SGID Silkworm Genome Informatics Database
Gene
KWMTBOMO02001
Pre Gene Modal
BGIBMGA013556
Annotation
PREDICTED:_multiple_epidermal_growth_factor-like_domains_protein_8_[Bombyx_mori]
Location in the cell
Extracellular   Reliability : 2.884
 

Sequence

CDS
ATGTTTCGTCCACGAGTTCGGGAAAAAGGAGTAGGTTTAGTAGTAGTCAGCTGGATTGGATTGATCGTATTGTGCGCCGCGTCTACTTCACCCTGCGACAAGACTCGGCGAGTTTTCACGGCGCAGAGCGGTATTATCACTGACGGGCCTAGCACCTCTAATTACACTCAGGATTCCCATTGCGAATGGCTTATCAAGGCAGCTAACAAAAGTCAATACATAACATTGAGCTTCATTCGTATGGGCACAGAATGTTCCTATGACTATGTTTTTGTTTATGATGGAGATTCTTTTGATGCTCCACTGCTTGGTAGTTTTAGTGGGAAAACAGAACCTCAAAACGTAACTGCTTCTAGTGGATATATGTTAATACTATTGTACAGTGATACAAATTATGTATTAGACGGATTCCGTGCAGCGTATGCCATACACAATTGCCCTAATAACTGTACTGAAAGAGGGCTCTGCATTTCGAATGAATGTTTTTGTGCCGGAAATTGGGGAGGGGCTGATTGTAGTATTGAAATCTGCCCTAACAGTTGCTCAGGCAATGGGGAATGTGAAGGTGCAAAGTGTGTATGTAAAAAAGGATATTCTGGTGAATCTTGTACCTTAAAGAAAAATGACAAAGAAGGCAATAGTTGGCATTGGCTCTCTCGCTCTGAAAGCGGCATGACAAGACGGGCAGCTCACACTGCCATTTACGTAAACCACACAGACTCTTTGTATGTGTTTGGAGGATATGATCTGAATAAAGTGTTAGGTTCACTGGAAATTTATAGGTTTTCTACTAGTCAATGGTATGATGAAAAAGGAAAAATCTTGCATAGGAATCCAACTGATGAAGATCGTAACAAATATCTTCTAACTTTATTTACCAAGAGCAACTTAGGTGGCAACTTACTAGTTGGAAATAAGAATTCTATTTTAAATACAGTTGTTTCATCATTCATGAATCATGACAAATCAACTTTACCGCTTATGTACTCACATATGCCTCCGCCGTTTACGGAAACCTATTTACATTTTACTGAGCGACCGGATGCTATGTCAGAATCGAATGTAACTAAACCAGAACCAAGATATGGACACTCAGCAGCTGCTTATGGAAAAGGCTTTGTCTTGTATGGAGGAAAATTATCTGACGGTAGTTTATCTTCAGAGCTGTGGTTGTATGATGCAGAACAAAATAAATGGTCACTAAGAGCACTGAACTCTTCGTTTACACCACCTGGCTTAACTCGACACAGCCTCACTACCGTAAAAGATGAACTGTATTTATTTGGAGGTAGTACCGTGGACGGTGAATTTTCTGCAAGAATGTTCAAAATAAAATTGGGAGATGTGAACAACGAGAATTGGGAGATGGTCCAGGTGAGGGGAGGCAAAGAACTGGATGTCCGAGTAGTCGCTCATTCCGCAGTCTACCATTCGCATTCTAACTCCATTCTCGTGTACGGAGGCGTAGTGGCCAGTGTCGCGAGGTTTTCGAAACTATCAGACAGGATGTTTGCTTTCGACATAGATTACAAACATTGGAGTGAAATACATTATCCTAGAGCACACTTGCGCGACACTTATGTGCCACGAGAGAGAGCTTTCCATACCTCGACTATTATAGGTAATTATTTGATCGTTTTCGGCGGTTATTCACATCGGCACAACAAAGACGAGATCTGTTACGACAGTCAAATGTATATTTATCATTTGGGTTGTCACTCGTGGATACCTTTAGATGTATTAGGTAAAACTCGTAAGCTGTATCCGAAGAAGCAAGGAGTGTTCGCCCACGCGGCTGATTTGAAACCGCCTTCGACTTTGCTTATTGCTGGGGGATATCACGGCAACGTAAACGGTGACCTATTAGCATTCGTAGTTCCCAGTTGGCAAGCGGGGATATTGAATAAAAATCCAGAATCCTCATGTCCGCGTCATCATTCGCAACCTGAATGTCTAGCCGATCCTGAATGTGGATGGTGCTCTGCGGATGATATATGTTACGGACGTACGATTGGCTCGAATTGTACCACAAATCTGCAGTCAATACGTTGCGGCGGCATCTGTCCTGCTCTAGGCGATTGCCACTCTTGTCTCATCCACGGACCGCCGCTGGAAAACCAGAATGTGTCCCGCAAACCTCTTCCCTCAGTGAGCACGAAGCTCGGCCTGCAACAGTGTAACTGGTGCGTGCAAAACGCACGTTGTCATCACAAAGACGATAATTACGGAGTTTGCGGAGAAGACACGCCTTCCGAAAACCCGGGCTGGTGGGGGCCGACCGGTACCGAAGTAACCACACCAGACGAGTGTAAAATTCTTGACAAAAGACCGGGTCTAACGTTTCTTAGATACCAACAGCCGGCCGATTGGAACCACCCCGACGGCGTGTCCGTTGTGAACGCGACCACCGTGGACTGGGGCACGGGGTCGGGCAGTAACCAACTGTTCATAGGAACGAGCGAAGCACATTTAAAAGGATGGCTCCACATCCCGCAACATTGGAATGGAACTGGGGAAACACTGCACGTATGCGCCGGGTATTCGAACGTTTCTATTCAATTAGGTGATAACGCAGATGCAGTGACGAACTTAACGGCGCAACCTTCAGCTTGTTCCCTCGTCGACTGGCCAATATTAAACCCGGGGAAGTTATCAGTAGATATGCACGCGAATGATTCTTTACACACCGGACTATATCCCTCGCATCATCATGCCAAAATGGAATTATTGCACAATAAGTCTCAGGAAAGTGCCAAGGTTTTCACATTTGAATTTTTGGAACCGTTCTCCGACGGGCAATGCTCTAACTACGACAATTGTTTGCTGTGCTTATCTGATGCCGCTTGCGGTTGGTGCGAACTGACGAACCGATGTGAACCCAGAAATGCTGACGAGAAATCGGTGTGCGTCGTGGACGGCCAGTGGAGGTATCTCACATTGCTGCCGGCCGCTTGTCCAAACTGTTCCAATTACATAAGCTGCGAGCGCTGCGTGTCCGGCCCGCACTGCGAGTGGTGGGCGGACGAGGCTCGCTGCACGCGGCGCGGCCGGGCCGCCGGCGCCGTGCTGGACGCCGCAGACTGTCCGGCGCCGTGCCGCATGCGCCTCGACTGCGAGCACTGTCTCGACGAGCGCGGCCGCTGCGTCTGGTGCGAGGCCACTCATCAGTGCTTCAGCTTCAGTGTCTACACCAGTGAATATCAGTTCGGCTTGTGTCGAGAGTGGCTCGACCGGGCCTCCGTTCCGGCCGAAGAAGCCATGCGAAAATCCGGCCAGTGCAAATCTTGTGGACGCCACGCTCAATGTTCCACGTGTTTGCGTAGTATGGGTTGCGGATGGTGTCACTCGTTTGAAAACCCTATAAACGGTGCTTGTACTGAGGGCGATTTCACTAAACCTCATAACGATTGCGCTCTGTTGTTGAACGTGACCCCTGAGGATGCGGGGTGGGCGTATGCGCAGTGTCCGGACGTCGACGAATGCGGCCTCGGCCTCCACGACTGTCACGAGCATGCCGATTGTACCAACACGCACGGGTCGTACACATGCAAATGTAAACAGGGTTATATAGGCGACGGCAAAAAAAGCTGCGTCCAAACGTGTTACAATAACTGCATTCACGGGTACTGTCTCGGTGCTCCTCAATATAAATGTCACTGCGACCTCGGGTGGACCGGTGCCGACTGCTCTATTAATTGCGGATGCCATAATCATTCGACGTGTAAAGGTGGCGTCGGTCGATGTGACGAATGCCAAGACTGGACTGAAGGTAAATTCTGCGAGAGATGTAAACCGGGGAGCCACGGTAATGCAACAACCGGACAAGGATGTCGCCGGTGTGACTGTAACGATCACGGAGATGAAACGCGGGGCTTTTGTAATGTGACCACAGGAGAGTGCATTTGTAAAGACAACACCGAAGGACTGAATTGTGAACGATGTAAATCGAAATTTTACGGCGACCCTCGTCACGGTGGTCGATGTTATTATCAATGCGAACCCAGAGGCATGATCAATGCCTCCGAAATAGAGGGTATCGGATCGTATAAAACCGACCCTGATATAAAGAGTATAGGCCCCTCAAAAGAATGTTTGTGGATCATATCAGCGGCGGACGTCAAGGACGCTATTATTTTGTTTACTGTGAACTCGTCTACTTTCAACGTGCCGTGCGATGAAAACGCAGTTTACGTGTACGACGGTCTAGGCGGCGTTCCAGACATGAGTAATAACCAGCAGAGTCAATTGTTGGGTGTGTTCTGTAACGGCGCCTCTTCTGGTATAGTCGAAGCTAGAAGTGGAAATTTGACAGTACATTACAAACAAGGACAACCCGATCAGGGGTTCGAGGGTGTATATAAGATGCTGGCGTGCGATGGACATTGCGCTTGGCCGAGGGAATGCAGTAAACGTCATTGTGCTTGCAGGGACGGCTATGGGGGGCCGAACTGTGAATTCGAAATCTGTAGGAACAATTGTTCCATGTCCCAAAACGCGGGTAGTTGCGACCTTAGCTACGGACGGTGCCTCTGTAACGATGGATACGGTGGCGATGATTGTTCTGTTAAAATAGACAAAACGCAGTTAGTGTTCACAGAGCTATTTAATTCCGAATATTTATCGGACGGATTGGATCACCTCAGGAAAACTTTACCGAGATTCGGGCACACTTTAGTTGCCGATCGACGTGGATTGTGGATGTTCGGTGGATATTCACTCTCACACGGTCCACTTAACGATATCAGGTTTTTTGATACGAAAAATAATACATGGATGCAGGTTACAGTGGAAGCAACGCCAGACGCGAAAATGCCCGAAGGTCGATACTTCCACGCAGCTGAAATATATCATTCTAAACAAAATATTTATATCTACGGTGGTTTGAGCTTACAAGAGAAAAGTGGACAGAATAAGACTTTAGGTGATTTCTGGCAATTCAGTTTGAAAGATCAACGATGGGCTAATATAAAAAGCAAAGACGACAAGCCTCCACCTTTAGCTGGCCATACATTAACTTTACAAAAGTATCAAGACTACGAGAGCTTAGTTTTGATCGGGGGGTTTTCACTGGAGGGTGGGTTTATGTCCGACATCTGGGAATTCGATCTTGACAACGAAAAATGGGCAAAATTAAATTGCGAGGGAGCAAAACCAACGGGCATCATCGGGCACAGCAGCGTATATCACGCTCCTTCGCAAAGCCTCTACGTTTTTGGTGGAATATTGTATTCTTATAACGGAACGAGTTTGTCGAATAAACTCTTTTCATTTCACTACCCTACTAAGAAATGGAGCGAGCTTCCTATTTTTCCAACTTTACATCACTATAACGATAATTTGCCACAAGCAACATATTTACACTCTGCGGTCACAACGAATGATTACATGATAATATTTGGTGGGAGAACAGAGCCCGAACACAGATCGGACTCTTTGATCGCGTATGTCTATAGTTGCAATCAGTGGGTGCGCTTAGTGAAAGGTGTCAGTATTGTCGGACATCCACCTCCGCCCACAATAGCACACGCTATGGCCATAGACAGTGAAACGGAAAACGAAGGATACATTTATATAATAGGAGGTTGGACGGGTAGCGCTCATTGCCAAGTAACGCGGATCTCTCTGCCGGAGGATCTCTGCTCGCTATGGAGTTCCAGTAAAATGGAGTGCCGCAGTCATATGGGTTGCAGTTTCTGCAGCACCGGAAATTACACGAAGTGCTATTCAGTCGACAAGCCAGGATGCGAGAGCGGTGAGCGGGTATCAACGAATACGGGTTCCGCGTGCGATGCCGAATTGGTATCCAGGCGTTCGTGTGAAAATTTCACAACGTGCGCTTCTTGTCTGGGCGCTTGGCCTTTGTATCCTGAAGAGAAGCCGGCGTGTAGGTGGTGCGAATCATGTGCTGCGGCTGTGGGCGAGTGCGTGCCGACGGATGAGTCTTGTACGAGTATGAAGTGTAACGCTGGCACGACGTATATCAGCGACGTAGGTCAATGTCCCGAGCTCAGATGTGTGGCGTCCGACTGCGATAGATGCGTATCCAATCAGTGCACGTGGACCAGGCACGCAAAGAGAGAAGGTCAGATAACGAGAGTGGTGGAAGACGCACAAGAATTATTCAATTGGACTTGTGTGTCGATCGACGAACCTGGACGCGCGAGTCTTCGGCCTACCACCAGGGAGGAGTGTCCCAGTCGCTGTCACCTGTTCGAAGATTGCCAATCGTGTTTGAGTTCAGAAGGAAGCGAGGGCGGCTACTCTGAATGTCACTGGGCAACGTATTTAGGGAAATGCATATCGCCTGCCTATCAGCCGGTGTATTGCGCGGGCGGGGTTTGCGGTTTAGTTTTAACGAAAGCGGATAAGAACAAGTGTCCGGCGCCGTGCGGGACCTTCGAGCAGTGTTCGGAGTGCCTGCACCACTCACACTGCGGCTGGTGCGCTGTGGACGGCGCCAACGGGGAGGGCGTGTGCGCCGAGGGGTCCATCGACTCGCCGCTCGAGTACTCGGCGCGGACTACTTGCGCGGCCGTGTACGAAAGCGCGCACCAGACGAACAACACTAACGAAACGTTCTCGTGGCACTACACGCGCTGTCCGCCGGAGAACGAGTGCGAAAATAATCACCATCAATGTAAAGCTGAATCAGAGGTGAGGAATACGACAGTAGAACACATTCACCGAGACGTGGACTTTATTTACAGGCTTCGTCAAACAGAACGCGTACTTAGCGCTACGTCTTAA
Protein
MFRPRVREKGVGLVVVSWIGLIVLCAASTSPCDKTRRVFTAQSGIITDGPSTSNYTQDSHCEWLIKAANKSQYITLSFIRMGTECSYDYVFVYDGDSFDAPLLGSFSGKTEPQNVTASSGYMLILLYSDTNYVLDGFRAAYAIHNCPNNCTERGLCISNECFCAGNWGGADCSIEICPNSCSGNGECEGAKCVCKKGYSGESCTLKKNDKEGNSWHWLSRSESGMTRRAAHTAIYVNHTDSLYVFGGYDLNKVLGSLEIYRFSTSQWYDEKGKILHRNPTDEDRNKYLLTLFTKSNLGGNLLVGNKNSILNTVVSSFMNHDKSTLPLMYSHMPPPFTETYLHFTERPDAMSESNVTKPEPRYGHSAAAYGKGFVLYGGKLSDGSLSSELWLYDAEQNKWSLRALNSSFTPPGLTRHSLTTVKDELYLFGGSTVDGEFSARMFKIKLGDVNNENWEMVQVRGGKELDVRVVAHSAVYHSHSNSILVYGGVVASVARFSKLSDRMFAFDIDYKHWSEIHYPRAHLRDTYVPRERAFHTSTIIGNYLIVFGGYSHRHNKDEICYDSQMYIYHLGCHSWIPLDVLGKTRKLYPKKQGVFAHAADLKPPSTLLIAGGYHGNVNGDLLAFVVPSWQAGILNKNPESSCPRHHSQPECLADPECGWCSADDICYGRTIGSNCTTNLQSIRCGGICPALGDCHSCLIHGPPLENQNVSRKPLPSVSTKLGLQQCNWCVQNARCHHKDDNYGVCGEDTPSENPGWWGPTGTEVTTPDECKILDKRPGLTFLRYQQPADWNHPDGVSVVNATTVDWGTGSGSNQLFIGTSEAHLKGWLHIPQHWNGTGETLHVCAGYSNVSIQLGDNADAVTNLTAQPSACSLVDWPILNPGKLSVDMHANDSLHTGLYPSHHHAKMELLHNKSQESAKVFTFEFLEPFSDGQCSNYDNCLLCLSDAACGWCELTNRCEPRNADEKSVCVVDGQWRYLTLLPAACPNCSNYISCERCVSGPHCEWWADEARCTRRGRAAGAVLDAADCPAPCRMRLDCEHCLDERGRCVWCEATHQCFSFSVYTSEYQFGLCREWLDRASVPAEEAMRKSGQCKSCGRHAQCSTCLRSMGCGWCHSFENPINGACTEGDFTKPHNDCALLLNVTPEDAGWAYAQCPDVDECGLGLHDCHEHADCTNTHGSYTCKCKQGYIGDGKKSCVQTCYNNCIHGYCLGAPQYKCHCDLGWTGADCSINCGCHNHSTCKGGVGRCDECQDWTEGKFCERCKPGSHGNATTGQGCRRCDCNDHGDETRGFCNVTTGECICKDNTEGLNCERCKSKFYGDPRHGGRCYYQCEPRGMINASEIEGIGSYKTDPDIKSIGPSKECLWIISAADVKDAIILFTVNSSTFNVPCDENAVYVYDGLGGVPDMSNNQQSQLLGVFCNGASSGIVEARSGNLTVHYKQGQPDQGFEGVYKMLACDGHCAWPRECSKRHCACRDGYGGPNCEFEICRNNCSMSQNAGSCDLSYGRCLCNDGYGGDDCSVKIDKTQLVFTELFNSEYLSDGLDHLRKTLPRFGHTLVADRRGLWMFGGYSLSHGPLNDIRFFDTKNNTWMQVTVEATPDAKMPEGRYFHAAEIYHSKQNIYIYGGLSLQEKSGQNKTLGDFWQFSLKDQRWANIKSKDDKPPPLAGHTLTLQKYQDYESLVLIGGFSLEGGFMSDIWEFDLDNEKWAKLNCEGAKPTGIIGHSSVYHAPSQSLYVFGGILYSYNGTSLSNKLFSFHYPTKKWSELPIFPTLHHYNDNLPQATYLHSAVTTNDYMIIFGGRTEPEHRSDSLIAYVYSCNQWVRLVKGVSIVGHPPPPTIAHAMAIDSETENEGYIYIIGGWTGSAHCQVTRISLPEDLCSLWSSSKMECRSHMGCSFCSTGNYTKCYSVDKPGCESGERVSTNTGSACDAELVSRRSCENFTTCASCLGAWPLYPEEKPACRWCESCAAAVGECVPTDESCTSMKCNAGTTYISDVGQCPELRCVASDCDRCVSNQCTWTRHAKREGQITRVVEDAQELFNWTCVSIDEPGRASLRPTTREECPSRCHLFEDCQSCLSSEGSEGGYSECHWATYLGKCISPAYQPVYCAGGVCGLVLTKADKNKCPAPCGTFEQCSECLHHSHCGWCAVDGANGEGVCAEGSIDSPLEYSARTTCAAVYESAHQTNNTNETFSWHYTRCPPENECENNHHQCKAESEVRNTTVEHIHRDVDFIYRLRQTERVLSATS

