIYEFAATQRKLLQEERAAGAGEDADWLEGG
SPVSGQLLAGVQVQKQWDKVEEMEPLEPGRDEAATTWEKMGQCALPPPQGQHSGARGAEA
PEQEAPEEALGHSSCSSPSRDCQAERKEGSLPHSDDAGDYEQLFSSTQGEISEPSQITSE
PEEQSGAVRERGLEVSHRLAPWQASPPHPCRFLLGPPQGGSPRGSHHTSGSSLSTPRSRG
GTSQVGSPTLLSPAVPSKQKRDRSILTLSKEPGHQKGKERRSVLECRNKGVLMFPEKSPS
IDLTQSNPDHSSSRSQKSSSKLNEEDEVILLLDSDEELELEQTKMKSISSDPLEEKKALE
ISPRSCELFSIIDVDADQEPSQSPPRSEAVLQQEDEGALPENRGSLGRRGAPWLFCDRES
SPSEASTTDTSWLVPATPLASRSRDCSSQTQISSLRSGLAVQAVTQHTPRASVGNREGNE
VAQKFSVIRPQTPPPQTPSSCLTPVSPGTSDGRRQGHRSPSRPHPGGHPHSSPLAPHPIS
GDRAHFSRRFLKHSPPGPSFLNQTPAGEVVEVGDSDDEQEVASHQANRSPPLDSDPPIPI
DDCCWHMEPLSPIPIDHWNLERTGPLSTSSPSRRMNEAADSRDCRSPGLLDTTPIRGSCT
TQRKLQEKSSGAGSLGNSRPSFLNSALWDVWDGEEQRPPETPPPAQMPSAGGAQKPEGLE
TPKGANRKKNLPPKVPITPMPQYSIMETPVLKKELDRFGVRPLPKRQMVLKLKEIFQYTH
QTLDSDSEDESQSSQPLLQAPHCQTLASQTYKPSRAGVHAQQEATTGPGAHRPKGPAKTK
GPRHQRKHHESITPPSRSPTKEAPPGLNDDAQIPASQESVATSVDGSDSSLSSQRPGSMG
PVDTFLPLKRLMVSGAGEKGVAQRPGLALFSSSSCEFGAAFESAGEEEGEGEVSASQAAV
QAADTDEALRCYIRSKPALYQKVLLYQPFELRELQAELRQNGLRVSSRRLLDFLDTHCIT
FTTAATRREKLQGRRRQPRGKKKVERN

>gi568815582r:3558132_3790987|GENSCAN_predicted_CDS_2|5484_bp
atggatgagtctgatgaggactttaaagaactctgcgctagctttttccaaagggtgaaa
aaacatggaatcaaggaagtgtcaggagaaaggaagacacaaaaggctgcctcaaacggc
actcagataagaagcaaattgaaaaggaccaaacaaactgctaccaagaccaaaaccctt
caaggccctgcagagaagaaacctccgtctggcagccaggcccctaggactaaaaagcaa
agggtaaccaaatggcaagcaagtgaaccggcccactctgtgaatggggaggggggtgtg
cttgcctctgctccagatccacctgtgctccgggaaacagcacaaaacacccagacgggt
aaccagcaagaaccatcgccaaacctttccagagagaaaaccagagcagtgccaagtccc
tccaaaccccgcacagcacaattggtcctacagcgaatgcagcagttcaagagagcagac
cccgagcgtttgagacacgcttcagaagagtgctccctcgaggctgcgcgggaagaaaat
gtcccaaaggatcctcaagaggagatgatggcggggaatgtgtatgggcttgggccccct
gccccagagagcgacgctgcggtggccttgaccctgcagcaggagtttgcacgggtagga
gcatcggcacatgatgatagcctggaggaaaagggtttgttcttctgccagatttgtcaa
aagaacctctcagccatgaacgtgacccgaagggaacagcatgtgaacaggtgcttggat
gaagctgaaaagacactaagaccttctgtgcctcagatccctgagtgcccgatttgtggg
aaaccgtttcttaccttaaagagcagaaccagtcacttgaagcagtgtgctgtgaagatg
gaggttggcccccagctcctgcttcaggctgtgcggctgcagacagcacagcctgagggt
agcagcagcccacccatgttcagcttcagtgatcacagtagaggtctgaaacggagagga
cccaccagcaagaaggagccacggaagaggcggaaggtggacgaggcaccgtccgaggac
ctgctggtggccatggctctgtcccggtcggagatggagccgggtgcggctgtaccagcg
ctcaggctggaaagtgccttttctgagaggataagaccagaagcaggtttgtgtgatcag
aagagtgaccctgggagaggccatcagcaggtcccggagaataaaagtcgcaagaagaaa
cccccggtatcccccccattgttgttagtccaggactctgaaaccacaggccgacagata
gaggaccgtgtggccctgctcctctctgaggaagtggaattgtctagcacgccaccactt
cctgccagcaggattttaaaggaagggtgggaaagagcgggccagtgtcctcctccacct
