SGID Silkworm Genome Informatics Database
Gene
KWMTBOMO01421
Pre Gene Modal
BGIBMGA008920
Annotation
PREDICTED:_brefeldin_A-inhibited_guanine_nucleotide-exchange_protein_3_[Bombyx_mori]
Location in the cell
Nuclear   Reliability : 2.167
 

Sequence

CDS
ATGGAGGAACTGTTGCAAGATATATTCAAAGAATCCACTGGTCCTAAGCTCTCGTCCTTGAAAAAATCAGCCCAAGATGCATTAGAACTGCTATGCCTCCAAGAGAGTAACGCGCGCCGTCCTTCGTACGAGCTGCGACGCGCCTGTCTCCTCCCATTGCAGATCGCTTTGGAAACAAAGAGGCCAAGGCTAGTTACATTCGCAGTACAGGGATTTTATAAAATCTTAAGAGATGACCGTTTCCACCGTGGAATCGAACCAGAAGACGATTCGCTGTGGATGCCCTCACAGTTATTATGTGCCACTGCTTCAGTCATGTTTCAACAACCAGAAACACAGGTACAAATATTCCGCATGTATCTATCACTGGCGTTGTCTCCTCGCCGAACATTGAACGGTCGTCTCTGTGTGTGGGCCTGCGGTCGGTGTGGAGAGGCAGCGGGTGCGGCTCCTCATGTGGCCGCTGCCGCGAGGGCTGCAGCCGCCCAAGCATTGAGAGCTTATTGTGCACAATTAGACGAGGAGTGTACCGAGCTGCTGTCGGAAGGTTCTCCACTTGGCAGGAACCACATAGTGGCAGTAGGCTGTTACAGTGAAGTAATACCAGTCATACAATACTTGTGCAGCAGATTGGCCGAGACACAGTCGAATCCAAAGCAAAACCCGCTGGCCCTATTCTTTTTGGATTGCCTCTTAACGTTGATGTCCAGCCTATCGGAACGTGTTAGCGGTAACTTGCACTTCACAACATTCCTGTGGCAGAAGTTTTGTCCGTCGCTTATATCTTTCCTCGGAACGCCCCGGGTCGACAAGAATATCAAATCCAGAGATCACGAAGGACATTTAGTTGACGATTCTGGAAGAGGATCCGGAGCTTTGAACTCCGCACCAAGCTTCAACAGTAAACAGGCTAAAGCTATTTACAGCATAGCAAATCAGCTGGTGCGGCTGGTAGGTTCAACCTCGAATCTCCGACCGGTCCTCGAAGCACTGTACCACAGAATGCTACTCTACCCCCCGGTGCCGCATCGCGTCGAAGCACTGCGGAGCACCCGAGAACTGCTGCAGAACCCGAGAAGGATCTGCCAACTCGTCCTGCTAAAAAAGCAGGAGAACCAAGAGCGGCACAGCGACGACATGGCCATAATCAGACTTTTAATGGATGGCATAGAAGAATGCGGCAGGAGCGGGAATCCAGAGACAGTTGCCGCAGCCGTAGAGTGTGTGGTCTCCCTACTCGATGCCTTAGAGAAGCTATGCTCTGGACCCGAGTATTACATATGCTCTGAGACGGCCGCCCTAATACTAACACATTGGCCTAGACTCCAAGACGCCGACTACGCCGGGCCATTGACCTATCAAACGCTGGCCAGGTTGCCAAGTCCGTACAGGGATGTTGTTGCTGTTCTACAGAGTAACGATACGAAAGACCGCGACTCCTCAGACACATCGGGCCCCGAGAATGTGACGTCAGGCAGCGACGGCGAGGCAGACTCCGATGCAGATAACGTTTTCTTGCCGTCGAGAGCGAACAACCCTACGGATGCTGTGAACGACGTCATAGTAAAAACTAAAGCTGTACCTAAAACTCTGAACCTTGGCCGGTGCACCGTAACAGAGTGCAACGTTGACTTGGAGAGGCACAACGCTCGGCAGTTCGTGAAAACCCTACAAAACTCACTACTACCGAAGCTACTGAATCTCAGAACTTGTATTGAGGTTGACGAAGCAATGCAAGACTTCGCATCGAAATACTGCCAACACAACGCTTCACAACCGCCGGCTACTTCGTGCATAATGAACGCAGACGGAGTGTACCTGGCCACCTATGCTTCTCTGCTGCTCACTTTAAGGCAACGACGTAACAATTACTATAGCGACCCTCCAAAGGTAGAAATAGCAATGACAGAGGATCAATTCGTGGACGAGGTACAAGGAAGTGGAGTTCTGGTATATCTATCAGCGACGTGGCTGAGGGAGCTATACCAGCAAGTATTAGCTACTGACATCTTAAAGGATGCGCCCATTTACGATCATCCATTGGTCCATTTGCTGTCAGATTTGGGAGGGCTAGACCAAAGTCCGGTAATGTCGGACTGGCAAAAGTTAAAAGAGGCCTCAATGCTGCACAACAACACGAACGACACCCCGCAACACCAGTCCAGCTTACGTTGGGCGAGGAGAATCTTAACGTGCGTTTGGGATTCAATGGTGACCGTATTAAGTGTACCGTTGACCGGATATATGAACAAGAAAGAGAGACTACATCGGATTATATCCAAGAAGATAAACACGTTCGGTAAAAGGAAACGCATTGCTTGGGAAGGACTGACCATACAATGTTTGGAGGGGTTGCATAAGGCCGCAAGAGTCAGTAACACGTTAAGCTTACAAAACCGGTGCAGCAGTATCTTGGCGCTGTTGGCAAGATCCGCTATTTCTCAGATACCAAACGGAAAGATACTATCAACTCATGCCCTGTCATTGGACATATTAATTACCGGGGGCCTAGAGCTGGGGTCGAAGGCACCGGACTGCTGGGAGCACATATTCACGGCCTGCCAGTACGTGTCGAGCTTCGAACACTCTCTGTTCGGGCAGCAGGGGAAGAACGCAACTCCCATAGTCACCATGCAAACTGGAAGGAACCAAACCGTCTCGATACTACAAGCGGACGCTAAGCTCGGTCTGGACGGTAAAGACGATGAGACTTGCGTGGACGTCTTCAATTTTCTTCAGCCTGTCCTGGAAAATAATTACAACAACGATATGTCTGTCGCAAAAATAGTGGAAACTTGTCGACAGGAGGGTGGGAATATTATATCAGGGTCGAATGCAGCGAGAGTTTGTTGTGCTCTGTCCGCCGCCGCCGATACATTGTTCAGTCGTCTCGCCGCCACCACGACGCTGCCCACGCTCAGAGCGGCCCTGCAGAGACTCGTGGCTCACCAACACCGACTGCTGTTCACGTCATGGGATCAAGACGCGTGCAACAACAACAGTCCGTGGTGGCGGGGCGGGGCGCGCGGGGGGTGCGCGGTTGCGGCGCGGGGCGAGGCGGCGCGGGCGTTGTGCCGCGGGGGGGACGTGGCACTGCGCTGTCTGCGCGCCGCGAGACCGCTCGCGCACCGCATGGCCATATGGACTGTTATTGGACCGCACTTTATGCAGGCAGCTTGTCATAAAGACATCCAAATATCAAGTCTGGCAATACAGTGTCTTCACGATTGTGCAACAGCCCTTCTGAATCAACAAATCGAACTGCCTCACTTCCACTTTAATGAAGCACTGCTGAAGCCTTTCGAGAACCTTCTCTGTTTGGAGCTGTGCGACGATGATATACAGGAACAAATCATATCCTGTATCTGTGAATTCGTGGAAACAAACAGAATGGAGATCCGCTCCGGCTGGAGACCGCTGTTCAACACTCTCCGGGCTGCCAATAATGCGAAACAGTACTCCGCAATACTGGAGATATTTAAAGTATTTCTCGGCACCGACAACACGCTGGTCTTCGCAAACGCGGCTCTAGACTGTATACTGTGTCTATTAAGTCACATTAAAGGTCTGCATTACGAAGAAACGTCAGCGGCTGAAGCGAAGCCCAAGAAGACAGCTCAAGCCCAACAAAAGCCGAACCTAAATCTGAAATTTTCTAAAAACAGCAAATTCATCCCACTGAACGAGGAGAAAACGGAAAAAGTCGTAATCGACATGTGCAAAGAAGCTTTGTACCAATTGGAAAATTGCGCCGACATTTTAACCATCATGTACAATATGCCGAAGTGTCCGATATTCAATACCGGAAACCGAATAAACGGAGACCTTCCGGTGTCAGTGGTTGATCCCATCATACAGACCACATCACTTGACATCACCAATTATATCGCCAATGAAAATTGCGAGGAACCGCCCATGTCGTATATAGTGTTATCAACCAGTTTATCTTCGACTATGACAATAAACAACACCCTACTGAAACACGATAAACCAAGCAACATTCTCAAAGTGTGGTATGTTTTGATCGAGGGCATAATTACGGCCACAGTCGTGTGCTCCAAGAAAAATCAACCAGCCACGATGGAGACTTTGTTCAAGTTGCTGAGGAATGCCATCGATGTGCCCGGAACGCATTTCGGACTTCACTGCATAAACCACGTTCTATTACCAACCATACAGAATTGGCTGCGGCAAATTGCGAATGTCAATAACCACTGGGACAGCGTGATGCCGAACTTCAAACAGTGCTGTGGATTGACTACTGACACAATTGTGATTTACCTTCATCATTTACAACAGATCAACATAGAAGGAAAGTCTAATGATACCGAGACGGATAATGAAGATGAATGCGAAAAATACGAGAATCCTGATGTAACGTTTGCTCTAAAACAAATCATGTTGATTCTAGTTGAATGCATCGCTCAGCCCCAAGAACCGATAGCGCGTCTCGGAGCGTCTTGTATCAGACATATCATTCTAACTTCAGGACACCTCTTGACCGATCATCAGTGGGAACTAGTTTGCACGAGCCTTCACAGGGCTTGTAATGTCAGTTTGACACCATTGAAACAGCTAACATACGCTTTCAAAGAGAATTCCAATAGTTTTTACGGAGATTTAGCCATGGTCAAAGTGGCAGCAAGGCGAGATTGTTCGGTGAACGATAACGTCAGGCTACACGCCATGGCGCAACAAGTATTTTGGACTGATCAAACAAAAGACGCGCATTCAAAATTGAGTCCGAAGAACAGTTCGCAGATGTTGATAGATGATAGGAGTTACATCTTCTTGATATATCTGCAAGAATCAATGAATTTACTTAATCCAGATCTATATACAATAAGAATACCTCACCGAGGTCTCGTTGTCGGTTTGTTAGCACATCAGATACTTGTGCAGATCGTTGCCACGGTGCTGATTCAAGCATCATCCGACGTGTTCCAAGGGATCAATGGTATTTTACTGGAAAGCCTTAAAACTGGACCAGATATATGCAACTACAAGTTTAGTCTAAAAAAATCAAACTCTGAGCTACTTCTCAAAAGTTTAGATATTTCCTTGATGCGTGCTATACAGTTCGACGCGCGACCGGGATTGAAGTTTCTCGTTCAAAAAGTGTCTAATCTGGATCACGCCGCCAACTTATATAAGCAAACGACATCGTCATGGCTCATTAAAGTCATTACACTGACTGAATCTTTCTTCAGTGGTATACAGAGATACAAATTAGGAGCAACCGATATATCTATATTGATCCATAACTATTCGAATACTCCAAAAATGCTCCTGCAATACGATCAGTTTGTTGTCAAAATGTTCGACTTAAAAAACACGTGGGAACTACTGTGTAACAGCTACGTGAAGCATCTGATTAATTTATCAGATTTCGATGAACCTGATGTTATTAAGCAGAGAACACCTCTTAGTTCCGTTGGTAGTGACTCTTCGCTTAACCAATACGAAAATGTTTACCAGGAAGAATCTACGCTAGTAACAGAAAATAAGGAAAAAACAACTCCAATAGAAGAATCAGCGAAAGATTGTAGTATTACTAACGAGATAGAAGAGAAACCAAAACCATTCATCTTCGCGGATTTCAAAACTAATAGTCAATCATCAGAAGTGATAGCTTCTGTTGAAGATACCTCACTAAGTGATGAACCGGAAAAAGAACCAACAACCAACGAAATAAGAGATGACGAAGACAAATATCAAGAGCGATCAAGAAGAGAAAGAACCGTTTATTACTCAGAAGTTAGCAAAGAAAGTCCAACAATCAAACCAAAAGTTAACACTTCTGAGATTTTGGACAAACATACTGATCCCCGAAAAGTTAACATAACAATAAGCGATGACCCTAACTATTCTAATAACAAACATGTTGAACCAATAATTCCACCGCAACCGGTGCCGCCTGAAATCGAACAACAAAGAACTTTAAGTATCAACAAGGACGCTGAAGTTCAACGTAACTGTTTCCAGAATGTTCTGATGGCATACCTAGAACTCGTTCTGACATTCCCATTAGAACGATTTCATGTGATCCACCCTGTATTGCAGGGAGGCTTTCTACAACTCGCCAAAACGGTTGCCGACCCCCAACTCCTCGATAGAATCAATTTATTTTTCGATAAAAAAGACTTGTCTTCTTCTAATTATAAGTGA
