SGID Silkworm Genome Informatics Database
Gene
KWMTBOMO14475
Pre Gene Modal
BGIBMGA000152
Annotation
PREDICTED:_ALK_tyrosine_kinase_receptor_[Bombyx_mori]
Full name
Tyrosine-protein kinase receptor      
Location in the cell
Cytoplasmic   Reliability : 1.311 Nuclear   Reliability : 1.759
 

Sequence

CDS
ATGGTGGTGAAATCGCCACCATTTCGAGGTTTATGGGAGTTTTGTAAGTTCGAAGCTCTGCTGCACCAGAGAATGATGCAGAACGCCAGCATCAGACTGATATCAGAGTCTACCATATCTGAAGTGCAATGGATCCTACAGGAGGTTGCCGGGAACAATGCCGAGAACTGGTACCCGATGCGCTTCATGATCGGAAAGGTCCAGCAAGAGGTCAGGATCATCATAGAGATAACCCGACCGAACTACGTGAGTCTGGCGCAGCCCCTCCCGCACATCGCCATAGACAACATCAGGATGATCGACTGCGTCCCGGAGCCACCAGTCTACAATGGCGAATGCAACCCTGGACAACTCAAGTGCAAGATAATGAACAGGGAGTCGTGTATCAAGCTGCACCAAGTCTGCGATCTGGTGAAGGACTGTGACGACGGCAGCGACGAGCAGAAGAACTGCGATAAAATGCCGTATGGATCTTATTGTAACTTCGAACAGGACAGTTGCGGATTTGTCGACGTGCCTCAGCCGATCCTGAAATGGTCCCGCCATAGGGGACCGACTCCGACGGACAAAACCGGCCCCAACTACGACCACACTTGCGGCCCCCCAACCCAACCCAACCTCAACCCAACAAAGAAAGTTCCTCCCCTGACCCCCCCCTTCCATATGCACTGCGCCGGGTACTATTTCTTTGTGAACATGAACGTTACCGGCCCCAATAAAGAGAAAGCCGATTTCGCATCGACCGCCGTTATGAAGACCGTCATTTTTAACCCGCCTCCGAAGGTCCATGGGGATGTCGCGTCCAAGTATTACAACTGCTGCATGGTAAGGTTTTACTACCAGCAAAACGGACGTAACTATGGCTCTTTAAGCGTGGACGTGGTAGAGCTGACAGCCAGAGGGAACATCAGCACTTCAGTTTGGTTCTCCACTAAGGACAAAGGCGAGAACTGGTACAGAGCTTCCATCTTCCTTCCTAACGTAACTAGGAGATATTACCTCCAGTTCAAGACCCGTATGGGGATGCGGATCTATTCGGATTCCGCCATCGACGACTTCTCGATGTCGCCGGAGTGCTTCGGTCTGAACGTGGACCCGGAGGAACTGGGAGACTACAACTATTACGATCCGGTTTTCGACGAGAAGACCACGCCGCATAAAGATTTCACCGGTCGGGTCTATTACAGGTTCACGCCGTGCGGCGCGTCCGGTCGGTACGGACCCAACCAGACCATGTGCGACGCGGCCTACAACAACACGCCGGTCGATGTTAATGTCCTCCACACCCATCCGTACACCGGCGTCCAAGTCTGGGAGGTTCCCGAGGAGGGGCTATACACGATAATAGCCACAGGCGCGAGTGGGGGTCTGGGCTCGGCCTGGGCGGGCGTGTCTCATGGGGCGCAGGCCCGGGCCCTCCTCGAGCTGCACAGGAGTGAGCTGGTCTACATGTTAATCGGACAGCAGGGCATCAACGCCTGCAAAAAGACCTTATCGGCCCAGGAGAGTCAAGAATGTTCCAGAAAGCCCTCGAACGAGAGCCTCCAAGTGTTCACGAGTAAGACACACGAGGTCAGGAATACTCACGTCATAGACGGAGGAGGGGGAGGGGGCGGAGGAACTTTCGTGTTTCTGATGGACAAAGAGGGCCGCCCGTTCCCGCTGGTCGTGGCCGGAGGAGGCGGGGGTATATCCGTGGGCATCTTCCGCGACGACGGCTCCCAGCACGGGAAACCCCACACGAATTCCACTCCTGAATCTGGGTACATGTACGGCCAGCCAGACAAGACCTCAGGAGCGGGTGGCGGGTGGGTGGCCAGGTCGGGGCCCATCACGCCGGGGTCCGAGCGAGTGCGGGGCGCGGCGCTGAGGGAGGGGGCGGTGGGCGGAGGGGCGTGCGTGGGGCGCGCTGCGGGGGGCTTCGGGGGCGGAGGGGGCGGATGTCTCAAGGGAGGCGCCGGCGGGGGGTACATGGGTGGTAACACTAACGAGGGCGAACATGGCGGAGGGGGCTGGTCCTATATAGACGGCAGCCGCGCCCTCCGCGTGTACAGTGACGTCAGCGTGGCACCACGCACCGGGCCCGGCGAGGTGCTCATCATCCCGGCCATACACGACTGCGGCTGCGACTACCGGTGCGTGGCCCTCAACGAATTCAGGAGCGAGGTGCGGTGCTATTGTCCCTCCTCCTGGGTCTTCAACCCCATGGACCCCGGGAAGTGTGTCTATCCGAACACTTGGTTCACAGTGGAAGGAGAATGGAGCACATTCACGTGGACCATTGTGGCGTCTTCTATAGGGTGTGTGGTGCTGGGGGCTCTGGTGTCCCTCTCCTTGGTGCTATACAATCGCTACCAAAAGAAGAGGGAAGCGAGACAGGCACAGAAGCGGATCATGGAACAAGAGGTCCAACTGCACAGACTCAGGAACGCTCCGGGAGGAAACGACAACGCGCTGGCAATGGCTTTCAACCCTCACTACGGGAGCGAAAGCTTCCTACCTCAAGGGATCGATGTGAGAGGACTCCCGCAAGTCTCGAGGGAAAGCTTAAAGCTTGTCAAAGCATTAGGCCAGGGCGCCTTCGGCGAAGTCTACCAGGGCCTGTACCGGCACCGCTCGGCCGACGCCGCGGAGATGCCGGTCGCGGTCAAGACCCTTCCCGAGCTGTCCACCGGCCAGGCCGAGTCCGACTTCCTGATGGAGGCCGCCATCATGGCCAAGTTCAACCACGCCAACATAGTCCACCTCATCGGCGTTTGCTTCGATCGACACCCGAGGTTCATTGTGCTAGAATTGCTGGCCGGCGGCGATCTGAAGAACTTCCTTCGCGAGAGTCGCCCCAAGCCGGAGCGGGCCAGCGCCCTCACCATGAAGGACCTGCTTCTCTGCTCGGTGGACGTCTGCAAGGGATGCCGGTACTTGGAAACTAAGAGATTCATACACAGGGACATAGCGGCGAGGAACTGTCTGCTGACGTCCCGGGGCCCGGGCCGCGTGGTCAAGATAGCGGACTTCGGTATGGCTCGAGACATATACCGCGCCGACTACTACAAGAAGGGCGGGAAGGCCATGCTGCCCATCAAGTGGATGCCACCCGAAGCTTACATTGACGGAGTCTTCACCACTAAGACGGACGTCTGGTCATTCGGCGTGCTGCTATGGGAGGTATTTTCGTTAGGCGTGATGCCGTACACCGGATGCGCCAACCGGGAGGTCATGGAGCTGGTCTCTGGTGGAGGAAGACTGGAGAAACCGTACGGTTGTCCCCCGGAGATATACCGCATGATGTGCGGCTGCTGGAACCCGACACCAAGCGACAGGCCGTCCTTCGCTACGATGACGGAAATGCTGCAAAGGTTCATACAGGACCCGACCATAGTGAGCGCGCCGCTGCCCGTCGTGCGCTCGCTGTTACCGCCCTCGCACACGCACCCCATCTCTAACGGACACCAGCCATCGGCGGCGTGCGACTACCTCGTCCCGATGTCGCCGCAGGACGCCACGCAACATCCGGATAGTACAATGGATCAGCTGGGAGTTCATAGCAGACCGCAAACGGCGACACGCAACAAGGAGGAAGAAGAGGACTTACAATATCTACCTCTGCTGAGAGCATCACAAGAATATGGCAACATTCCAATAAGCGCGGAGCCCAGCGTAAGGCACGTAGACGTCGTTGTTTCCGCCGAAACAAGGAACACCAACAAGTTTCTGCCGTCTAACTCTACTGACAGGCTATTGAGTTCAGTGGAGGAAGCTCATATCGATGATGAGTCGTTGTCGGAAGTGGACGAAAAGCCCGTCGTGTGGGAGACCTCATTCACAGTGATACCACCCGTGCTGCCGAAGCCACAACGTGACGAAGGCCCCGCGGTGGAAAAACTGATAAGCATAACACCCACAACGCCAAAGCCGCCTGAAAATGCTTTAACGAAAGCAATCGACGCCACAGTCATCGACAAAACCAACCACAAGAACGCTCTCGTACCGGACAGGAAGACGGCTCCGATAGCGTCGCCGGACCCGCCGCGCATTAACGCTTGGAGCCAGGACCCTCCTAAATTAAACCCTAAACCGAAGCCCCTTTGTCTGGACGCAGCCAAGCTGGAACAAAACCTGAACGCCCTAAAGAAGAACAGCGGATCAGTGAACTTGAACACCATGAACATTCTCCCTCCGTACATCAACGTCGTCACTCCGAATAAGCTAAGCGAATCGAAGACCATACAGATAGATCCAAAGAAAGCTGTCATAGACGATAGCCTGACTACTAAGACTAAGTTGAAGCAGTCTAACTCGGCGGCCAGTCTGCTAAACGGGCCAATGACGGACGTACCATACGTCGACAGCGACAACACCTCATCATCGAGCAGTAACAACGCGAAGAACGGAAGGAACTTAATTAAAAAACAGGGTAGTGATGCTGAGGTAGCCGATTCCGAGATAAGTTGCTGA
Protein
MVVKSPPFRGLWEFCKFEALLHQRMMQNASIRLISESTISEVQWILQEVAGNNAENWYPMRFMIGKVQQEVRIIIEITRPNYVSLAQPLPHIAIDNIRMIDCVPEPPVYNGECNPGQLKCKIMNRESCIKLHQVCDLVKDCDDGSDEQKNCDKMPYGSYCNFEQDSCGFVDVPQPILKWSRHRGPTPTDKTGPNYDHTCGPPTQPNLNPTKKVPPLTPPFHMHCAGYYFFVNMNVTGPNKEKADFASTAVMKTVIFNPPPKVHGDVASKYYNCCMVRFYYQQNGRNYGSLSVDVVELTARGNISTSVWFSTKDKGENWYRASIFLPNVTRRYYLQFKTRMGMRIYSDSAIDDFSMSPECFGLNVDPEELGDYNYYDPVFDEKTTPHKDFTGRVYYRFTPCGASGRYGPNQTMCDAAYNNTPVDVNVLHTHPYTGVQVWEVPEEGLYTIIATGASGGLGSAWAGVSHGAQARALLELHRSELVYMLIGQQGINACKKTLSAQESQECSRKPSNESLQVFTSKTHEVRNTHVIDGGGGGGGGTFVFLMDKEGRPFPLVVAGGGGGISVGIFRDDGSQHGKPHTNSTPESGYMYGQPDKTSGAGGGWVARSGPITPGSERVRGAALREGAVGGGACVGRAAGGFGGGGGGCLKGGAGGGYMGGNTNEGEHGGGGWSYIDGSRALRVYSDVSVAPRTGPGEVLIIPAIHDCGCDYRCVALNEFRSEVRCYCPSSWVFNPMDPGKCVYPNTWFTVEGEWSTFTWTIVASSIGCVVLGALVSLSLVLYNRYQKKREARQAQKRIMEQEVQLHRLRNAPGGNDNALAMAFNPHYGSESFLPQGIDVRGLPQVSRESLKLVKALGQGAFGEVYQGLYRHRSADAAEMPVAVKTLPELSTGQAESDFLMEAAIMAKFNHANIVHLIGVCFDRHPRFIVLELLAGGDLKNFLRESRPKPERASALTMKDLLLCSVDVCKGCRYLETKRFIHRDIAARNCLLTSRGPGRVVKIADFGMARDIYRADYYKKGGKAMLPIKWMPPEAYIDGVFTTKTDVWSFGVLLWEVFSLGVMPYTGCANREVMELVSGGGRLEKPYGCPPEIYRMMCGCWNPTPSDRPSFATMTEMLQRFIQDPTIVSAPLPVVRSLLPPSHTHPISNGHQPSAACDYLVPMSPQDATQHPDSTMDQLGVHSRPQTATRNKEEEEDLQYLPLLRASQEYGNIPISAEPSVRHVDVVVSAETRNTNKFLPSNSTDRLLSSVEEAHIDDESLSEVDEKPVVWETSFTVIPPVLPKPQRDEGPAVEKLISITPTTPKPPENALTKAIDATVIDKTNHKNALVPDRKTAPIASPDPPRINAWSQDPPKLNPKPKPLCLDAAKLEQNLNALKKNSGSVNLNTMNILPPYINVVTPNKLSESKTIQIDPKKAVIDDSLTTKTKLKQSNSAASLLNGPMTDVPYVDSDNTSSSSSNNAKNGRNLIKKQGSDAEVADSEISC