gaacgcaagcagagctttctgtgggagggcagcgcactgactggggcctgggccatggag
gacttctacacggccaggctggtccctcctctcgtgccccagcggcctgcccagggcctt
atgcaggagcccgtgccgcctctggtgccacctgagcactcagagctgagcgagcgaagg
tcacccgctctccacggcacccccactgcaggctgtggctccaggggcccgtcgccttcg
gccagccagagggagcaccaggccctgcaggacctcgtggacctggcgagggagggactg
agcgccagcccgtggcccggcagtgggggcctggctggctcggaagggactgcagggttg
gacgtggtgcccggcggccttcctctgactgggtttgtggtgccatcgcaggacaagcac
ccggacaggggcggccgcaccttgctctccctcgggctgctggttgctgactttggcgcc
atggtcaataacccacacctgagtgatgtccagtttcagacggacagcggggaggtgctt
tacgcccacaagttcgtgctttatgcccgatgcccgctcctcatccagtatgtgaacaat
gaaggcttctccgctgtagaggacggggttctgacccagcgtgtcctgctgggtgacgtg
agcaccgaggccgcccgcacgttcctgcactatctctacactgcggacactggccttcct
cctggccttagctctgagctgagctccctggcccacaggtttggcgtgagtgagctcgtt
cacctgtgcgaacaggtgcctattgccactgactcagagggcaaaccatgggaggagaag
gaagcagagaattgcgaaagcagggccgagaatttccaggaactcttgaggtcaatgtgg
gcagatgaagaggaggaagcggagactttgttgaaatccaaggaccacgaagaagatcaa
gaaaacgtgaatgaagcagaaatggaagaaatttatgaatttgcagctactcagcgaaag
cttctccaggaagaaagggcagcgggtgccggcgaggacgctgactggctggagggtggc
agtccggtttctgggcaactcctagcaggtgtccaggtgcagaaacagtgggacaaggtg
gaggagatggagccgttggagccaggaagagatgaggccgccaccacctgggagaagatg
ggacagtgcgctctcccgccaccccagggccagcactcaggggcacggggagcagaggcc
cctgagcaggaggcgccagaggaggcgcttggccattccagctgctccagcccttccagg
gactgccaggcagagagaaaagaaggctctcttccgcactcagatgatgccggggattac
gaacagctcttctcatcaactcagggagagatctcagagccgtcccaaataacaagtgag
cccgaggaacaaagtggcgctgtcagggaaagggggctggaggtttctcatcgcctggct
ccctggcaggcatctccaccgcacccgtgccgcttcctattggggcctccccagggcggg
agtccccgcgggtctcatcacacaagtgggtcgtccctgtcaacaccccggtcccgtggc
ggaacttcccaggtgggctccccaaccttgctgtctccagctgtgccatcaaagcagaaa
agggacaggagcatcctcacgctgtctaaagagccagggcaccagaaaggcaaagagcgt
cggtccgtgctggagtgcagaaataagggggtcctgatgttcccagaaaaatctccgtct
attgacctaacccagtcaaatcctgaccattcgagctccagatctcagaaatcttcatcc
aaactgaacgaagaagatgaggtcatcctcttactggactcggatgaggagctggagcta
gaacaaaccaaaatgaagtccatttctagtgatcctctggaagaaaagaaagctctagaa
attagccctaggtcctgtgagctgttttccatcattgatgttgatgcagatcaggaacct
tcccagagcccaccaagaagcgaagctgtgctgcagcaggaggatgagggggcgctgccg
gagaatcggggctctttgggcaggagaggggctccctggctgttctgtgaccgtgagagc
agccccagcgaggccagcaccacagacacctcgtggctggtgcccgccaccccgctggcc
agcagaagccgtgactgttcttcccagacccaaatcagcagcctcaggagcgggctggcc
gtgcaggcggtgactcagcacacgcccagggcctcagtaggaaacagggaagggaacgaa
gtcgcacagaagttttctgtcatcaggccccagacaccaccgccccagacaccgtcctca
tgcctcactcccgtctctccaggaacttctgacggcagaaggcaaggccacagaagccct
tcccgtccccaccccgggggccacccgcactcctctccgctggctccacatcccatctca
