SGID Silkworm Genome Informatics Database
Gene
KWMTBOMO06359
Pre Gene Modal
BGIBMGA011914
Annotation
PREDICTED:_protein_virilizer_isoform_X5_[Bombyx_mori]
Location in the cell
Nuclear   Reliability : 2.974
 

Sequence

CDS
ATGACGAACTCTGAGAAACCCGATCTATTATTCTTTGATACGTTCTCACACGACACAAGCGAGGAATTGAATCTGGATTTAGTACAGTTTCCAAAGTCTGTCTATGTAAGAGAAATACGTGTTATTCCATTGGGTGCCCGAGTTGAAGGAGACTTTCCCGGTCGAGTTCGGTTAGGCGCCACAAACCCTACGAAGTTTCATATCGACTTTTTCGTGAATGATCTGAGTAAGCCTGGAGCTTCCACTTTCGAAGCTTTGGGTAGTTTGGACTACTGTCAAAATGGACAGATTCATATGGAGTGTGGAGCTGATGGGGACCATCCTAGAATCCCTACTGATGGCCTTGTATTAAGAGGATGTTACACTACCATCACTCTTGCTGTTTACGGGACGCTCACACAGATTTTACCAGAAACACCAGTTGGTATCAATCCCCCTCCCACTATTCAAAGACCCGCAGTCAACCGAGATGCGCCACCAGCAAATGTGACACAACCACCTGACTGGAATCCAGAGCCAACCAATCCAATACCATCATACACTGGTAATGTCGCCAGCACCAACCCCGATGTCTATACTCCTAATACGTATCCAGAAAATTATGAAAATCCAATTTATCGAAATGAATATTATGAAAACGAGCCTCCGAAAGATCCTAGGACTTATCATGTGGAAGGTGATTGGGAAAAGAGTAGAGATATCAACTGTGAAGGTGAAGGCGATAGATTGAGACGTAGTTCAAGATCTATAGAGCGCGATAGGGATAGGCAAGGACACGGTCGACGAAGGTCAATGGACCGGCGCAGTCGAGACTCTTCAAGGCACAGAGATGATAGAATGGAACGACATCGGTCGAGAACTAGAAGTCGGGAACGAGAGTATATCGTGCAGGGCGAATATCGCACTCGCAGTCGCTCCAGATCACGCAGCCCAGACAGAGTGCGGCCTCACTCCACTGAGCGCGACTGGGACAGGGCCTCGTATAAGAAGGATGAATACAGGCGCCACCGCGAACCGTCGTACGAGAGGACGTCTTATGATAAAGAAGCCGGTTCTTACGAACGTCGATCTCCATACGACAAGCGAGCACCGTCATACGAGAGAAAGATAGGTTATGATAAAAGATCATCGCCGTACAAGCGTGGCGCTTCCTATGAAAGACGAGCACCGTCTTACGAAAAGCAGCCACCTTACGAACGTAAACGATTGTCTCCTTATGGTCGAATTAGAAGTTCTAGCTACGGAAGTAGATCGCCAAGTCGCGATGACCCAAGGAAACGGCCTAGGACTCCACCAGGAGAAAGTCGTCGACCACTCTCACCACGAGATGGAGAAGCAACTAGTCCTATACATTCCGTCAGATCTGAAGACGATTATGAGAGAAGTGGAAAGCAAATACCCAGAGTAGACTTCTACCATCAGAGCTACCGTCACAAGCCTCCTATAAGGAGTCCTTCTCAAGAACACGCTGCTCCTTTCGTTGAGACTCATTCAAGCCTTGTCACTGTCCCGATAGTCGATAATCCTCCAAAACCAGAAACCCCGAGCGGCAACGCTGACGAAGTCAAGTCTATCGATGCTGAACAATTTGAACCGATTCTGTCTGACGAGGATATTTGTGACGACCTTGAAAGTACCTCGTACATGGAGGTGGATTACGACGTAAACGAATATGTCGGTGTCGATGACATAATAAAATATTTCAATCCGTTCAAAGCAGAGTGGTGCAAATATGAATATATTAACAAAATACAGTATCTAGGGCCCAAAGGTGAAGATGTAAAAGACGTGCTATCAGCCAAATTCGATGACTTGTGTGATGTCAGTCCTGACCTCTTCAAAGTTTTAGAAATATCAAAGAAAACTGACCAGAAATATTTTACGGATTCGTTCAAAGACATTGATAATACGATGAGAGAGGAGTGGGTGCACCAGTGCGAACAGATGTACGTCGCAATGACAAACCTCTGCAAAAGTACCGATATTGTAGTTAGAATCTTCCAAGATCCAACTCCTTCTGACGAATTCGGTGAAATTAACAAAACACTGATTGCTTTTTGTAAGATTGGTCTGAATTTCGGTTACGCCCTGTCTCAACAGCAGCCCACTTACAAGATAAGGCACATGAAATGCGGCATCCGCCTGGCCGAAGCCCTGGTGGCTCACAGACATAACGAGCTCGTAACGAGAGAGCTGCTGGCAGCGGACATAGACCTGCCCATGTTGCTGCTGCAGTTGTACGCTGAGGAGTACATGGCGCTGAGTATACGACTCATGGTCCTCAAGGCGCTAGACGCGTGCTTGTCATCAAAAATCTCAATAGATAATTTTATGAATGAAAAGCTATTCCCCAAATTCGACAAGAATGAAATGGAGAGAAAACCCAAAAATGGGTACCGAGCTCTCATATCCATGATGCAAGCCGATCCACTAGCCAGACTAAAGTTTTCAATAAGCGCCCTCATTAAAAAGCTGAATATATATGAAGTGCTGGGAAAACTTCACGATTTGGTAGCAGATCTCAACAAGAAGCCGGATGCAGAAACCAGCGAAGCTGACACCGAGTTTATAGTAAACTGTTTTGAAATAGTCATTGACATGTACCGATCTCAGTGCTTCCATCTGTCACAGCCGAAGCGGTTCCTGCCCGTGTCTGCTCAGTTCGAGATCAACAAGGAGTGTAGCAACGACACCTTGCTCGAGTTCTTCAGCATCCACAGCGTTCTGGAAGTCTGTCTGTGTCTCTTGACTGGCCCTAAAACTTGCAACAACCTGGTGGTCGCCAGCCCCGTGCACGACTTGATTTACGAGTTGGTCAATTCAGTGAGCGGTTTGAGCTTCTTGTACAGGAACATGGAGCTGAGCGAGCTTCTCTTCAAGACCCTAATGCAACCTTACAGCCAACAGACTGTGGAAGAGTTTCTGTATCCTCACGACTTGAGCAATTATTCCGATTTGCAAATTCTCGGGCTGGAGATGGCTTATAAACTGAGAGCTTTGTATTATTTGCAATCCATTTGCGACTTGCAAGCTGGTCAAGGCGACGAAAATGAACTGATCGATCGCCTGCAGTCCTTGTACTGCCTCAGCTTCGGCTGCATCGGTAGGACTGCGGTGTCCGACGTCGTCGTGATGGGCGACCATGCGGATTGCCTGATGGAAGTCTTCGAAAATGACTCAAGAAAAAATAAAAATGATTCACCTTCTAAACAAAAGTCCCCAGCAAAAGGATATGCCATAGAATTGATCGTATCGGCAGTGCGGTTTTCAGCCAATGTAACGTTTTTAAAGAAATATGGACAACGACTCATTAACGTCTCGAAAGATCACGACAGGTTTGAGCCGAGCGTCTCCAGTGTTCTTCAAGAAGTCATACCATATCTGAAACCAGTTGAAAATATGAGCCTCTTGAACGGGGACGACCTGGCAGAGTGCGTGGAGATCCTAAAGGCCAACTCGGAGCATTCGGCCGACTTGCCCGGTGAACTCACAACTTGTCTTCGTGTCCTGAGGCACTTCTGTGTCTCCGACCGCGACACCAACGTCGCCATTGCAAACGAGGCGGCCGCGCAGGAGTACGTCGAGCTCAAGTACAAGTACAACGTGCTGCAGCTGTACTCCCTGGACGGCGTGGCGCACCTGGGCGGCGTGCTGAGCAGGCTGTCCACGCGCTTCGAGCAGCCGAGCATGCACACCGCATTCTTCGCCTCAGTCAAAGGATTACAGCTCGCTCAAATATTGGTTCCATGCTTGAGGTTGTTGGACGAGATGTTGGCGAGAGTCGTTCGTTGCCGGGGACCGCGATTCAGAGACCTGACGGCGGCTCCTGTGCTGTTGAAGACGTACGGTATCGCCAAGTCCTTCCCGGTCGGCTGCGTCGGCTACAGGACGGCGGCCAAGGCTGCAGAAGCCGCCGTCAAAGCGTTGCTGACCTACGCCCAGCCGATAGCTGACGATGCGAATGACGGGGACTCCATCCGGCGTGGTCCGTGGACGTCTCTGTGCTCTGAAGTCATCCAGTACACCATGACCGCCCCCTACACGTTCGTACCGGGATTGTTGGTGTTTTCCGAGTTGCTTCCGCTACCGTTACCGATGCAGGCGAAGACGCCGCCGACTCCGCGGGAGCTGGAGGACGCTTGCAACGAGAGAAGGTTGTGGTCGGCACATTTGCACGCGCTGTCGAACGATCTCACCGACATGATCCAGATCATATGCATGTCCACGTATCGGCCGGTCGTCCACATGCTGAGGCGCGTGTGCGTGCAGATAGCCGACCTAGCTCCGAACACTGCCGCCACGGTCGCCCACGCCGCAGTGGGCGCCGTCGCCAGGGAAGTGAAGCCGGGAGAACCCGCCACCGCGAGCTCAGCCAGAGTTCTAGGATTTTTGACATGTCTTGTGTCACACGCGCCTCTGAAGTGTGCCGTCCTCCACGCCCTAAACACCGGCGGACCCAAAGCGACAGAGATTCAGTCAGCTCTGTGCGGAGTGCTCAGTCTGCCGAACGCTGCGGGCGACCATTCCACCGCACAAGAGTTCGCCGCGCACATCCTCGCCGCTCTCTGCGACGTGGACATCACGCTCACCCCGGTCTCCTCCCTCCCGGATAATTTACTCGCAAATTCGTTACCAAACAAGGAAGCGCTGGCAGCTTTCCTCGACGCCTCGGCAGATTGTCTGGAGTCCAGCACAAAAACTTGCTCCGTGGCGCAGTCGATACTACGAGCGTATTTCGTACTGACTGACCACGAATACGGTTTTCAACAGTTCAGGAAATTTGTGACGAAAAAACGTGAAGCTCTGGGGACGTTTTTCAAATGGGCCGTGGACGGACCCGGTGAGGATAGGGCGGAATGCTTGAGCCTATACTTAGATCTCATCAGGATATTGAAAGGAGAGGAAGGCGAGGGCGGCCCTGTCGTCAGGAAGTCCGTGTTGACTGTAGCCGAAATGGCGGACATGCTGGGGTACTCTGTGGGAGCTGACGATCATCCGGTTATGAGTTTGGAGAAGATTTTGAAGGATCGCAACGCAGAGGAAGATGCCACAGCAGTCAAATTCCTTATTGGCCACCTTCAGAAGCTAACCGAGCGCGGCTCCCCACCCCCCGAGGGTCCGGAGGCCGTGCCCGCGGCGCCCGACAGCCTGGTGGCCCAGTTCGCCACGCGCACCGTGCACAGCCCGGGGGAGCCCGCCGACGAGAGACTCACCACCGGCTACTGGTTGAACATCCCCTCGGCCAGCGGAGAGGACTATGTTCACGATCATGAATTAGTACCGTGCGACATCATGGAAGTGGCGAACAGCTACTTGTCGGTGGGCGGCGCGTCGTGCGGGGGGGAGGCGGTCGCCAGCGCCGTGCGGAGGCTGGCCGGCTGCCTCGACACCAGGACCGAGCCCCGCTCCTGCGACGACAAGAGGCCCGCAGTGGAACGGGGAGTGCGCGTGTCGCGGGGGCGGGGGGAGGCGCCGGACGCGTTCCGCTGCCGCCCCCCCAACACCTCCCGCCCCCCCAGCCTGCACGTGGACGACTTCACCGCGCTGCACCACACCTACACCAACCTCAGCAGGGGCGCGCGGCGTGGTGCAGACCGCGGGCGCTTCGCGTCGGCGGCGCCGGTGCACGCGCATTACCGACACACGCGCGGGCGCGGCGCGTGGGAGGCGGGCGCGCCGCACTTCGGGCACTACCCGCCGGCGCCGCAGTACATGCTGGGTGGCGCGTGCCGGGGACCGCGCGGCCCGAGGCACCGCTCCTTCATACGCTGA
