SGID Silkworm Genome Informatics Database
Gene
KWMTBOMO04053
Pre Gene Modal
BGIBMGA010291
Annotation
Apyrase?_partial_[Operophtera_brumata]
Location in the cell
Cytoplasmic   Reliability : 2.207
 

Sequence

CDS
ATGATATTTTATTATGTTTTTACACTGTTTGGGGTTGTGAATGCTCAAGAAAGTAGATTTGCTTTGAATATATTGCACTATAATGATTTTCATGCTAGATTCGTAGAAACCAGCCCGGCAGGCACGACCTGTAATCCAGCCGAGGCGCCATGTATCGGAGGATTTGCTAGACTGGCTACTAAAGTGAGGGAGAGACAAGCAGCTGAACCAGATTCCTTATTACTAAATGCAGGGGACAGTTTCCAAGGTACCATATGGTACAATATCTTGAGATGGAACGTAACCCAAGACTTCATGAATATGCTCAAACATGACGCTCATGTCTTAGGGAATCACGAGTTCGACAATGGTATTGAAGGCGTAGTACCTTATCTTGAGCACTTGGATTCTCCTGTAGTCACTGCCAATATTATTGATGACGATGAACCAACTATCCAAGGGCTGTACAAACCAAGTATTATAGTAGAACGAGGCGGACGGAAGATTGGTATAATCGGTGTTATTATTGCCATCACTGACCAACTAGCATCTACTGGAAGGCTGAGATTTACTAATGAAGTTGAAACAGTCAAAGCAGAAGCTGAGAAACTACACCAACAAGGAATCAACATCATCATAGTACTCTCACATTGCGGTCTGGATATTGATAAAGAACTAGCGGCAAATGGCGGTCCTCACATCGACATCGTTGTAGGAGGCCACAGTCACACCCTGCTCTTTAATGGCGAGCCTCCAGAGAACAGCGGGTTTGTCCCTCGTGGTCCCTATCCGGTTATAGTGGATACTGATGGCGGACCGGTACTGATCGTTCAAGCCGCTGCGCATACGCAGTTCCTTGGCGAGATCAAGGTATTCTTTGATGATTCAGGCAATCTACTCGATTGGGAAGGTCATCCTCATTACATCGGAAATAAAATCGAACAAGCACCCGATGTCCTAGATAAGATAAAAATATACCAACCATTGGTCGAAGAACAAGCTTCAGTAGAAATAGGTTCGTCGCTGGTGCATTTATCTTCAAGGTGCGCTTGTGGTGAATGTAATCTGGGCAGTTTTGTATGTGACGCCTTCATGCATGAAGTCATGGCCAGAGCTCAGGGTGATAGCTGGCATCATGCCCATTTTTGCGTTATCAACCGAGGAAACGTTAGGATGGATATCGCACCCGGAAAAATAACATTCGAATCAGTGATCGTATCTACACCGTTCGAAAACAACGTCGAGGTTTTCGATTTAAGAGGAGACCACATTATGGAAATGCTCGAATTTTCTGTCGCTAATGTACCGTTTGCTGGTGCGAAAATGTTGCAAGTCTCTGGATTGTTGCTGACATTCGACGGGTCGAGGCCGCTAAATGAACGCGTCCTGAACGTGGCCGTCAGGTGCATCGCCTGCGACGTCCCCAGATACGAACCGCTGGAGCTTGACAAGTATTACAGAGTTGTCTCCCAGAGTTTCATCGGAGCCGGCGGAGATGGATTCACAATGATTTCAAACAACCGTAAGAACGTCGCAGTCGTGGGCGTCGACTATGATCTGCTGATGAAGTACGTGAGGCACCGGTCTCCAGTTTTCGCGGACGTAGATGGAAGGATATACATCGACAATCCTTATTTTAATCGGAAAATGAATTGGTATTGTGTTTTGACATTGTTTGTGGTCGTGAGTGCTCATGATAATAGATATGCCTTGAATATCCTGCATTATAATGATTTTCATGCGAGATTCGTAGAAACCAGTCCAGCGGGCACACTTTGTAATCCGACCAATGCACCATGTATTGGAGGATTTGCCAGACTTGCTACTAAAGTAAGGGAGAGACAAGCAGCTGAACCAGACTCCTTGCTACTAAATGCAGGAGATAGCTTCCAGGGTACCATATGGTACAATATCTTTAGATGGAATGTAACTCAAGAGTTCATGAACATGCTCAAACATGATGCTCATGTCTTAGGAAACCATGAGTTCGATAACGGCATTGAAGGCGTAGTACCTTATCTTGAGCACTTGGATTCTCCTGTAGTCACTGCCAATATTATTGATGACGATGAGCCAAGTATCCAAGGGCTGTACAAACCAAGTATTATAGTAGAACGAGGAGGACGGAAGATTGGTATAATCGGTGTTATTATTGCCATTACCGATCAACTAGCATCTACTGGAAAACTACAATTCACCGATGAAGTTGAAACAGTCAAAGCAGAAGCGGAGAAACTACACCAACAAGGAATCGACATCATTATAGTACTGTCACATTGCGGTCTTGATATTGATAGAGAAATAGCGGCTAACGGTGGTCCTCACATCGACATCGTTGTAGGAGGTCATAGTCACACCCTGCTCTTTAATGGTGAGCCTCCAGAGAACAGCGGGTTTGTCCCTCGTGGTCCCTATCCGGTCGTTGTGGATACTGACGGCGGACCGGTATTGATCGTCCAGGCTGCCGCGCACACACAGTATCTTGGCGAGATCAAACTGTTTTTCGATGACTCAGGCAATCTACTTGATTGGGAGGGTCATCCTCATTACATTGGGAATGAAATCGAACAAGCGCCCGATGTTTTAGAAAAAATTAAAGTATACCAACCATTGATCGAAGAACAAGCGTCAGTGGAAGTAGGTTCATCGCTCGTGCACTTGTCTTCAAGGTGCGCTTGCGGTGAATGTAACCTTGGCAGTCTTATCTGCGATGCTTTCATGCACGAAGTCATGGACAGAGCCCAGGGTAACAATTGGCATCATGCTCATTTCTGCGTTATCAACCAAGGCGGTATCAGAGTGGACATCGAACCTGGAAAAATAACGTTCGAATCTGTGATCTCATCGACACCGTTCGAGAACAGCGTTGAGGTTTTCGATTTAAGAGGAGACCACATTATGGAAATGCTCGAATTTTCTGTCGCTAATGATCCCTATGCTGGTGCGAGAATGTTGCAAGTATCTGGATTGTTGCTGACATTCGACGGGTCGAGGCCGCTAAATGAACGCGTTCTGAACGTGGCCGTCAGGTGCATCGCCTGCGACGTCCCCAGATACGAACCGCTGGAGCTTGACAAGTATTACAGAGTCGTCTCCCAGAGTTTCATTGGAACCGGTGGCGATGGATTCTCTATGATTTCAAACAACCGTAAGAACGTAACAGTCGTGGGCGTCGACTATGATCTGCTGATGAAGTACGTGAGGCACCAGTCTCCAGTGTTCGCGGACGTGGATGGAAGGATACACATCGACAATCCATGTATAGTCTGA
Protein
MIFYYVFTLFGVVNAQESRFALNILHYNDFHARFVETSPAGTTCNPAEAPCIGGFARLATKVRERQAAEPDSLLLNAGDSFQGTIWYNILRWNVTQDFMNMLKHDAHVLGNHEFDNGIEGVVPYLEHLDSPVVTANIIDDDEPTIQGLYKPSIIVERGGRKIGIIGVIIAITDQLASTGRLRFTNEVETVKAEAEKLHQQGINIIIVLSHCGLDIDKELAANGGPHIDIVVGGHSHTLLFNGEPPENSGFVPRGPYPVIVDTDGGPVLIVQAAAHTQFLGEIKVFFDDSGNLLDWEGHPHYIGNKIEQAPDVLDKIKIYQPLVEEQASVEIGSSLVHLSSRCACGECNLGSFVCDAFMHEVMARAQGDSWHHAHFCVINRGNVRMDIAPGKITFESVIVSTPFENNVEVFDLRGDHIMEMLEFSVANVPFAGAKMLQVSGLLLTFDGSRPLNERVLNVAVRCIACDVPRYEPLELDKYYRVVSQSFIGAGGDGFTMISNNRKNVAVVGVDYDLLMKYVRHRSPVFADVDGRIYIDNPYFNRKMNWYCVLTLFVVVSAHDNRYALNILHYNDFHARFVETSPAGTLCNPTNAPCIGGFARLATKVRERQAAEPDSLLLNAGDSFQGTIWYNIFRWNVTQEFMNMLKHDAHVLGNHEFDNGIEGVVPYLEHLDSPVVTANIIDDDEPSIQGLYKPSIIVERGGRKIGIIGVIIAITDQLASTGKLQFTDEVETVKAEAEKLHQQGIDIIIVLSHCGLDIDREIAANGGPHIDIVVGGHSHTLLFNGEPPENSGFVPRGPYPVVVDTDGGPVLIVQAAAHTQYLGEIKLFFDDSGNLLDWEGHPHYIGNEIEQAPDVLEKIKVYQPLIEEQASVEVGSSLVHLSSRCACGECNLGSLICDAFMHEVMDRAQGNNWHHAHFCVINQGGIRVDIEPGKITFESVISSTPFENSVEVFDLRGDHIMEMLEFSVANDPYAGARMLQVSGLLLTFDGSRPLNERVLNVAVRCIACDVPRYEPLELDKYYRVVSQSFIGTGGDGFSMISNNRKNVTVVGVDYDLLMKYVRHQSPVFADVDGRIHIDNPCIV

