SGID Silkworm Genome Informatics Database
Gene
KWMTBOMO07893
Pre Gene Modal
BGIBMGA000964
Annotation
PREDICTED:_teneurin-a_isoform_X2_[Bombyx_mori]
Location in the cell
Extracellular   Reliability : 2.006
 

Sequence

CDS
ATGAGTCAGAATATAACTTTTTTCCTATTGGGCGGCGCCGCGATGTCGAGCGGCATGGGTGGTGGGACTTTAGGCAGCGGACACTGTCAGCTAGCGAACCAGCCTCTGGTAATGCCGGTGTTTCCGCTACGGGCGAGCCAGCCGAGTCCTGTTCCTGTGTATTCTCCGTCTCGCTTTCACATAGACAAGAGATGTCAGCATCGATGCACGTGGAAGTGCCTCGCGATAGCCATGATCTGCTTATGCGTCATACTTGCAGCGATGCTTGCCTACTTTATAGCTCTATCGTCAATTAAAAGTAATATAGACAATTCAAACTGCATTCTGGTACAAGATGTGAAAGCAGTGACACACGCACAGGGAATCAGAGATTCATTATCTACTTCGTCGCCATCAGATGAATCATTGTCAACTTCTTCATTGGGTGGATGGTCCACAACAGCAGAGTCAGCACTCGAATCAGCCATTATACCTCAACAAGCACAACAAGCAGCTCCTCCGCCATGGTCTCCAGCATTAGAAGTTCGAGAATTCGATGAATTGCATAGTGCCACAATACCCGCCTATCAGTTTTGGAGTTCAGAATTTAGGAACAAACAGCCTGCCTATGTCAGTCTAAATTTTACTGTACCTTGGGGAGCTAATTTTGCCGTTTATGGCAGACGAAATGTAGCACCTAGTGTTACACAATATGATTTTGTCGAATTTATACGCGGTGGCAGGGTAGACCATAGATTTAGAAGAAGGAGAAGTCCATATGTACCAGAACCACAAGAACAAAAACTAAACGACTGGGAGGCATTACTGAGCACGATCAATCCGTATCATAAATGGAATCACACTATAAATAAGAGATCAACTGATATGAGAGTCAACGTCAGTATTCTGCAGTATTTAGATACAGGCCGATGGTTTATATCTCTATATAATGATGAGCTACAACCGCATCATGTAGAAATGATAGTTTCTGAAGCGGAAGGAGTAACAAATTCTTGTCCCGATGACTGCTCTAATCATGGATCATGTTACTTAGGAAAATGCGAATGTAGAGATGGTTATGAGGGACACGACTGTTCTAAAAGTGTTTGTCCAGTATTGTGTTCAGGACACGGTACTTATGCCGGTGGAATATGTCATTGTTCCGAAGGTTGGAAAGGTTCAGAATGTGATATACCAGCTCATGATTGCGAACCTGCAGATTGCTCTGGACGTGGACAATGCATAGCTGGTTTATGCCATTGCAAAGCTGGTTGGAAAGGGCCCAAGTGTGATGAAGAGGATTGCCTGGATCCGACTTGTGGAGGTCATGGTTCGTGTGTTCGCGGTCGGTGTGTATGCCGTGCAGGATGGCGTGGCGCTGCTTGTACTGAGCGAGATGCGCGTGTTCAACGCTGCCTCCCAGCCTGTTCGCAACGTGGAATCTATGACCTCGATGCGGGGAGATGCGTTTGTGATCCACTTTATACAGGCGACGATTGTTCACAAGTTGTCTGTTCTCTGGACTGCGGTCCTCATGGAGTCTGCGCTGAAGGTGTATGCCGATGCGACGAAGGATGGACTGGAGCAATTTGTGATCAAAGGCCCTGTGACTCCCGCTGCCATGAGCACGGTCAATGCAAGAACGGAACTTGTGTTTGCACTCAAGGCTGGAACGGTCGACATTGTACTTTGCCGGGTTGTCCAAATGGATGTTCACGTCACGGTCAATGTCTGCTGGAAGATGGCGTCTACCGCTGCTCCTGTGCTGAAGGTTGGGCTGGAAGTGATTGCTCAATCGCTCTCGAACTTTCGTGTAACGACAACGAAGACAACGATGAAGATGGCATGACGGACTGCTCGGACTCTGAATGCTGTAGCCGACCGGAGTGTGCTGAACATATCATGTGCCTAGCCTCCAACGACCCCGTAGAAGTTCTGCTACGAAAGCAACCTCCATCTGTCACGGCCTCCTTCTATCAACGAGTTAAGTTCCTCATCGAAGAAAATTCGGTGCAGAGCTACGCACACATGGACGAATATTCCGAAAGCCGAGTGTCGGTGATGCGAGGGCAGGTGGTGTCACCTCAAGGACTCGGCATAATTGGCATCAGGGTCTCCGTGGATCGAGAGGCTCGCTTCGGATTTACCCTCACAAGACAGGGCGGATGGTTCGACGTACTTGTGAACGGGGGAGGAGCAGTGACCCTGCAGTTCCAGCGATCTCCTTTCAAGCCTCTTCGGAAGACTGTATTCGTTCCATGGAACCAAATAGTCGTATTGCCACCAGTGCAAATGGAACTAAGTGACGACAATGTCAAAGTGCCGACTCCAAGGGCTCCTCCGCGTATCGACTGGTCTCCAAGTCCTCAATGGTGGGAAGTCGAGTCACCACCGTGTGCAGCACATGACCACGAGCGACTCAGACCTGAAGTGGTAGCCGTACCACCACTGGCAGCACCAGCTGCATCTTCAGCAACGACTACCACCGTTATTTATCCGGAGGCGCAGATCGTGAGCGAGTCTATTGGAATTCCTGGTTCATCAGTTAAATTGACATACAGATCTTCTCAAGCTGCGGGCTATCTATCTTGTGTCCATATCCAACTAACTCGCCGAATAGTACCTGCGGCTCTCTCAAGAGTACACGTCAGAGTTGAAATCGAAGGATCTTTACACACGCAGACTTATGAAGCGGATCCGGACCTAACTCATGTTTTCGCTTGGAGCAAAAGAAATGTTTATAAGCAAAAGGTGTATGGTCAGGCACAAGCCAAGATTTCAATCGGCTATGAATATTCATCTTGCGCCTCGATAGTGTGGGAAACACAAACGGCTACTCTTGCTGGATTTGGTGTTGATATTTCGGATATTGGAGGATGGGGTCTAGACATACATCACCATTATAACTTCCACGAGGGTATACTACAAAAGGGAGACGGTGCCTTACTCCACTTAAAGCAATACCCTAGAACTGTACAGGTGGTAATGGGCACTGGACTGCAACGTGCTTTAGATTGTCCAGATCACTGTAACGGTAAAGCGGCTGATTCGCGTTTACTGACTCCAACGGCTCTAACGTCTGGACCTGATGGTTCCTTGTACGTTGGTGATTTTAACCTTGTACGACGCATCACCCCTGAAGGTGTTGTTATAACTGTTCTTAAGTTAGAAACCACCCAAATGGCTTACCAATACTATATCTGTATATCACCAGCTGATGGTTACCTATACATATCAGACTCAGAAAGACACCAAGTCCGAAGGGTTCTTGCATTAGAAAAAGTTCGAGATCCATCCGTTAATTCCGAACCAGTTGTTGGCAATGGTGATAGATGTGTACCAGGCGATGATTCTAATTGTGGTGATGAAGGACCTGCTATAAAGGCAAAGCTGGCGCATCCTAAAGGGCTAGCGATAGCGGCTGATAGAACAATGTACATCGCGGATGGAACCAACATAAGAGCTGTAGATCCAAATGGCATCATTCACACACTAGTCGGCCACCACGGTCATCACAACCATTGGTCTCCTGTTCCATGTCGAGGAGCTATACCACCCTATGAAGCACAATTACAATGGCCAACTGGTGTGGCCTTATCTCCACTGGACGGATCTTTATACTTTATTGATGATAGAATAATATTGAAATTGACCGTTGATATGAAAATCAAAGTAATAGCTGGTCAACCATCTCATTGTCGTTTAACAAGTGATGGCAAACCAATAACTAAAGCAACGAATAAAACGAACACTGAATTTAAGGAAGACTCCAATCTCGGTACAATTTTAGCTATTGCTTTTGCACCTAGTGGAATTTTATATGTTGCGGAATCTGACTCCAAGAAAACAAATACTATAAAAACGATTGATCCGTCCGGTAAAATAATGCACTTTGCGGGAAAATTACCGGAAAATCTGAAGGAATTAAGTTGTGAGTGCAATATGACGATGTCAGCTACCGCTGTTCCATTGAACAATAGAGACGAAGGGGCTGGTTGCCCTTGTCGTTTAAGTGTTGCTGCTGGAGACGAACCCCCGACGAGCACTGAAACACTACTATCTTCTAATGCAAAATTCCAAACAATATCGGCTTTAGCTGTTACCCCTGATGGAGTTCTTAACGTCGTTGATCAAGGCTCTCTTCATATTCTAGCACTAAGACATTATCTACCTTCTCATGACGAGAATGGTGAATTTCGAATTCCCTATCCACCGACTTCTGAAATTTATGTGTTTAATCGTTATGGACAACACATTACAACTAAAGACCTAACATCGAGTAAAACAAGATACTCATTTTTATATTCGAAAAACACTAGTTTCGGTAAACTATCAACGGTAACAGATGCTTCAGGAAATAAAATACAATTACTCCGCGATTATAGCAACGTTGTTAGTTCTATAGAGAACACACAAGACCACAAACTTGAACTAAAGATATCTGGAATCGGGTATCTCACCAAAATAGCCGAAAAGGGCACTTCAGATATGGAATTTGATTATGATACTAGTACGGGACTACTCAACAGCAGATCGGGGGCTGGAGAAACTGTTATTTATAACTACGACGAACTTGGAAGAGTAACTAAAATAATAATGCCTTCTGGTGAACAAGTTCTTATAACTTCGGGACTAGCAAAGAATTATGGATTAGCGGTTACTGTATCTAATCCCGCTAGCTCAATACCTATTGGCGTTGCTAAGAAATGCGAATATATCTTACATGGTCAATCCTTTAAACAAATCACAATCAATAACGGCAAACAAATAACCGAAGGGCGCATTTTCACGAACAATACTTTAGTCCTTGATACGCCGTGGTCTGGTAAACTTGAGAGTATCGCAGCAGCCAAACATCCTTTATTGGAAGCTGCTTTGCCTATCGAAGCAGAAATGCTTCATATGTGGTCACATCAAACCACTACCTTCGGTGATGGACTAACTAATAACATGTATTCTCTCTATACATTAGTTGGCGATGTACGTAATCCACAACAGACATTGAATCGAGAGATTTGGGTAAATGACTCTCGAGTTTTAATAATCGAATTTGATCAATTCAAGAGCAAAGAAACATTTTTCAATACAGACAGAAACCTGCTTTTTACTATCTCGTACGATGTCGCCGGATTGCCATTATCATTTAATCCCCATGGCGCTGGTATGCCTCTAAATATTTCATATGATCGATTTTATAGAATCAACGGATGGAAGTGGGGTGAAAGTGAAGAAACTTATAGCTATGATCCTCATGGAATGCTCTCAGAAATATCGAGCCCGCAAGATGGTACCAAATTTATTTATTATAACGAAGGCAATCTTGTCTCCAAAATAACTCTGGCCAGTCAACGCAGTTTTAAGTACACATACGATAAGGAGGGCGGACTCACTCACGTGATCTTACCTTCTGGAAGCAACCACACATTTAGCGTACAACCCTCTATAGGATTTCTGAGAGTAACATATACACCTTCTGGTTCATCAAAGAAATATTTGCAGCATTATTCACACACAGGCGAACTCCTACAAACTGTTTTCCCGGGTGACGGAGCCAGAGTTGTATATCGTTATTTCACTACAAACAAAGTTTCTGAAGTTATTCACGGTGACGGACAAACTCAAATACATTATTCGGAAAACAGTGGTCTTCCATCAGAAATTTTACATGTTGATCGTGACGTAGATTATCGTTGGGAATTTACTTACATAGGAGGACTACTGACAGAAGAAAGATTAGATTATGGAGCGAAAACCGGTCTCAGCAATGCAAAAATAATTTATGAGTATGACAGTAACTATAGAATAACTTCTGTGCAAGGACGCATTGGCGGTCAAACATTAATACCGTATCATATTGTATACAACAGCAAAACCGGTGCTCCAGAAATATTAGGTCAATTTACTGTTTCTAAACAAAGATGGAACGAGACGTCAGTGTATGACGGGATAGCGATGTTCTCACGAGTTTTAAATGACCAATTCTTAGAAAAGGAAGTATCTGTTAATATTCATAGAATGGAAGTGTTCAGAATGGAATTTTCATATGATAGACATGGACGAATTTCTCAAACGCGTACTCACACTAGAAACGTAGGAGTTAATACATACACCAACGTTAAGAACTATACATGGGACTGTGATGGTCAACTAACTGGAGTTGAAGCCCAGGAACCTTGGGGATTCAGATACGATGATAATGGAAATATGTTATCTTTGACGTACAGAGGAAACACTATCCCTATGGAATACAACGACATGGACCGTATTATCAAATTCGGCGAGGGACAATACAGATATGACAGTCGTGGCCTCGTATCTCAAAACGCCAGGGAGGAACGCTTCCAATACAATTCAAAGGGTTTGTTGATTAGGGCAACGAAGCGAGGAAGATTTGATGTTCGATATTACTATGATCATTTGGATAGACTTTCAACAAGAAAAGACAACTTCGGTAATGTTACACAATTCTTCTACACGAACAAAGAAAAACCTCACGAAGTCAGCCATATTTACTCTCCGAGAGAAAATCGTTTTATGACATTGGTTTACGATGACAGAGGACATTTAATCTATACACAGGTTGCGCGTCATAAATATTACATTGCAACTGACCAATGTGGAACACCAGTAATGGTATTCAATCAGTACGGCGAAGGAATAAGAGAAATAATGAGATCACCATACGGGCACATAGTTTACGATTCTAATCCTTATCTATATTTACCCGTTGACTTTTGTGGAGGGTTGTTAGATCAAGTAACTTCATTAGTACACATGGCCAACGGAAAAGTATACGATCCGCTTATTGGGCAGTGGATGTCTCCGCTGTGGGAAAATTTAATAGAAAGGATTCATAACCCAACTGAACTACATTTGTACAGATTTAATGGAAATGACCCAATCAACGTTAGGCCACAATTTAAGAAGCCAACAGATCACTTGGCATGGTTAAAACTACTGGGCTATGAGACTAAAAGCTTGGCTCCTCAATTGTATCCTGATGAACTTCCCGGTGGATCGGTACTACCCAGCATCCCTCAAGGACGACCTGTCTGGGGTACTGCGCCTACTGCAAGCAGTCCTGGTCTTCCATTTGGAATGTCGTTGCTTCCTAGTGTGACAATTGAATCTGGATTCCTATCTCACATGTCAAATAAAAGAATAGCAGACTTCAGAAGTTTATCGATTCCAGCTATGTCTGCCTTGAAAACAGATGCGCTCGATCTGGCTCCAAAACGCATCGGCTCCGATTCTGAACCACCCTTCGGAAGAGGCATTCTGGTGTCTCGAAACTCCCGAGGAAGGGCTGTCGTCACCGCCGTTCCATCCGCCAACGCCATCTATCGCGATGTTTATACATCTGTTTTCAATCGATCACATCTTTTACCGTTCTCTTTTGTCGTTCATGGCGACCAACAGGACGTATTTTACTTTGTAAAGGAAGAAACGTGGCGTGCCGCTGACGACAAACAACAACTGAAACGTATGCAGGGCAAGTTAAATGTTACATTCCACGAGGTATCTGAAGGAGGACGCTCATATGCAGACGTTAAGATTCACGGACAAACCAGTATTGTAAATCTTCGTTATGGAACGAGCGCCGAGAGGGAGAGACAGCGGTTGCTGCATCACGCTCGGGCGGCCGCGGTGCGCAAGGCGTGGCATCGTGAGCGTGAAGCCCTACGAAGCGGAATGGGCGGCTCCTTTGAATGGTCTGCTGCCGAACTGGATGAGATCCAGAAATCTGGTTCAGTATCTGGCTACGAGGGAGAATACGTCCACGACGTTGCAAGATATCCAGAATTAGCCGAGGACCCCTACAATATTAGATTCGTCAAGAAACGATCAGACCGAGCCGAACGCCGTCGACGGAAGCGCGAGGATTGTCGAGCGCCCTGGTGGCTCGCCTGGGACGATCTCTGCTAG
Protein
MSQNITFFLLGGAAMSSGMGGGTLGSGHCQLANQPLVMPVFPLRASQPSPVPVYSPSRFHIDKRCQHRCTWKCLAIAMICLCVILAAMLAYFIALSSIKSNIDNSNCILVQDVKAVTHAQGIRDSLSTSSPSDESLSTSSLGGWSTTAESALESAIIPQQAQQAAPPPWSPALEVREFDELHSATIPAYQFWSSEFRNKQPAYVSLNFTVPWGANFAVYGRRNVAPSVTQYDFVEFIRGGRVDHRFRRRRSPYVPEPQEQKLNDWEALLSTINPYHKWNHTINKRSTDMRVNVSILQYLDTGRWFISLYNDELQPHHVEMIVSEAEGVTNSCPDDCSNHGSCYLGKCECRDGYEGHDCSKSVCPVLCSGHGTYAGGICHCSEGWKGSECDIPAHDCEPADCSGRGQCIAGLCHCKAGWKGPKCDEEDCLDPTCGGHGSCVRGRCVCRAGWRGAACTERDARVQRCLPACSQRGIYDLDAGRCVCDPLYTGDDCSQVVCSLDCGPHGVCAEGVCRCDEGWTGAICDQRPCDSRCHEHGQCKNGTCVCTQGWNGRHCTLPGCPNGCSRHGQCLLEDGVYRCSCAEGWAGSDCSIALELSCNDNEDNDEDGMTDCSDSECCSRPECAEHIMCLASNDPVEVLLRKQPPSVTASFYQRVKFLIEENSVQSYAHMDEYSESRVSVMRGQVVSPQGLGIIGIRVSVDREARFGFTLTRQGGWFDVLVNGGGAVTLQFQRSPFKPLRKTVFVPWNQIVVLPPVQMELSDDNVKVPTPRAPPRIDWSPSPQWWEVESPPCAAHDHERLRPEVVAVPPLAAPAASSATTTTVIYPEAQIVSESIGIPGSSVKLTYRSSQAAGYLSCVHIQLTRRIVPAALSRVHVRVEIEGSLHTQTYEADPDLTHVFAWSKRNVYKQKVYGQAQAKISIGYEYSSCASIVWETQTATLAGFGVDISDIGGWGLDIHHHYNFHEGILQKGDGALLHLKQYPRTVQVVMGTGLQRALDCPDHCNGKAADSRLLTPTALTSGPDGSLYVGDFNLVRRITPEGVVITVLKLETTQMAYQYYICISPADGYLYISDSERHQVRRVLALEKVRDPSVNSEPVVGNGDRCVPGDDSNCGDEGPAIKAKLAHPKGLAIAADRTMYIADGTNIRAVDPNGIIHTLVGHHGHHNHWSPVPCRGAIPPYEAQLQWPTGVALSPLDGSLYFIDDRIILKLTVDMKIKVIAGQPSHCRLTSDGKPITKATNKTNTEFKEDSNLGTILAIAFAPSGILYVAESDSKKTNTIKTIDPSGKIMHFAGKLPENLKELSCECNMTMSATAVPLNNRDEGAGCPCRLSVAAGDEPPTSTETLLSSNAKFQTISALAVTPDGVLNVVDQGSLHILALRHYLPSHDENGEFRIPYPPTSEIYVFNRYGQHITTKDLTSSKTRYSFLYSKNTSFGKLSTVTDASGNKIQLLRDYSNVVSSIENTQDHKLELKISGIGYLTKIAEKGTSDMEFDYDTSTGLLNSRSGAGETVIYNYDELGRVTKIIMPSGEQVLITSGLAKNYGLAVTVSNPASSIPIGVAKKCEYILHGQSFKQITINNGKQITEGRIFTNNTLVLDTPWSGKLESIAAAKHPLLEAALPIEAEMLHMWSHQTTTFGDGLTNNMYSLYTLVGDVRNPQQTLNREIWVNDSRVLIIEFDQFKSKETFFNTDRNLLFTISYDVAGLPLSFNPHGAGMPLNISYDRFYRINGWKWGESEETYSYDPHGMLSEISSPQDGTKFIYYNEGNLVSKITLASQRSFKYTYDKEGGLTHVILPSGSNHTFSVQPSIGFLRVTYTPSGSSKKYLQHYSHTGELLQTVFPGDGARVVYRYFTTNKVSEVIHGDGQTQIHYSENSGLPSEILHVDRDVDYRWEFTYIGGLLTEERLDYGAKTGLSNAKIIYEYDSNYRITSVQGRIGGQTLIPYHIVYNSKTGAPEILGQFTVSKQRWNETSVYDGIAMFSRVLNDQFLEKEVSVNIHRMEVFRMEFSYDRHGRISQTRTHTRNVGVNTYTNVKNYTWDCDGQLTGVEAQEPWGFRYDDNGNMLSLTYRGNTIPMEYNDMDRIIKFGEGQYRYDSRGLVSQNAREERFQYNSKGLLIRATKRGRFDVRYYYDHLDRLSTRKDNFGNVTQFFYTNKEKPHEVSHIYSPRENRFMTLVYDDRGHLIYTQVARHKYYIATDQCGTPVMVFNQYGEGIREIMRSPYGHIVYDSNPYLYLPVDFCGGLLDQVTSLVHMANGKVYDPLIGQWMSPLWENLIERIHNPTELHLYRFNGNDPINVRPQFKKPTDHLAWLKLLGYETKSLAPQLYPDELPGGSVLPSIPQGRPVWGTAPTASSPGLPFGMSLLPSVTIESGFLSHMSNKRIADFRSLSIPAMSALKTDALDLAPKRIGSDSEPPFGRGILVSRNSRGRAVVTAVPSANAIYRDVYTSVFNRSHLLPFSFVVHGDQQDVFYFVKEETWRAADDKQQLKRMQGKLNVTFHEVSEGGRSYADVKIHGQTSIVNLRYGTSAERERQRLLHHARAAAVRKAWHREREALRSGMGGSFEWSAAELDEIQKSGSVSGYEGEYVHDVARYPELAEDPYNIRFVKKRSDRAERRRRKREDCRAPWWLAWDDLC

Summary

Similarity
Belongs to the mitochondrial carrier (TC 2.A.29) family.