Protein
MEELLQDIFKESTGPKLSSLKKSAQDALELLCLQESNARRPSYELRRACLLPLQIALETKRPRLVTFAVQGFYKILRDDRFHRGIEPEDDSLWMPSQLLCATASVMFQQPETQVQIFRMYLSLALSPRRTLNGRLCVWACGRCGEAAGAAPHVAAAARAAAAQALRAYCAQLDEECTELLSEGSPLGRNHIVAVGCYSEVIPVIQYLCSRLAETQSNPKQNPLALFFLDCLLTLMSSLSERVSGNLHFTTFLWQKFCPSLISFLGTPRVDKNIKSRDHEGHLVDDSGRGSGALNSAPSFNSKQAKAIYSIANQLVRLVGSTSNLRPVLEALYHRMLLYPPVPHRVEALRSTRELLQNPRRICQLVLLKKQENQERHSDDMAIIRLLMDGIEECGRSGNPETVAAAVECVVSLLDALEKLCSGPEYYICSETAALILTHWPRLQDADYAGPLTYQTLARLPSPYRDVVAVLQSNDTKDRDSSDTSGPENVTSGSDGEADSDADNVFLPSRANNPTDAVNDVIVKTKAVPKTLNLGRCTVTECNVDLERHNARQFVKTLQNSLLPKLLNLRTCIEVDEAMQDFASKYCQHNASQPPATSCIMNADGVYLATYASLLLTLRQRRNNYYSDPPKVEIAMTEDQFVDEVQGSGVLVYLSATWLRELYQQVLATDILKDAPIYDHPLVHLLSDLGGLDQSPVMSDWQKLKEASMLHNNTNDTPQHQSSLRWARRILTCVWDSMVTVLSVPLTGYMNKKERLHRIISKKINTFGKRKRIAWEGLTIQCLEGLHKAARVSNTLSLQNRCSSILALLARSAISQIPNGKILSTHALSLDILITGGLELGSKAPDCWEHIFTACQYVSSFEHSLFGQQGKNATPIVTMQTGRNQTVSILQADAKLGLDGKDDETCVDVFNFLQPVLENNYNNDMSVAKIVETCRQEGGNIISGSNAARVCCALSAAADTLFSRLAATTTLPTLRAALQRLVAHQHRLLFTSWDQDACNNNSPWWRGGARGGCAVAARGEAARALCRGGDVALRCLRAARPLAHRMAIWTVIGPHFMQAACHKDIQISSLAIQCLHDCATALLNQQIELPHFHFNEALLKPFENLLCLELCDDDIQEQIISCICEFVETNRMEIRSGWRPLFNTLRAANNAKQYSAILEIFKVFLGTDNTLVFANAALDCILCLLSHIKGLHYEETSAAEAKPKKTAQAQQKPNLNLKFSKNSKFIPLNEEKTEKVVIDMCKEALYQLENCADILTIMYNMPKCPIFNTGNRINGDLPVSVVDPIIQTTSLDITNYIANENCEEPPMSYIVLSTSLSSTMTINNTLLKHDKPSNILKVWYVLIEGIITATVVCSKKNQPATMETLFKLLRNAIDVPGTHFGLHCINHVLLPTIQNWLRQIANVNNHWDSVMPNFKQCCGLTTDTIVIYLHHLQQINIEGKSNDTETDNEDECEKYENPDVTFALKQIMLILVECIAQPQEPIARLGASCIRHIILTSGHLLTDHQWELVCTSLHRACNVSLTPLKQLTYAFKENSNSFYGDLAMVKVAARRDCSVNDNVRLHAMAQQVFWTDQTKDAHSKLSPKNSSQMLIDDRSYIFLIYLQESMNLLNPDLYTIRIPHRGLVVGLLAHQILVQIVATVLIQASSDVFQGINGILLESLKTGPDICNYKFSLKKSNSELLLKSLDISLMRAIQFDARPGLKFLVQKVSNLDHAANLYKQTTSSWLIKVITLTESFFSGIQRYKLGATDISILIHNYSNTPKMLLQYDQFVVKMFDLKNTWELLCNSYVKHLINLSDFDEPDVIKQRTPLSSVGSDSSLNQYENVYQEESTLVTENKEKTTPIEESAKDCSITNEIEEKPKPFIFADFKTNSQSSEVIASVEDTSLSDEPEKEPTTNEIRDDEDKYQERSRRERTVYYSEVSKESPTIKPKVNTSEILDKHTDPRKVNITISDDPNYSNNKHVEPIIPPQPVPPEIEQQRTLSINKDAEVQRNCFQNVLMAYLELVLTFPLERFHVIHPVLQGGFLQLAKTVADPQLLDRINLFFDKKDLSSSNYK