Summary

Pfam
PF02872   5_nucleotid_C        + More
PF00149   Metallophos
PF00089   Trypsin
PF05154   TM2
PF00226   DnaJ
Interpro
IPR029052   Metallo-depent_PP-like        + More
IPR006179   5_nucleotidase/apyrase       
IPR004843   Calcineurin-like_PHP_ApaH       
IPR008334   5'-Nucleotdase_C       
IPR006146   5'-Nucleotdase_CS       
IPR036907   5'-Nucleotdase_C_sf       
IPR033116   TRYPSIN_SER       
IPR009003   Peptidase_S1_PA       
IPR018114   TRYPSIN_HIS       
IPR001254   Trypsin_dom       
IPR036869   J_dom_sf       
IPR001623   DnaJ_domain       
IPR007829   TM2       
SUPFAM
SSF55816   SSF55816        + More
SSF50494   SSF50494       
SSF46565   SSF46565       
Gene 3D
PDB
4H2B     E-value=5.54024e-88,     Score=831

Ontologies

Topology

SignalP
Position:   1 - 15,         Likelihood:  0.888165
 
 
Length:
1082
Number of predicted TMHs:
0
Exp number of AAs in TMHs:
0.0513500000000002
Exp number, first 60 AAs:
0.03624
Total prob of N-in:
0.00216
outside
1  -  1082
 
 

Population Genetic Test Statistics

Pi
247.460916
Theta
182.060548
Tajima's D
1.504791
CLR
0.007829
CSRT
0.788010599470026
Interpretation
Uncertain
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