ggggaccgcgcccacttcagcaggcggttcctgaaacactcgccgcctgggccaagcttc
ctgaaccagaccccagcgggtgaagtggtggaagtcggagacagtgacgatgagcaggag
gtggcctcccatcaggccaacagaagccccccactggacagtgaccccccaattccaatt
gacgactgctgctggcacatggagcccctctcgccaattcccattgaccactggaacctg
gagcggaccggccccctgagcaccagcagccccagccgcaggatgaacgaggccgccgac
agccgtgactgtcgctccccgggactcctggacaccacccccatccgaggaagctgcact
acccagaggaaattgcaagagaagtcctcgggcgcgggctccctggggaatagcaggccg
agctttctgaattcggctctgtgggacgtttgggacggggaagagcagaggcctccagag
acccctcctccggcccagatgccaagcgctggtggagctcagaagcccgaagggttagag
acacccaaaggtgctaatcggaagaagaacttgccccccaaagtgcccataacgccgatg
ccacagtattccattatggagacgccggtgctgaagaaggaactggataggtttggagtc
cgccctctgcctaaacgccagatggttctgaagctgaaggagatattccagtacactcac
cagaccctggactcagactccgaggacgagagccagtcctcacagccgctgttgcaggcg
cctcactgccagaccctcgcctcccagacctacaagccttcaagggcaggggtccatgcc
cagcaggaggccaccacaggacctggggcccataggcccaagggacctgctaagaccaag
ggcccccgacatcaaaggaagcatcatgaaagcatcacacccccaagcaggtcgcccacc
aaggaggcacctccaggcctcaatgatgacgcccagatcccagcctctcaagaatccgtg
gccacctctgtggatggcagtgacagctccttgagctcacagaggccaggctccatggga
cccgtagacaccttccttcctttaaagaggctcatggtctcaggggctggagagaaaggg
gttgcacaacgtcctggtctggctcttttcagttcttcctcctgtgagtttggagcggca
tttgagtctgcaggtgaagaggagggcgagggggaggtcagtgcctcgcaggcagccgtg
caggcggcggacacagacgaggcgctgaggtgctacatccgctccaagccggccctgtac
cagaaggtgctgctgtaccagccctttgagctgcgggagctgcaggcagagctgaggcag
aacggcctccgtgtgtcctcgcgcaggctgttggacttcctggacacccactgtatcacc
ttcaccactgccgccacccgcagggagaagctccagggcaggaggcggcagcctcggggc
aagaagaaggtggagcggaactga

>gi568815582r:3558132_3790987|GENSCAN_predicted_peptide_3|66_aa
MALLQLHAVGGVALTSSHPSMWATGEELRKPPWQGSAGSASGVEELTGKHSCPGPEEPAT
VQKAPA

>gi568815582r:3558132_3790987|GENSCAN_predicted_CDS_3|201_bp
atggccctgctgcagctccacgctgtggggggcgtggccctgaccagcagccacccctcc
atgtgggccacaggggaggagcttaggaagccgccttggcaaggttccgcaggctctgcg
tctggtgtggaagagctcacggggaagcactcctgcccaggacccgaggagccggccacc
gttcagaaggccccagcttga

>gi568815582r:3558132_3790987|GENSCAN_predicted_peptide_4|282_aa
MRGMKLLGALLALAALLQGAVSLKIAAFNIQTFGETKMSNATLVSYIVQILSRYDIALVQ
EVRDSHLTAVGKLLDNLNQDAPDTYHYVVSEPLGRNSYKERYLFVYRPDQVSAVDSYYYD
DGCEPCGNDTFNREPAIVRFFSRFTEVREFAIVPLHAAPGDAVAEIDALYDVYLDVQEKW
GLEDVMLMGDFNAGCSYVRPSQWSSIRLWTSPTFQWLIPDSADTTATPTHCAYDRIVVAG
MLLRGAVVPDSALPFNFQAAYGLSDQLAQAISDHYPVEVMLK

>gi568815582r:3558132_3790987|GENSCAN_predicted_CDS_4|849_bp
atgaggggcatgaagctgctgggggcgctgctggcactggcggccctactgcagggggcc
gtgtccctgaagatcgcagccttcaacatccagacatttggggagaccaagatgtccaat
gccaccctcgtcagctacattgtgcagatcctgagccgctatgacatcgccctggtccag