Summary

EMBL
BABH01038988    BABH01038989    BABH01038990    BABH01038991    BABH01038992    KQ460398    + More
KPJ15102.1    KQ459601    KPI93788.1    AGBW02012699    OWR44600.1    JTDY01002042    KOB72256.1    NWSH01000331    PCG77333.1    PCG77331.1    PCG77332.1    AJWK01026351    AJWK01026352    AJWK01026353    AJWK01026354    AJWK01026355    JXUM01069817    KQ562571    KXJ75580.1    CH478268    EAT33370.1    DS232023    EDS32341.1    ADTU01006956    KQ976731    KYM76277.1    KQ983112    KYQ47373.1    KQ981523    KYN40429.1    GEZM01099122    JAV53482.1    GL765324    EFZ16551.1    QOIP01000010    RLU17960.1    KQ977120    KYN05592.1    AXCM01002055    AXCN02000822    APCN01002461    UFQS01000215    UFQT01000215    SSX01456.1    SSX21836.1    AAAB01008964    EAA12463.4    ADMH02000711    ETN65266.1    GGFK01002098    MBW35419.1    JRES01000905    JRES01000841    KNC27368.1    KNC27827.1    AK417482    BAN20697.1    JXJN01025273    GAMC01010764    JAB95791.1    CH379061    EAL32986.3    CH479225    EDW35130.1    JXJN01003724    CH902620    EDV31001.2    CH963857    EDW76175.2    AE014134    AAF52597.4    OUUW01000004    SPP79819.1    CCAG010019860    CH933807    EDW12889.2    CM002910    KMY88912.1    CM000157    EDW88446.2    CH954177    EDV59292.2    CH916368    EDW04103.1    KK852451    KDR23676.1    DS235226    EEB13632.1    CH940649    EDW64837.2    GFXV01005760    MBW17565.1    GGMS01011217    MBY80420.1    KZ288204    PBC33239.1    GL450772    EFN80520.1    GL438568    EFN68801.1    NNAY01002229    OXU21760.1    CP012523    ALC38654.1    GGFL01002248    MBW66426.1    ABLF02029537    ABLF02029542    ABLF02029548    ABLF02029551    KQ434936    KZC11952.1    KQ761289    OAD57912.1    AHN54252.1    GDIQ01268627    JAJ83097.1    GDIP01035633    LRGB01002384    JAM68082.1    KZS07936.1    GDIP01124865    JAL78849.1    GDIQ01268084    JAJ83640.1    GDIQ01052338    JAN42399.1    ACPB03001477    ACPB03001478    GDIQ01021066    JAN73671.1    KQ414685    KOC63790.1    GDIP01016412    JAM87303.1    GAKP01014996    JAC43956.1    GGFL01006004    MBW70182.1    GL732533    EFX84934.1    JH432169   
Pfam
PF00053   Laminin_EGF        + More
PF01437   PSI
PF00431   CUB
PF01344   Kelch_1
PF07645   EGF_CA
PF18720   EGF_Tenascin
PF07646   Kelch_2
PF12947   EGF_3
Interpro
IPR000152   EGF-type_Asp/Asn_hydroxyl_site        + More
IPR000742   EGF-like_dom       
IPR016201   PSI       
IPR013032   EGF-like_CS       
IPR018097   EGF_Ca-bd_CS       
IPR002049   Laminin_EGF       
IPR009030   Growth_fac_rcpt_cys_sf       
IPR015915   Kelch-typ_b-propeller       
IPR000859   CUB_dom       
IPR035914   Sperma_CUB_dom_sf       
IPR002165   Plexin_repeat       
IPR001881   EGF-like_Ca-bd_dom       
IPR006652   Kelch_1       
IPR011043   Gal_Oxase/kelch_b-propeller       
IPR001368   TNFR/NGFR_Cys_rich_reg       
IPR011047   Quinoprotein_ADH-like_supfam       
IPR041161   EGF_Tenascin       
IPR011498   Kelch_2       
IPR024731   EGF_dom       
SUPFAM
SSF117281   SSF117281        + More
SSF49854   SSF49854       
SSF57184   SSF57184       
SSF50965   SSF50965       
SSF50998   SSF50998       
Gene 3D
PDB
6GJE     E-value=7.47674e-09,     Score=151

Ontologies

Topology

SignalP
Position:   1 - 27,         Likelihood:  0.755395
 
 
Length:
2248
Number of predicted TMHs:
1
Exp number of AAs in TMHs:
17.74305
Exp number, first 60 AAs:
17.60665
Total prob of N-in:
0.90356
POSSIBLE N-term signal
sequence
inside
1  -  12
TMhelix
13  -  30
outside
31  -  2248
 
 

Population Genetic Test Statistics

Pi
270.338157
Theta
205.860906
Tajima's D
0.935878
CLR
0.118689
CSRT
0.643617819109045
Interpretation
Uncertain
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