SGID Silkworm Genome Informatics Database
Gene
KWMTBOMO00540
Pre Gene Modal
BGIBMGA012258
Annotation
PREDICTED:_otoferlin-like_[Bombyx_mori]
Location in the cell
Nuclear   Reliability : 2.352
 

Sequence

CDS
ATGGAAGTTTTCTACGTAGCACCAATAGTTGAAGAACCTGTCGTTATACATATGGAAGATTTAGACAATCCAGCCGAGCTGGTTTCAATTAAAGGTTCCATTAAAGATCAGCCGTCAGTGCACGGATCGGCTCGCGCCTCACTGCGCGGTTCACAAGATGGATCAGTGGCCAGCACTTCGACAGTTATCGATATAGAAGAAGAAAACGCCCTGGAAAACATAGAACGTAACATCGCTAATATTGAACGTTCGATGCAAAAGAAAGAGGTATACATCGACATAGATTCAGGGGATGAATCCCGTGGATACAAACTTAAAAATGTTGGAAAAAGATTGCTCAGGCGCGGTTTCTCTCTGGGCACTGAAAAGACCGTAACCATATCAGAGCATGAACGCAAAAGGACCTCTACTTTCAAAAGCGTTCGAAACCTGATGCGTATGGGCAGACGAATGTACGACAGCAGCGGCGACGAAGAGCAAGGCTTGCTGGATATGCCAGGCCCGTCATCGGAACCAGACCGCCCCATCAGTCAGACTTCCAATTCATCCGATGAAATGGTTACCGAACCAAAACCTCTACCAGACACTCCAAAGATAAAGAGATTACGTACGGTACTGGACATGGCTGGACCTTCTGCTCTCAAAGCAGCCGACTTCCAAGTCTGCGTCACTATCATCGAAGCTCGTCAGTTGGCTGGTCTAAACATGGATCCGGTGGTCTGCGTGCAAGTGGGCGACGTCCGTAAATATACCAGCGTTAAGGAGAGCACTAATTGCCCATATTATAATGAATACTTTGTGTTCGACTTCCACATGCCGCCGATTATGCTCTTCGACAAGATCATAACGCTTTCGGTGCTTCAATCGCGAAACATTTTGCGCGCCAACAAGCTTTTGGGTAGCTTCAAGCTGGACGTAGCCACGGTGTGGAGCCAGACAGACCGCCAGTTCTATCACAAATGGGCCTTGCTGACTGACCCTGATGATGTAGCCGCCGGGGCTAAGGGCTACCTGAAGTGCGACATTAGTATAATTGGTAAAGGCGACACGATCAAGATCCCACCGAAGAGCGAAAAAGACGAGGATGACATCGAAGCCAATTTGCTGCTACCCGACGGCGTGCCAATTGAGCGTCAACGAGCTAAGTTTATCGTCAAAGTGTACAAGGCCGAAGGACTTCCGAAGATGAACTACTCTATAATATCGAATGTGAAACGAGCCTTCACTGGAGAGAGCACGGAATTAGTCGATCCGTACGTCCAAGTCAGCTTCGCTGGAATGACAGGGAGCACATCAGTTAAGAAGAACTGCTACGCTCCAGTGTGGAACGAGCAGATAATATTTACGGAGATGTTCCCACCGCTCTGTCAACGTATCAAGGTCCAGCTTCGGGATAATGCTCCGGTCCATCCTAACATTATCGGCACGCACTTCATTGACCTCAAGACAATCTCCAATGACGGAGAACGCGGGTTTTTGCCAACGTTTGGTCCAGCCTACGTATACATGTACGGCTCAACTCGAGACTACAGTATTATTGACCAGCACGCGAACCTTAACATGGGAATGGGTGAAGGCGTTGCCTACCGCGCCAGGATTCTTCTCTCCATCCGCACGGAGATCGCGGAGAGCATTGAATGTCCAACAACTGAGGTCGAAATAGAATCTATTCCACCAGTCATTGAGTCCAGTTTCGAAAAGAACGCGGAGTTCTTCTTGTTTTCGACAATTTTCGACGCCAACATGATCGATAAGCGTCTGGTGGATAAGGCATTGCAGTTTGAACTGAGCATCGGTAATTCTGGGAACAGCCTGGATGGTCACAACGAATCTGTACGGCGCCCACAGGATGTAGACCTCGAAGAGAACGAGGACATTAGTGTGGACACCGGATATTGGCAAAGCTTAACGCATCCCACAAAAGCAACATCGACTGACAAGACTTATTATTATATTCCGTATTGGGATCACAAGCAATGCATGCACGTTCGCAGTATTTGGCCTGACCATCGCCGCAGAATGTACAACTCCAACTTGATCGCCAATATTGTCGAAAAATTCGAGGAGGGGCTGAATGATGCCCAAGCGACAATTGAATCGGAAGTTAATCCAGGCAGCAACAGTATTCTGGCTTTGAAATCTGCTCTTGAAACAGTCAGCAGTGCCTGCGCTGCTTATGTACGCCACATGACCAACGCCCCACCAATCGGAAATACTAAGCTTGATCGTGAACGACAGAAAATGTGCTTATATGAAATTGGTCACCTAAGTAGCCTTACTAAGGGACTGAGGGCTTTAATCACAAAGCATTCGATTAAAGATCGCTTGCGTACTGCTCATGCTTATCTAAATAAGTTAAAATCTTTGTGCGAGGATGCACAGCATGCAATGCCCGATATCTTTATTTGGCTTATTAGCAACGGAAAACGTTTGGCATACCAAAGAATTCCAGCTCGGTATCTAATTTACTCTGACGTACCAGAAGAGTGTGGTAAATACTGTGGAAAAATGCAAACTCTGTTCATGAAGTGGCCTGGAAAGAAAGCGACCACGCCAAGCGGCTGGGCTATTCCAGCAAAAATCAGCGTCTACCTGTGGCTTGGCGTCGTTCAGGACAAGAAACATTTTATTGACGGTCTACCGAAAGGCTATGATCCCAGTAGCGAGCTAAGAAACGCTGACAAAATACGATCTAATCCGCCGACCAACATATTTTATATGGAAAAACACAATTTCCAAATGAGAGCATATATTTACCAAGCTCGTTCTCTGATTGCTTCTGACTCGTCCGGACTATCGGATCCGTTTGCTCGAGTAGTTATTGGTGACTGTACTACCACCACCCAAGTAATAGATGAAACTTTAAGTCCAACATGGGATGAGTTGCTCGTTTTCGATGATGTACTTCTCTTCAGCACAATGGAACAAATCAAATCTGATCCGCCAACGATCGTAATAGAAATATTTGACCAAGACAAAGTTGGAAAATCCGAATTTATCGGTCGCACTCTTGCAAAACCGAATGTGAAGTCTTTCGAAGAAACCTGTGACAAATCACAGAAGCTCCCTTCACTGGAGTGGTACGAAATCACTAGAGGCGATGACAGAGCTGGTGAATTATTAGCAACCTTCGAACTTCTTGAAATACCACCAAAAAAGGACGCTTCTGTACTCCCCAACCTGCCGACTCCGCGAGAAGGAAATGGAAAGCTACCAATTGATGTCAACAAAGGTCCTATTCTACCAGTCCCGCGTGGTATAAGACCTACATTATCTAAATATCGCATTGAAGTACTATTTTGGGGCCTGCGTGATTTAAAACGCGTCCATCTACTAACTGTCGATAAGCCCCGAGTCGATATTGAATGTGCTGGTCATATTATATATTCAACGGTGATACAAAATGCAAAACGAAATCCCAATTTCACGAATCCTATTAAATATGTGGATGTTGAACTTCCTGATCAAGATTTATATCGACCTCCATTAACCATTCGAGTGGTGGACTGTCGAAGTTTTGGTAGAACAACTTTGGTAGGAACATATACTTTAAACTCCATCCACAAATATCTTTACACTCCAATGAGCAAAAAAGAACGAGATATAGAAGAGAGGAAAAAGTCAATAATTCCATTGCAAAATGTAGACCTACGCGCCAATTGTATCATTCAAGATGACGCAATAACAATCGAAAATGATGGGTTCAAGGAAAATTGCCCTCTAATTTCCCGTGATTCACGATTTGCGGGACCGCCGAGCTCTGGGAAGCAGCCATTGCGTATAAGGTTTACAAGAAACGAACCCGTGAGGAAGAGGAAGCCGAGCACCGACTCTATCATGGGCGATGCTGAGCGCAGCAAAGATTGGTGGACTAAATACTTCGCTTCTATTGAATATATGATCGAGGACGAAAAAGAAGCAAAGAAAGAAAGACAATTCCCACAGACTCAGAAACTAGAGATGATTGGCGAAGCCCGCTCTCCTGATATTACACATTCCCCAAGATCAGTTAGTGAACGCGATCGAGATCGCCCGAAAGGCCGCCGTCGGGCTTCTATAACTGTTAAAATCAGCCCAAGCATGACGAAGAGCAACGAGATACCACGCACAGCCTTGGCAAAGGTGTACCCACATGAACTAGAAGCGGTACCAGAATATGAAGAGTTCAAAGAATGGCTTCATTCGTTCGAACTATATCGAGGCAAGAAAACTGGGGACGACACTGAAGATGAAAGCAGAGTTGTAGGAGTGTTCAAGGGCGCCCTCAAATTCTACAAATGGCCTCTGCCCAAAGGTATTGACGATCATACTGTAATGGGAATGGACCCTAATCATGGATTCTTCCAAGGAGTTCCCAACAACGATCCAATTCATGTGTTGATTCGAGTGTATATTGTCAAGGCTACCGACCTTCACCCAATGGATTTGAACGGAAAAGCCGATCCATACATTGTACTACACTTGGGCTCCAAGCGCATCAGTGACAAGGAACACTACGTTTCCAAACAACTGAATCCTGTATTCGGTAAATGCTTCGAAATAGAGGCAACGTTCCCTCAGGACTCTATGCTGACTATTCAAGTTCTCGATTGGGACTTGCTGGGGTCTGACGATCTTATTGGAGAAACTAAAATTGATCTCGAGAATCGTTTCTACAGCCGCCACCGAGCGACTTGTGGACTTCCCAAAAAATACGAAGAGCAAGGGTACAATCAATGGCGCGATGCTATGAAGCCCACCCAAATATTGGCCAAGCTGTGCAAAGACGGCAAATTAGATCCACCAATTTACGAACAGAGCCGTGTCAAAATTGGCAAAACTATTTTCAATATCCCGGTTGATGATCCAGAACTTTTCTCTAACCCCGACACCATAGAAGAACAAATGGCGCTAGTTGTCTTGCACCGCTGGCAAGAAGTTCCTCGAGTGGGTACAAAGCTAGTCACCGAACATGTTGAAACTAGACCTCTTTATAATCCCAGTAAACCAGGTATTGAACAAGGCCGTCTGGAAATGTGGGTCGACATGTTCCCTAGAGATATGCCTATGCCAGGACCGCCACTTGATATTTCTCCGCGGAAACCAAAATCTTATGAAATGAGAGTTATAATCTGGAACACAGATGACGTTGTACTGGAGGATGATGCATTCTTCACCGGAGAAAAAATGTCCGACATCTACGTCAAAGGGTGGGTTAAAGGACCAGATGACTGTCAAAGCACTGATATACATTACCGCTCGCTCACCGGCGAGGGCAACTTTAACTGGCGTTTTATATATCCGTTTGATTATCTGGAAGCGGAGGAACGTATAGTGATCACTCGCAAAGAGTCAGTATTCTCTTGGGATGAAACAGAATGCAAGATTCCAGCTCGTCTCGAGCTCCAAGTTTGGGACGCAGATCATTTCTCAGCAGACGATTTTCTGGGTGCTATTACCCTTGATTTGAACCGCTTTCCTCGTGGCGCTAAATCATCGAAGCTCTGCACTTTGGATATGCTACGAAACGACGGCTCAGTACCAATGGTAAACATCTTTAAGCAGAAGCGCGTTAAAGGCTGGTGGCCTTTCTACATAAAACGTGACACAGAAGAAATGGAACTCACTGGAAAAGTCGAAGCCGAAATTCATCTTTTGACTCGCGAGGAAGCTGATAAAGTTCCCGCTGGACTCGGTCGCGGTGAACCTGACCCCTTAGAAAAGCCTAACCGCCCGGATGCTTCATTCATGTGGTTCTTGAACCCACTGAAATCGATCCGTTACATCGTCTGGCACAATTACAAATGGACTATCTTGAAGGCTGCTATCATCATCGCCATGGCTGTCATGATTCTACTACTCGTTTACGCAGTCCCAGGCTACACTGTTAAAAGGCTTTTGGGTGCTTAA