gaggtcagagacagccacctgactgccgtggggaagctgctggacaacctcaatcaggat
gcaccagacacctatcactacgtggtcagtgagccactgggacggaacagctataaggag
cgctacctgttcgtgtacaggcctgaccaggtgtctgcggtggacagctactactacgat
gatggctgcgagccctgcgggaacgacaccttcaaccgagagccagccattgtcaggttc
ttctcccggttcacagaggtcagggagtttgccattgttcccctgcatgcggccccgggg
gacgcagtagccgagatcgacgctctctatgacgtctacctggatgtccaagagaaatgg
ggcttggaggacgtcatgttgatgggcgacttcaatgcgggctgcagctatgtgagaccc
tcccagtggtcatccatccgcctgtggacaagccccaccttccagtggctgatccccgac
agcgctgacaccacagctacacccacgcactgtgcctatgacaggatcgtggttgcaggg
atgctgctccgaggcgccgttgttcccgactcggctcttccctttaacttccaggctgcc
tatggcctgagtgaccaactggcccaagccatcagtgaccactatccagtggaggtgatg
ctgaagtga

>gi568815582r:3558132_3790987|GENSCAN_predicted_peptide_5|977_aa
MARELRALLLWGRRLRPLLRAPALAAVPGGALVIVTCVDEWEVYSANTFPMPPSRQRKCD
PAVWSHRWLLSSVPGPSWWPGQHIRETRAACPRAPVGPLKCEESFVYEVSPHQNCIGSLV
PVFGERYSQTKIWLPGKPILCPRRTTAQLGPRRNPAWSLQAGRLFSTQTAEDKEEPLHSI
ISSTESVQGSTSKHEFQAETKKLLDIVARSLYSEKEVFIRELISNASDALEKLRHKLVSD
GQALPEMEIHLQTNAEKGTITIQDTGIGMTQEELVSNLGTIARSGSKAFLDALQNQAEAS
SKIIGQFGVGFYSAFMVADRVEVYSRSAAPGSLGYQWLSDGSGVFEIAEASGVRTGTKII
IHLKSDCKEFSSEARCTWGFGAVLSQDVGVAFPLCVLLDTQGGPEYPQESAQKAMFQPQA
DIAVSQQPGPPQLWFSRGLRCCPHVVTKYSNFVSFPLYLNGRRMNTLQAIWMMDPKDVRE
WQHEEFYRYVAQAHDKPRYTLHYKTDAPLNIRSIFYVPDMKPSMFDVSRELGSSVALYSR
KVLIQTKATDILPKWLRFIRGTLLRVREQCPRGPVSPAASVRDRADSILSSPLQREHRRR
PALPRALAVAHGAESRGGRGSPACTWGPSGAFQVLAWPLKLVVQKKHAMERALLEPPTCL
QCFSAHRFLSSVEMEADPRKKDESGKLRDVLQQRLIKFFIDQSKKDAEKYAKFFEDYGLF
MREGIVTATEQEVKEDIAKLLRYESSALPSGQLTSLSEYASRMRAGTRNIYYLCAPNRHL
AEHSPYYEAMKKKDTEVLFCFEQFDELTLLHLREFDKKKLISVETDIVVDHYKEEKFEDR
SPAAECLSEKETEELMAWMRNVLGSRVTNVKVTLRLDTHPAMVTVLEMGAARHFLRMQQL
AKTQEERAQLLQPTLEINPRHALIKKLNQLRASEPGLAQLLVDQIYENAMIAAGLVDDPR
AMVGRLNELLVKALERH

>gi568815582r:3558132_3790987|GENSCAN_predicted_CDS_5|2934_bp
atggcgcgcgagctgcgggcgctgctgctgtggggccgccgcctgcggcctttgctgcgg
gcgccggcgctggcggccgtgccgggaggtgcccttgtcattgtcacctgtgtggatgaa
tgggaagtttattcagcaaatacatttccaatgcccccgagtcgtcaaagaaaatgtgac
cctgctgtctggagtcataggtggctgctgagcagtgtaccagggccatcttggtggcct
ggacagcacattagagaaacaagagctgcttgccccagggctcccgtagggccattgaaa
tgtgaagaatccttcgtctatgaagtgtccccacatcaaaactgcattggatctctggtt
cctgtttttggagagaggtattcacaaaccaagatctggctgccaggaaaaccaattctg
tgtcctcggaggaccacagcccagttgggccccaggcgaaacccagcctggagcttgcag
gcaggacgactgttcagcacgcagaccgccgaggacaaggaggaacccctgcactcgatt
atcagcagcacagagagcgtgcagggttccacttccaaacatgagttccaggccgagaca
aagaagcttttggacattgttgcccggtccctgtactcagaaaaagaggtgtttatacgg
gagctgatctccaatgccagcgatgccttggaaaaactgcgtcacaaactggtgtctgac
ggccaagcactgccagaaatggagattcacttgcagaccaatgccgagaaaggcaccatc