Protein
MTNSEKPDLLFFDTFSHDTSEELNLDLVQFPKSVYVREIRVIPLGARVEGDFPGRVRLGATNPTKFHIDFFVNDLSKPGASTFEALGSLDYCQNGQIHMECGADGDHPRIPTDGLVLRGCYTTITLAVYGTLTQILPETPVGINPPPTIQRPAVNRDAPPANVTQPPDWNPEPTNPIPSYTGNVASTNPDVYTPNTYPENYENPIYRNEYYENEPPKDPRTYHVEGDWEKSRDINCEGEGDRLRRSSRSIERDRDRQGHGRRRSMDRRSRDSSRHRDDRMERHRSRTRSREREYIVQGEYRTRSRSRSRSPDRVRPHSTERDWDRASYKKDEYRRHREPSYERTSYDKEAGSYERRSPYDKRAPSYERKIGYDKRSSPYKRGASYERRAPSYEKQPPYERKRLSPYGRIRSSSYGSRSPSRDDPRKRPRTPPGESRRPLSPRDGEATSPIHSVRSEDDYERSGKQIPRVDFYHQSYRHKPPIRSPSQEHAAPFVETHSSLVTVPIVDNPPKPETPSGNADEVKSIDAEQFEPILSDEDICDDLESTSYMEVDYDVNEYVGVDDIIKYFNPFKAEWCKYEYINKIQYLGPKGEDVKDVLSAKFDDLCDVSPDLFKVLEISKKTDQKYFTDSFKDIDNTMREEWVHQCEQMYVAMTNLCKSTDIVVRIFQDPTPSDEFGEINKTLIAFCKIGLNFGYALSQQQPTYKIRHMKCGIRLAEALVAHRHNELVTRELLAADIDLPMLLLQLYAEEYMALSIRLMVLKALDACLSSKISIDNFMNEKLFPKFDKNEMERKPKNGYRALISMMQADPLARLKFSISALIKKLNIYEVLGKLHDLVADLNKKPDAETSEADTEFIVNCFEIVIDMYRSQCFHLSQPKRFLPVSAQFEINKECSNDTLLEFFSIHSVLEVCLCLLTGPKTCNNLVVASPVHDLIYELVNSVSGLSFLYRNMELSELLFKTLMQPYSQQTVEEFLYPHDLSNYSDLQILGLEMAYKLRALYYLQSICDLQAGQGDENELIDRLQSLYCLSFGCIGRTAVSDVVVMGDHADCLMEVFENDSRKNKNDSPSKQKSPAKGYAIELIVSAVRFSANVTFLKKYGQRLINVSKDHDRFEPSVSSVLQEVIPYLKPVENMSLLNGDDLAECVEILKANSEHSADLPGELTTCLRVLRHFCVSDRDTNVAIANEAAAQEYVELKYKYNVLQLYSLDGVAHLGGVLSRLSTRFEQPSMHTAFFASVKGLQLAQILVPCLRLLDEMLARVVRCRGPRFRDLTAAPVLLKTYGIAKSFPVGCVGYRTAAKAAEAAVKALLTYAQPIADDANDGDSIRRGPWTSLCSEVIQYTMTAPYTFVPGLLVFSELLPLPLPMQAKTPPTPRELEDACNERRLWSAHLHALSNDLTDMIQIICMSTYRPVVHMLRRVCVQIADLAPNTAATVAHAAVGAVAREVKPGEPATASSARVLGFLTCLVSHAPLKCAVLHALNTGGPKATEIQSALCGVLSLPNAAGDHSTAQEFAAHILAALCDVDITLTPVSSLPDNLLANSLPNKEALAAFLDASADCLESSTKTCSVAQSILRAYFVLTDHEYGFQQFRKFVTKKREALGTFFKWAVDGPGEDRAECLSLYLDLIRILKGEEGEGGPVVRKSVLTVAEMADMLGYSVGADDHPVMSLEKILKDRNAEEDATAVKFLIGHLQKLTERGSPPPEGPEAVPAAPDSLVAQFATRTVHSPGEPADERLTTGYWLNIPSASGEDYVHDHELVPCDIMEVANSYLSVGGASCGGEAVASAVRRLAGCLDTRTEPRSCDDKRPAVERGVRVSRGRGEAPDAFRCRPPNTSRPPSLHVDDFTALHHTYTNLSRGARRGADRGRFASAAPVHAHYRHTRGRGAWEAGAPHFGHYPPAPQYMLGGACRGPRGPRHRSFIR