Protein
MEVFYVAPIVEEPVVIHMEDLDNPAELVSIKGSIKDQPSVHGSARASLRGSQDGSVASTSTVIDIEEENALENIERNIANIERSMQKKEVYIDIDSGDESRGYKLKNVGKRLLRRGFSLGTEKTVTISEHERKRTSTFKSVRNLMRMGRRMYDSSGDEEQGLLDMPGPSSEPDRPISQTSNSSDEMVTEPKPLPDTPKIKRLRTVLDMAGPSALKAADFQVCVTIIEARQLAGLNMDPVVCVQVGDVRKYTSVKESTNCPYYNEYFVFDFHMPPIMLFDKIITLSVLQSRNILRANKLLGSFKLDVATVWSQTDRQFYHKWALLTDPDDVAAGAKGYLKCDISIIGKGDTIKIPPKSEKDEDDIEANLLLPDGVPIERQRAKFIVKVYKAEGLPKMNYSIISNVKRAFTGESTELVDPYVQVSFAGMTGSTSVKKNCYAPVWNEQIIFTEMFPPLCQRIKVQLRDNAPVHPNIIGTHFIDLKTISNDGERGFLPTFGPAYVYMYGSTRDYSIIDQHANLNMGMGEGVAYRARILLSIRTEIAESIECPTTEVEIESIPPVIESSFEKNAEFFLFSTIFDANMIDKRLVDKALQFELSIGNSGNSLDGHNESVRRPQDVDLEENEDISVDTGYWQSLTHPTKATSTDKTYYYIPYWDHKQCMHVRSIWPDHRRRMYNSNLIANIVEKFEEGLNDAQATIESEVNPGSNSILALKSALETVSSACAAYVRHMTNAPPIGNTKLDRERQKMCLYEIGHLSSLTKGLRALITKHSIKDRLRTAHAYLNKLKSLCEDAQHAMPDIFIWLISNGKRLAYQRIPARYLIYSDVPEECGKYCGKMQTLFMKWPGKKATTPSGWAIPAKISVYLWLGVVQDKKHFIDGLPKGYDPSSELRNADKIRSNPPTNIFYMEKHNFQMRAYIYQARSLIASDSSGLSDPFARVVIGDCTTTTQVIDETLSPTWDELLVFDDVLLFSTMEQIKSDPPTIVIEIFDQDKVGKSEFIGRTLAKPNVKSFEETCDKSQKLPSLEWYEITRGDDRAGELLATFELLEIPPKKDASVLPNLPTPREGNGKLPIDVNKGPILPVPRGIRPTLSKYRIEVLFWGLRDLKRVHLLTVDKPRVDIECAGHIIYSTVIQNAKRNPNFTNPIKYVDVELPDQDLYRPPLTIRVVDCRSFGRTTLVGTYTLNSIHKYLYTPMSKKERDIEERKKSIIPLQNVDLRANCIIQDDAITIENDGFKENCPLISRDSRFAGPPSSGKQPLRIRFTRNEPVRKRKPSTDSIMGDAERSKDWWTKYFASIEYMIEDEKEAKKERQFPQTQKLEMIGEARSPDITHSPRSVSERDRDRPKGRRRASITVKISPSMTKSNEIPRTALAKVYPHELEAVPEYEEFKEWLHSFELYRGKKTGDDTEDESRVVGVFKGALKFYKWPLPKGIDDHTVMGMDPNHGFFQGVPNNDPIHVLIRVYIVKATDLHPMDLNGKADPYIVLHLGSKRISDKEHYVSKQLNPVFGKCFEIEATFPQDSMLTIQVLDWDLLGSDDLIGETKIDLENRFYSRHRATCGLPKKYEEQGYNQWRDAMKPTQILAKLCKDGKLDPPIYEQSRVKIGKTIFNIPVDDPELFSNPDTIEEQMALVVLHRWQEVPRVGTKLVTEHVETRPLYNPSKPGIEQGRLEMWVDMFPRDMPMPGPPLDISPRKPKSYEMRVIIWNTDDVVLEDDAFFTGEKMSDIYVKGWVKGPDDCQSTDIHYRSLTGEGNFNWRFIYPFDYLEAEERIVITRKESVFSWDETECKIPARLELQVWDADHFSADDFLGAITLDLNRFPRGAKSSKLCTLDMLRNDGSVPMVNIFKQKRVKGWWPFYIKRDTEEMELTGKVEAEIHLLTREEADKVPAGLGRGEPDPLEKPNRPDASFMWFLNPLKSIRYIVWHNYKWTILKAAIIIAMAVMILLLVYAVPGYTVKRLLGA