accatccaggatactggtatcgggatgacacaggaagagctggtgtccaacctggggacg
attgccagatcggggtcaaaggccttcctggatgctctgcagaaccaggctgaggccagc
agcaagatcatcggccagtttggagtgggtttctactcagctttcatggtggctgacaga
gtggaggtctattcccgctcggcagccccggggagcctgggttaccagtggctttcagat
ggttctggagtgtttgaaatcgccgaagcttcgggagttagaaccgggacaaaaatcatc
atccacctgaaatccgactgcaaggagttttccagcgaggcccggtgcacctgggggttt
ggcgcagtcctgtcccaggatgtgggcgtggccttccctctttgtgtcctgctggacact
cagggaggccctgagtacccccaggagtcagcccagaaagccatgttccagccacaagct
gacattgcagtctcgcagcagccggggcctccacagctctggttctcacgtgggctccgc
tgctgcccccatgtggtaacgaagtacagcaacttcgtcagcttccccttgtacttgaat
ggaaggcggatgaacaccttgcaggccatctggatgatggaccccaaggatgtccgtgag
tggcaacatgaggagttctaccgctacgtcgcgcaggctcacgacaagccccgctacacc
ctgcactataagacggacgcaccgctcaacatccgcagcatcttctacgtgcccgacatg
aaaccgtccatgtttgatgtgagccgggagctgggctccagcgttgcactgtacagccgc
aaagtcctcatccagaccaaggccacggacatcctgcccaagtggctgcgcttcatccga
ggtacgctgctcagagtccgtgagcagtgcccccgtggcccagtgtcgcccgctgcatct
gtgagggaccgtgctgattccattctcagcagccctctgcagcgagagcaccgccgtcgg
cctgcgctgcctagggccctagccgtggcccatggagctgagagcagaggtggtcgggga
agcccggcctgcacatgggggccctcaggagccttccaggtgctggcctggcctctgaag
cttgtggtccagaagaagcatgccatggaacgggccttgttggagcccccaacgtgcctg
cagtgtttctctgcccaccggtttctctccagtgttgaaatggaagcagatcctcggaaa
aaggatgagtctgggaaactccgggacgttttacagcagaggctgatcaaattcttcatt
gaccagagtaaaaaagatgctgagaagtatgcaaagttttttgaagattacggcctgttc
atgcgggagggcattgtgaccgccaccgagcaggaggtcaaggaggacatagcaaagctg
ctgcgctacgagtcctcggcgctgccctccgggcagctaaccagcctctcagaatacgcc
agccgcatgcgggccggcacccgcaacatctactacctgtgcgcccccaaccgtcacctg
gcagagcactcaccctactatgaggccatgaagaagaaagacacagaggttctcttctgc
tttgagcagtttgatgagctcaccctgctgcaccttcgtgagtttgacaagaagaagctg
atctctgtggagacggacatagtcgtggatcactacaaggaggagaagtttgaggacagg
tccccagccgccgagtgcctatcagagaaggagacggaggagctcatggcctggatgaga
aatgtgctggggtcgcgtgtcaccaacgtgaaggtgaccctccgactggacacccaccct
gccatggtcaccgtgctggagatgggggctgcccgccacttcctgcgcatgcagcagctg
gccaagacccaggaggagcgcgcacagctcctgcagcccacgctggagatcaaccccagg
cacgcgctcatcaagaagctgaatcagctgcgcgcaagcgagcctggcctggctcagctg
ctggtggatcagatatacgagaacgccatgattgctgctggacttgttgacgaccctagg
gccatggtgggccgcttgaatgagctgcttgtcaaggccctggagcgacactga

>gi568815582r:3558132_3790987|GENSCAN_predicted_peptide_6|1940_aa
MPGRWTNLRAFLFSSKTLHGLRCEGPRCAGRCAIAGTSPGLCTAGYVAHVAAILGSPASG
IQNTIGSVGTGQQNATSLSNPNPIDPSSMQRAYAALGLPYMNQPQTQLQPQVPGQQPAQP
QTHQQMRTLNPLGNNPMNIPAGGITTDQQPPNLISESALPTSLGATNPLMNDGSNSGNIG
TLSTIPTAAPPSSTGVRKGWHEHVTQDLRSHLVHKLVQAIFPTPDPAALKDRRMENLVAY
AKKVEGDMYESANSRDEYYHLLAEKIYKIQKELEEKRRSRLHKQGILGNQPALPAPGAQP