EMBL
NWSH01002427    PCG68322.1    KZ149978    PZC75872.1    RSAL01000063    RVE49523.1    + More
KQ459299    KPJ01949.1    JTDY01000470    KOB77027.1    ODYU01006734    SOQ48845.1    BABH01000792    AGBW02007761    OWR54605.1    GEZM01051531    JAV74843.1    GEZM01051532    JAV74842.1    KQ971338    KYB27814.1    KYB27819.1    KZ288219    PBC32242.1    QOIP01000005    RLU22256.1    KQ981727    KYN36737.1    KQ977791    KYM99882.1    KQ976476    KYM83886.1    KQ434814    KZC06806.1    GL888050    EGI68754.1    KQ979592    KYN20547.1    KQ435737    KOX76912.1    LJIG01009581    KRT82794.1    GBYB01009077    GBYB01009078    JAG78844.1    JAG78845.1    KK852732    KDR17480.1    UFQS01000041    UFQT01000041    SSW98288.1    SSX18674.1    DS232135    EDS35841.1    GBBI01002722    JAC15990.1    DS235886    EEB20492.1    AAAB01008846    EAA06532.6    ATLV01014548    ATLV01014549    KE524974    KFB38921.1    EGK96445.1    APCN01001300    CVRI01000020    CRK90588.1    PYGN01000062    PSN55675.1    ADMH02001203    ETN63736.1    CRK91136.1    CRK91135.1    ABLF02016708    ABLF02016709    KK107211    EZA55330.1    GL444392    EFN60940.1    AXCN02001231    ADTU01009391    ADTU01009392    ADTU01009393    ADTU01009394    ADTU01009395    GL449694    EFN82205.1    KQ982174    KYQ59303.1    GL764458    EFZ17634.1    GEDC01029502    JAS07796.1    CH478005    EAT34453.1    AXCM01007605    JH431180    GFXV01000602    MBW12407.1    ABJB010256407    ABJB010286137    ABJB010417123    ABJB010531866    ABJB010554405    ABJB010615277    ABJB010924141    ABJB010936683    ABJB010943504    ABJB011012074    DS733854    EEC07100.1    MNPL01031414    OQR66691.1    NNAY01000121    OXU30772.1    GL436038    EFN72354.1    LBMM01003309    KMQ93678.1    KK853498    KDR07188.1    GL451921    EFN78238.1    KQ976940    KYN06967.1    KQ435033    KZC14038.1    KQ983001    KYQ48452.1    GL888262    EGI63709.1    KQ976441    KYM86420.1    JH432018    KQ979074    KYN22920.1    ABJB010071379    ABJB010107835    ABJB010213250    ABJB010291618    ABJB010381170    ABJB010396071    ABJB010888085    ABJB011055852    ABJB011093084    ABJB011128994    DS632478    EEC01325.1    KK107447    EZA50796.1    ADTU01003121    ADTU01003122    ADTU01003123    ADTU01003124    KQ414624    KOC67559.1    KQ435735    KOX77173.1    KYB27964.1    GEZM01099133    GEZM01099130    JAV53475.1    KYB27963.1    GBBI01002372    JAC16340.1    GEDC01031183    JAS06115.1    AAAB01008804    EAA03852.4    AGBW02008828    OWR52466.1   
Pfam
PF15636   Tox-GHH        + More
PF07974   EGF_2
PF05593   RHS_repeat
PF00153   Mito_carr
PF18720   EGF_Tenascin
Interpro
IPR028916   Tox-GHH_dom        + More
IPR013032   EGF-like_CS       
IPR000742   EGF-like_dom       
IPR011042   6-blade_b-propeller_TolB-like       
IPR013111   EGF_extracell       
IPR006530   YD       
IPR008979   Galactose-bd-like_sf       
IPR008969   CarboxyPept-like_regulatory       
IPR011047   Quinoprotein_ADH-like_supfam       
IPR031325   RHS_repeat       
IPR002067   Mit_carrier       
IPR023395   Mt_carrier_dom_sf       
IPR018108   Mitochondrial_sb/sol_carrier       
IPR011048   Haem_d1_sf       
IPR022385   Rhs_assc_core       
IPR041161   EGF_Tenascin       
SUPFAM
SSF49464   SSF49464        + More
SSF50998   SSF50998       
SSF103506   SSF103506       
SSF51004   SSF51004       
Gene 3D
PDB
6CMX     E-value=0,     Score=2327

Ontologies

Topology

Length:
2634
Number of predicted TMHs:
1
Exp number of AAs in TMHs:
36.7482500000003
Exp number, first 60 AAs:
14.00471
Total prob of N-in:
0.37530
POSSIBLE N-term signal
sequence
inside
1  -  72
TMhelix
73  -  95
outside
96  -  2634
 
 

Population Genetic Test Statistics

Pi
17.632611
Theta
156.941665
Tajima's D
-2.164808
CLR
0.374995
CSRT
0.00699965001749913
Interpretation
Uncertain
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