Summary

EMBL
NWSH01002539    PCG68021.1    KQ459605    KPI91882.1    AGBW02014274    OWR41972.1    + More
KQ971331    KYB28305.1    KYB28307.1    KYB28306.1    QOIP01000008    RLU19597.1    GL449036    EFN83377.1    KK107109    EZA59254.1    GL888387    EGI61762.1    KQ977444    KYN02612.1    KQ982080    KYQ60350.1    ADTU01013405    ADTU01013406    ADTU01013407    ADTU01013408    ADTU01013409    ADTU01013410    DS235820    EEB17738.1    KQ976401    KYM92421.1    KQ978625    KYN29623.1    KQ981490    KYN41165.1    KQ434814    KZC06819.1    KQ435728    KOX77820.1    KQ414868    KOC59956.1    KZ288219    PBC32340.1    GGMS01002023    MBY71226.1    GGMR01009134    MBY21753.1    ABLF02028044    ABLF02028047    ABLF02028048    ABLF02028049    ACPB03000696    ODYU01005944    SOQ47360.1    APGK01057656    APGK01057657    KB741280    ENN71006.1    AXCN02002232    JRES01000902    KNC27433.1    AAAB01008846    EAA06376.6    CVRI01000036    CRK93099.1    AXCM01005473    ATLV01017186    KE525157    KFB41978.1    DS232106    EDS34963.1    JH432022    APCN01001349    APCN01001350    AJVK01010042    GAMC01003749    JAC02807.1    KB202567    ESO89647.1    JXJN01019403    JXJN01019404    GCES01012923    JAR73400.1    AYCK01000297    JXJN01018633    KV924233    PIO39115.1    PIO39116.1    CP026259    AWP16174.1    HADY01005795    SBP44280.1    GCES01014903    JAR71420.1    KQ042093    KKF19068.1    AYCK01000296    CAAE01015123    CAG13177.1    GEZM01015393    JAV91692.1    AHAT01031361    KB743178    EOB00606.1    ADON01079490    ADON01079491    KL225998    KFM06138.1    KL514949    KFO87674.1   
Pfam
PF08150   FerB        + More
PF16165   Ferlin_C
PF00168   C2
PF08151   FerI
Interpro
IPR000008   C2_dom        + More
IPR037725   C2F_Ferlin       
IPR012561   Ferlin_B-domain       
IPR037720   C2B_Ferlin       
IPR029996   Otoferlin       
IPR037723   C2D_Ferlin       
IPR035892   C2_domain_sf       
IPR037724   C2E_Ferlin       
IPR037722   C2C_Ferlin       
IPR032362   Ferlin_C       
IPR012968   FerIin_dom       
IPR037721   Ferlin       
IPR037726   C2A_Ferlin       
IPR030000   FER1L6       
Gene 3D
PDB
4NS0     E-value=5.76187e-06,     Score=126

Ontologies

Topology

Length:
1962
Number of predicted TMHs:
1
Exp number of AAs in TMHs:
23.49517
Exp number, first 60 AAs:
0
Total prob of N-in:
0.00004
outside
1  -  1928
TMhelix
1929  -  1951
inside
1952  -  1962
 
 

Population Genetic Test Statistics

Pi
30.045147
Theta
28.055063
Tajima's D
0.450776
CLR
0.031948
CSRT
0.507424628768562
Interpretation
Uncertain
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