PVIPQAQPVRPPRMNSFNPMSLGNVQLPQAPMGPRAASPMNHSVQMNSMGSVPGMAISPS
RMPQPPNMMGAHTNNMMAQAPAQSQFLPQNQFPSSSGAMSVGMGQPPAQTGVSQTPTPTP
GSVPSATQTQSTPTVQAAAQAQVTPQPQTPVQPPSVATPQSSQQQPTPVHAQPPGTPLSQ
AAASIDNRVPTPSSVASAETNSQQPGPDVPVLEMKTETQAEDTEPDPGESKGEPRSEMME
EDLQGASQVKEETDIAEQKSEPMEVDEKKPEVKVEVKEEEESSSNGTASQSTSPSQPRKK
IFKPEELRQALMPTLEALYRQDPESLPFRQPVDPQLLGIPDYFDIVKNPMDLSTIKRKLD
TGQYQEPWQYVDDVWLMFNNAWLYNRKTSRVYKFCSKLAEVFEQEIDPVMQSLGYCCGRK
YEFSPQTLCCYGKQLCTIPRDAAYYSYQNRYHFCEKCFTEIQGENVTLGDDPSQPQTFVD
CKECGRKMHQICVLHYDIIWPSGFVCDNCLKKTGRPRKENKFSAKRLQTTRLGNHLEDRV
NKFLRRQNHPEAGEVFVRVVASSDKTVEVKPGMKSRFVDSGEMSESFPYRTKALFAFEEI
DGVDVCFFGMHVQEYGSDCPPPNTRRVYISYLDSIHFFRPRCLRTAVYHEILIGYLEYVK
KLGYVTGHIWACPPSEGDDYIFHCHPPDQKIPKPKRLQEWYKKMLDKAFAERIIHDYKDI
FKQATEDRLTSAKELPYFEGDFWPNVLEESIKELEQEEEERKKEESTAASETTEGSQGDS
KNAKKKNNKKTNKNKSSISRANKKKPSMPNVSNDLSQKLYATMEKHKEVFFVIHLHAGPV
INTLPPIVDPDPLLSCDLMDGRDAFLTLARDKHWEFSSLRRSKWSTLCMLVELHTQGQDR
FVYTCNECKHHVETRWHCTVCEDYDLCINCYNTKSHAHKMVKWGLGLDDEGSSQGEPQSK
SPQESRRLSIQRCIQSLVHACQCRNANCSLPSCQKMKRVVQHTKGCKRKTNGGCPVCKQL
IALCCYHAKHCQENKCPVPFCLNIKHKLRQQQIQHRLQQAQLMRRRMATMNTRNVPQQSL
PSPTSAPPGTPTQQPSTPQTPQPPAQPQPSPVSMSPAGFPSVARTQPPTTVSTGKPTSQV
PAPPPPAQPPPAAVEAARQIEREAQQQQHLYRVNINNSMPPGRTGMGTPGSQMAPVSLNV
PRPNQVSGPVMPSMPPGQWQQAPLPQQQPMPGLPRPVISMQAQAAVAGPRMPSVQPPRSI
SPSALQDLLRTLKSPSSPQQQQQVLNILKSNPQLMAAFIKQRTAKYVANQPGMQPQPGLQ
SQPGMQPQPGMHQQPSLQNLNAMQAGVPRPGVPPQQQAMGGLNPQGQALNIMNPGHNPNM
ASMNPQYREMLRRQLLQQQQQQQQQQQQQQQQQQGSAGMAGGMAGHGQFQQPQGPGGYPP
AMQQQQRMQQHLPLQGSSMGQMAAQMGQLGQMGQPGLGADSTPNIQQALQQRILQQQQMK
QQIGSPGQPNPMSPQQHMLSGQPQASHLPGQQIATSLSNQVRSPAPVQSPRPQSQPPHSS
PSPRIQPQPSPHHVSPQTGSPHPGLAVTMASSIDQGHLGNPEQSAMLPQLNTPSRSALSS
ELSLVGDTTGDTLEKFVEGL

>gi568815582r:3558132_3790987|GENSCAN_predicted_CDS_6|5823_bp
atgccaggtagatggaccaatctccgtgcatttctgttcagttccaagacactccatggg
ctgcgctgcgagggcccacgatgtgctggccgctgcgctatagctggcacgtcccctgga
ctctgcacagcaggttacgtggcccatgtggcagccatcctggggtctccagctagtgga
attcaaaacacaattggttctgttggcacagggcaacagaatgccacttctttaagtaac
ccaaatcccatagaccccagctccatgcagcgagcctatgctgctctcggactcccctac
atgaaccagccccagacgcagctgcagcctcaggttcctggccagcaaccagcacagcct
caaacccaccagcagatgaggactctcaaccccctgggaaataatccaatgaacattcca
gcaggaggaataacaacagatcagcagcccccaaacttgatttcagaatcagctcttccg
acttccctgggggccacaaacccactgatgaacgatggctccaactctggtaacattgga
accctcagcactataccaacagcagctcctccttctagcaccggtgtaaggaaaggctgg
cacgaacatgtcactcaggacctgcggagccatctagtgcataaactcgtccaagccatc
ttcccaacacctgatcccgcagctctaaaggatcgccgcatggaaaacctggtagcctat
gctaagaaagtggaaggggacatgtacgagtctgccaacagcagggatgaatattatcac
ttattagcagagaaaatctacaagatacaaaaagaactagaagaaaaacggaggtcgcgt