Summary

EMBL
BABH01028626    BABH01028627    NWSH01002921    PCG67300.1    ODYU01001744    SOQ38358.1    + More
KZ149897    PZC78711.1    JTDY01000053    KOB79150.1    KQ459692    KPJ20446.1    KQ459590    KPI97127.1    KQ971323    EEZ99921.2    GEZM01076747    JAV63680.1    GEZM01076748    JAV63679.1    NEVH01006580    PNF37591.1    PNF37593.1    GEDC01024508    JAS12790.1    PYGN01001267    PSN36139.1    DS235142    EEB12471.1    KK854261    PTY13880.1    ACPB03014060    CH477620    EAT38204.1    GDHC01010383    JAQ08246.1    GBHO01035637    JAG07967.1    GBRD01011145    JAG54679.1    UFQT01001870    SSX32045.1    SSX32044.1    UFQS01001195    UFQT01001195    SSX09629.1    SSX29425.1    AJVK01002371    AJVK01002372    AJVK01002373    AJVK01002374    KK114734    KFM63180.1    GAKT01000083    JAA92979.1    GFAC01003056    JAT96132.1    GL732553    EFX79202.1    GEDV01002675    JAP85882.1    GEDV01011130    JAP77427.1    GEDV01002676    JAP85881.1    GFPF01004535    MAA15681.1    GFPF01004534    MAA15680.1    GFPF01004533    MAA15679.1    GACK01008235    JAA56799.1    GACK01009542    JAA55492.1    GEFH01001783    JAP66798.1    GDIP01211358    JAJ12044.1    GDIP01163462    JAJ59940.1    GDIP01168211    JAJ55191.1    GDIP01211308    JAJ12094.1    GDIP01114069    JAL89645.1    GDIP01022305    JAM81410.1    GDIQ01073176    JAN21561.1    LRGB01000512    KZS18775.1    GACK01009686    JAA55348.1    GDIP01131817    JAL71897.1    JH431683    GDIQ01165396    JAK86329.1    GDIQ01016394    JAN78343.1    CH902619    EDV36800.1    KB202823    ESO87799.1    GDIP01064975    JAM38740.1   
Pfam
PF15912   VIR_N        + More
PF07703   A2M_BRD
PF07677   A2M_recep
PF00207   A2M
PF01835   MG2
PF07678   TED_complement
Interpro
IPR026736   Virilizer        + More
IPR031801   VIR_N       
IPR014756   Ig_E-set       
IPR002890   MG2       
IPR019742   MacrogloblnA2_CS       
IPR013783   Ig-like_fold       
IPR009048   A-macroglobulin_rcpt-bd       
IPR001599   Macroglobln_a2       
IPR011625   A2M_N_BRD       
IPR041813   A2M_TED       
IPR008930   Terpenoid_cyclase/PrenylTrfase       
IPR011626   Alpha-macroglobulin_TED       
IPR036595   A-macroglobulin_rcpt-bd_sf       
SUPFAM
SSF81296   SSF81296        + More
SSF48239   SSF48239       
SSF49410   SSF49410       
Gene 3D

Ontologies

Topology

Length:
1923
Number of predicted TMHs:
0
Exp number of AAs in TMHs:
0.218300000000001
Exp number, first 60 AAs:
0
Total prob of N-in:
0.00917
outside
1  -  1923
 
 

Population Genetic Test Statistics

Pi
256.728858
Theta
201.855086
Tajima's D
1.022022
CLR
0.684727
CSRT
0.666416679166042
Interpretation
Uncertain
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