Summary

Catalytic Activity
ATP + L-tyrosyl-[protein] = ADP + H(+) + O-phospho-L-tyrosyl-[protein]
Similarity
Belongs to the protein kinase superfamily. Tyr protein kinase family.
Belongs to the protein kinase superfamily. Tyr protein kinase family. Insulin receptor subfamily.
Feature
chain  Tyrosine-protein kinase receptor
EC Number
2.7.10.1
Pfam
PF00629   MAM        + More
PF00057   Ldl_recept_a
PF07714   Pkinase_Tyr
Interpro
IPR002172   LDrepeatLR_classA_rpt        + More
IPR036055   LDL_receptor-like_sf       
IPR013320   ConA-like_dom_sf       
IPR001245   Ser-Thr/Tyr_kinase_cat_dom       
IPR011009   Kinase-like_dom_sf       
IPR017441   Protein_kinase_ATP_BS       
IPR008266   Tyr_kinase_AS       
IPR020635   Tyr_kinase_cat_dom       
IPR023415   LDLR_class-A_CS       
IPR000719   Prot_kinase_dom       
IPR000998   MAM_dom       
IPR002011   Tyr_kinase_rcpt_2_CS       
SUPFAM
SSF56112   SSF56112        + More
SSF49899   SSF49899       
SSF57424   SSF57424       
Gene 3D
PDB
4FOC     E-value=7.9457e-105,     Score=977

Ontologies

Topology

Length:
1484
Number of predicted TMHs:
0
Exp number of AAs in TMHs:
33.6996899999999
Exp number, first 60 AAs:
0.00014
Total prob of N-in:
0.00015
outside
1  -  1484
 
 

Population Genetic Test Statistics

Pi
218.399737
Theta
178.661908
Tajima's D
1.141453
CLR
0.61874
CSRT
0.705664716764162
Interpretation
Uncertain
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