ttacataaacaaggcatcttggggaaccagccagccttaccagccccgggggctcagccc
cctgtgattccacaggcacaacctgtgagacctccaaggatgaattcatttaaccccatg
tccttggggaacgtccagttgccacaagcacccatgggacctcgtgcagcctccccaatg
aaccactctgtccagatgaacagcatgggctcagtgccagggatggccatttctccttcc
cgaatgcctcagcctccgaacatgatgggtgcacacaccaacaacatgatggcccaggcg
cccgctcagagccagtttctgccacagaaccagttcccgtcatccagcggggcgatgagt
gtgggcatggggcagccgccagcccaaacaggcgtgtcacagactcccaccccgactcct
ggctcagtgcccagtgctacccaaacccagagcacccctacagtccaggcagcagcccag
gcccaggtgaccccgcagcctcaaaccccagttcagcccccgtctgtggctacccctcag
tcatcgcagcaacagccgacgcctgtgcacgcccagcctcctggcacaccgctttcccag
gcagcagccagcattgataacagagtccctaccccctcctcggtggccagcgcagaaacc
aattcccagcagccaggacctgacgtacctgtgctggaaatgaagacggagacccaagca
gaggacactgagcccgatcctggtgaatccaaaggggagcccaggtctgagatgatggag
gaggatttgcaaggagcttcccaagttaaagaagaaacagacatagcagagcagaaatca
gaaccaatggaagtggatgaaaagaaacctgaagtgaaagtagaagttaaagaggaagaa
gagagtagcagtaacggcacagcctctcagtcaacatctccttcgcagccgcgcaaaaaa
atctttaaaccagaggagttacgccaggccctcatgccaaccctagaagcactgtatcga
caggacccagagtcattacctttccggcagcctgtagatccccagctcctcggaattcca
gactattttgacatcgtaaagaatcccatggacctctccaccatcaagcggaagctggac
acagggcaataccaagagccctggcagtacgtggacgacgtctggctcatgttcaacaat
gcctggctctataatcgcaagacatcccgagtctataagttttgcagtaagcttgcagag
gtctttgagcaggaaattgaccctgtcatgcagtcccttggatattgctgtggacgcaag
tatgagttttccccacagactttgtgctgctatgggaagcagctgtgtaccattcctcgc
gatgctgcctactacagctatcagaataggtatcatttctgtgagaagtgtttcacagag
atccagggcgagaatgtgaccctgggtgacgacccttcacagccccagactttcgttgat
tgcaaggagtgtggccggaagatgcatcagatttgcgttctgcactatgacatcatttgg
ccttcaggttttgtgtgcgacaactgcttgaagaaaactggcagacctcgaaaagaaaac
aaattcagtgctaagaggctgcagaccacaagactgggaaaccacttggaagaccgagtg
aacaaatttttgcggcgccagaatcaccctgaagccggggaggtttttgtccgagtggtg
gccagctcagacaagacggtggaggtcaagcccgggatgaagtcacggtttgtggattct
ggggaaatgtctgaatctttcccatatcgaaccaaagctctgtttgcttttgaggaaatt
gacggcgtggatgtctgcttttttggaatgcacgtccaagaatacggctctgattgcccc
cctccaaacacgaggcgtgtgtacatttcttatctggatagtattcatttcttccggcca
cgttgcctccgcacagccgtttaccatgagatccttattggatatttagagtatgtgaag
aaattagggtatgtgacagggcacatctgggcctgtcctccaagtgaaggagatgattac
atcttccattgccacccacctgatcaaaaaatacccaagccaaaacgactgcaggagtgg
tacaaaaagatgctggacaaggcgtttgcagagcggatcatccatgactacaaggatatt
ttcaaacaagcaactgaagacaggctcaccagtgccaaggaactgccctattttgaaggt
gatttctggcccaatgtgttagaagagagcattaaggaactagaacaagaagaagaggag
aggaaaaaggaagagagcactgcagccagtgaaaccactgagggcagtcagggcgacagc
aagaatgccaagaagaagaacaacaagaaaaccaacaagaacaaaagcagcatcagccgc
gccaacaagaagaagcccagcatgcccaacgtgtccaatgacctgtcccagaagctgtat