Summary

EMBL
BABH01012510    BABH01012511    ODYU01011597    SOQ57435.1    KZ149902    PZC78451.1    + More
JTDY01000294    KOB77851.1    KQ971357    EFA08546.2    KQ977808    KYM99529.1    KK107054    EZA61533.1    KQ982494    KYQ55716.1    QOIP01000004    RLU23857.1    GL437468    EFN70405.1    GL451231    EFN79657.1    KQ981923    KYN32939.1    KQ434796    KZC05766.1    KQ980653    KYN14820.1    KQ414615    KOC68558.1    KQ976619    KYM79113.1    ADTU01025181    GL888322    EGI62827.1    KQ762882    OAD55329.1    KB632186    ERL89759.1    KQ435711    KOX79561.1    KK852475    KDR23060.1    GL764659    EFZ17317.1    CCAG010005843    AJVK01004663    AJVK01004664    AJVK01004665    JXJN01012466    AXCM01002848    LBMM01001076    KMQ96975.1    KZ288340    PBC27791.1    GBXI01002332    JAD11960.1    CH933810    EDW06657.1    KRF93762.1    KRF93764.1    KRF93763.1    GAMC01016146    JAB90409.1    JXUM01108591    KQ565245    KXJ71191.1    GGMR01003359    MBY15978.1    AAAB01008847    EAA06831.5    CH964291    EDW86315.1    ATLV01015153    KE525003    KFB40138.1    CH379064    EAL31899.2    AXCN02001363    CH479200    EDW29692.1    CH902632    EDV32590.1    KPU74056.1    OUUW01000003    SPP77761.1    CH954180    EDV45974.1    AE014298    AAF46115.3    ABW09341.2    CM000162    EDX02451.1    KRK06752.1    KRT06654.1    CH480819    EDW52988.1    CH477463    EAT40526.1    ADMH02000949    ETN64590.1   
Pfam
PF09324   DUF1981        + More
PF01369   Sec7
PF16213   DCB
Interpro
IPR023394   Sec7_C_sf        + More
IPR035999   Sec7_dom_sf       
IPR000904   Sec7_dom       
IPR015403   Sec7_C       
IPR016024   ARM-type_fold       
IPR032629   DCB_dom       
SUPFAM
SSF48371   SSF48371        + More
SSF48425   SSF48425       
Gene 3D

Ontologies

Topology

Length:
2055
Number of predicted TMHs:
0
Exp number of AAs in TMHs:
0.11248
Exp number, first 60 AAs:
0
Total prob of N-in:
0.00017
outside
1  -  2055
 
 

Population Genetic Test Statistics

Pi
238.998592
Theta
176.86473
Tajima's D
1.258221
CLR
0.291685
CSRT
0.723963801809909
Interpretation
Uncertain
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