gccaccatggagaagcacaaggaggtcttcttcgtgatccacctgcacgctgggcctgtc
atcaacaccctgccccccatcgtcgaccccgaccccctgctcagctgtgacctcatggat
gggcgcgacgccttcctcaccctcgccagagacaagcactgggagttctcctccttgcgc
cgctccaagtggtccacgctctgcatgctggtggagctgcacacccagggccaggaccgc
tttgtctacacctgcaacgagtgcaagcaccacgtggagacgcgctggcactgcactgtg
tgcgaggactacgacctctgcatcaactgctataacacgaagagccatgcccataagatg
gtgaagtgggggctgggcctggatgacgagggcagcagccagggcgagccacagtcaaag
agcccccaggagtcacgccggctgagcatccagcgctgcatccagtcgctggtgcacgcg
tgccagtgccgcaacgccaactgctcgctgccatcctgccagaagatgaagcgggtggtg
cagcacaccaagggctgcaaacgcaagaccaacgggggctgcccggtgtgcaagcagctc
atcgccctctgctgctaccacgccaagcactgccaagaaaacaaatgccccgtgcccttc
tgcctcaacatcaaacacaagctccgccagcagcagatccagcaccgcctgcagcaggcc
cagctcatgcgccggcggatggccaccatgaacacccgcaacgtgcctcagcagagtctg
ccttctcctacctcagcaccgcccgggacccccacacagcagcccagcacaccccagacg
ccgcagccccctgcccagccccaaccctcacccgtgagcatgtcaccagctggcttcccc
agcgtggcccggactcagccccccaccacggtgtccacagggaagcctaccagccaggtg
ccggcccccccacccccggcccagccccctcctgcagcggtggaagcggctcggcagatc
gagcgtgaggcccagcagcagcagcacctgtaccgggtgaacatcaacaacagcatgccc
ccaggacgcacgggcatggggaccccggggagccagatggcccccgtgagcctgaatgtg
ccccgacccaaccaggtgagcgggcccgtcatgcccagcatgcctcccgggcagtggcag
caggcgccccttccccagcagcagcccatgccaggcttgcccaggcctgtgatatccatg
caggcccaggcggccgtggctgggccccggatgcccagcgtgcagccacccaggagcatc
tcacccagcgctctgcaagacctgctgcggaccctgaagtcgcccagctcccctcagcag
caacagcaggtgctgaacattctcaaatcaaacccgcagctaatggcagctttcatcaaa
cagcgcacagccaagtacgtggccaatcagcccggcatgcagccccagcctggcctccag
tcccagcccggcatgcaaccccagcctggcatgcaccagcagcccagcctgcagaacctg
aatgccatgcaggctggcgtgccgcggcccggtgtgcctccacagcagcaggcgatggga
ggcctgaacccccagggccaggccttgaacatcatgaacccaggacacaaccccaacatg
gcgagtatgaatccacagtaccgagaaatgttacggaggcagctgctgcagcagcagcag
caacagcagcagcaacaacagcagcaacagcagcagcagcaagggagtgccggcatggct
gggggcatggcggggcacggccagttccagcagcctcaaggacccggaggctacccaccg
gccatgcagcagcagcagcgcatgcagcagcatctccccctccagggcagctccatgggc
cagatggcggctcagatgggacagcttggccagatggggcagccggggctgggggcagac
agcacccccaacatccagcaagccctgcagcagcggattctgcagcaacagcagatgaag
cagcagattgggtccccaggccagccgaaccccatgagcccccagcaacacatgctctca
ggacagccacaggcctcgcatctccctggccagcagatcgccacgtcccttagtaaccag
gtgcggtctccagcccctgtccagtctccacggccccagtcccagcctccacattccagc
ccgtcaccacggatacagccccagccttcgccacaccacgtctcaccccagactggttcc
ccccaccccggactcgcagtcaccatggccagctccatagatcagggacacttggggaac
cccgaacagagtgcaatgctcccccagctgaacacccccagcaggagtgcgctgtccagc
gaactgtccctggtcggggacaccacgggggacacgctagagaagtttgtggagggcttg
tag
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