Protein
View in Explore- UniProt accession
- A0A9E7N3A4 [UniProt]
- Protein name
- receptor protein-tyrosine kinase
- RBP type
-
TF
- Protein sequence
-
MTDYTPILHLPQVAANQEQKEATINTAIAILEAAMNDALTVSLAAGDVTLNTDQFTKYFLLQFAGHTAARTVTVPGTPRWFAIENQGTASVVVKVAGTGLSAELPANRIGLVVSDGADVRFVVPDPISGMGLLRDLSDVSGMPTDGQLLRYNAATNSWSPWTLAMSFAQLTDTPSSLAGNAGSLVAVNAAGTRLEFVSSAANVNSFVDLDDTPNSYAGAANRHVVVNAGGSGLTYATPYLRENSDFPNSYAGQSGKFVQVNATNNGVQFAMPTVADLSNGPGAPVFADALTYLRVNAAGTGWEYAPGTGGPVNFTELLDTPNSFTGQAGKLARVATDEDRLIFGTLRLTELSDTPNVYTDAAGMVLRVNSTQSGMVFGRLKLADLSDGPGAMAPANALRYLRVNANGTALEYVRPSITEMAGVASMVGAGGRFVRVNGNEDGFEYVLNAVDVAFIGLTDTPANYQNAQNKFVAVNPAGTGLIFVPAPSGGGGGGATTLDQLTDVTIVDPAAGEVLTYRDGVWGSEPVPATGGGANALVELTDVAYPDGPPTEDYVLTYKSGFWTPQPSATAAIPQALDDLTDVDFSAGTPLNGDLLTFYNGVWVYAPPQAIAGEGLRFGEHRDWRLFFRTPAAVAIDITALILREGAGLPQAAVGGTPAASAEPSGFPAAAAFDDDPATYWRAPSDAADESWLRYTFAAPVEINALTLTPAALRQLPIAWDVQFSDDGGLTWITAWSETRVSGWGAAETLESIPTRAKLSFAQLSDSPGPMTAHGGKVVRVSEDGTKLEYAVFTPPISDLADLGDVNLNPAPVNGEVLTFKDGEWIAEPPAATVLPDIALDDLTDAATAGQQDGDLLGRRGGLWTPVTSPTDLGRHAYWRVVVDDTAAYPGTTTVVIAELLLRAVPGGPQQATGGTAIGTGGNQNGAFDGTTGDAWTAALPDAWIGYHFAAPVALQEIAVTASAVAGWATNYSPEVLRVQYSDDGVTWFAGWTVTGQTGWTTAQQRVFTRPGVTTSFLDHRDTPSTYVAQANKLVQVKADESGLEFVPKPSIPATLNDLTDVDLTVAPTADQLLTFKDGVWTAEDAAKVDYADLLNPPMIPTTLDDLVDVDLTEPSPEFGEVLTYVNVVDVGGVWRARRMRLSMLGDVRQPPNPTNGQVLTWIDSGVEGSGYWEARTPDGSGPGGDYPIYIYDGRQIESGVGVPDWAMPSGSLYMRHDPGDLYVSRATPRLAAKIEQTRGFVSPNPGPLTWAYDQPIQTGNWLILVYASGTSGPVSLDALWTVVNTAPGADINVTIAYRKIDDTEASPLPITATATPEDAWAVYEVSGLGDAWADFYQTAFAAGSTSGAFAPAAYTAPTSSPYTFAIGALFEKGGTTPGTLRGEFGNEPIADRVDALNMSVAGTWSLDPDADATVTATLGAGSPLWAYAAIYFDTLHRYGENLEPAWIKVALDGDALTTSLAALTDVDLTTPPVDGQGLVYRDGVWTADDLAPAELDPARQALPLEIVNPGAELGVTGWTMTAGAFTAGAVPGSDGANAFRATQNTGVCEMAQTIALDPALADFIDAGRGTVTVAFRYIYTSTEATRAQVTIEALDAAGVPIDSGASPQYLTTAAWQTGTVTHALPPLTRSVRLVANSTRTSTWNYGAFDSFAGQVMVSSTYPALADLPDVGPWTAAPQPGEVLTFRDGAWQHETPPPSEVKFGAHAYWRVIFHNTSTASWVTAKELIFRAAAGGPQLATGGTASSSTAWPGQVAANAFDGDPLTKWQNNGDNDGAWIRYAFPTPVEVNHVTLTVDSSRTATSLGVQYSDDGVTWITAWKDVRASWANGATLELAPTQSKQAFARLGDGPGPLGGQGGKLVAVDAAGVALTYVPSVTKLNDLSDVSVEPTADQVMTYRNGAWLSDVAPVSAHLSFGAHTRWRIYFRTTVSDYITVRDVVMSHVFGGPQLAVGGTPTASSTRSATYSADKAFDADTATYWQSVLSASTGTWLRYDFASPVEIGHVSLTTAGTRTGAIAWDVQYSDDGTNWTTAYSRGTATGWTAPTLYPTGSRDRIAFTRLIDAPASYAGQGGKVVAVRADGQGLEFLPFADGTLKIPTHRGEYGVTTGYVTYDFEGFPPDVFANAYAAGWAIVDQDDAPYTKVLKSPIIGANSATEFTFTVVADATTPNLTLRYRVQSEPSVDLFRVYVDDVQVLSDSGAENPFKTFTTPLATGTRTIRLRYAKDGTSDRGSDDVRLSYIRCNGVYSAEPYVAGDTVTHDGVFYICLVNGATDAPGTSGQWQRLPDRLGQLDGVDLSTAPAADQVLTFKDGVWSARNLPASSGGVPALSELTDVTFDTPPAEDNVLTFKDGAWRPGAGVRGLFLENAEIGSGEGPPVDLKPAGSFYIDELTQQVYQSDFHPPTLAPAPTIVQQVLAMVSTGASGPAPVTAVLPATPQAGNWLVALLCEQTVPTAGSGWTLVPDAPVSSADRVIPAMAYRQATGADTATLTPFVTGSTPSITSAGAVAIFEIAGLSSWEDAVAGIVWEDQTTYLASASGVDRAPLTAPENHDSLALALYAVRPSSATLTVTAPWTVLAQDSGTVSTSNRRAVLASAVVSASASIAPKAAFTGMTEAGFVSVILKGPAEPQGGWSRYTGNLSLTDLVNVADTAATQGTVLTYRDGQWTPETPETGVAGTGEPEVVAPLGTIYQRRDDIGEAWVATLVPNTLPATQTYQATGARQTFTVVGPYTSLTFHMWGAGGGGGSYSGSQGGTSGAGGFTVATIPVADGDVIELDVPTGGGAGIRTPGSVGAGFGGWPDGGEGRMGDVMPGGGGGSARVWKNGVLMAVAGGGGGGSGYVTAGGAGGGVAGQNASSSGGTGGTQTAGGYAAATPAASDKFGGYLMGGVGGAGADRFVTTADDGAGGGGGYYGGGGGGGDGRAGGGGSGYLNAAAGVVGTLVAGDRLVPGGTDDPHYQTGIGIGVPPTNTPASGVPGAPGQIVMVSTPPVQGWRRLSTTDDLAPAFEQDLLKISVQAEADGDYVLALSDRRGFRSFSSTFNRTVTVPPHSAVAFPLGASVSVRRSGAGTLTVLAGAGVTLEYPADMLPRLRRPHSVASLVQTATDVWSLFGDLEPV
- Physico‐chemical
properties -
protein length: 3115 AA molecular weight: 323482,12120 Da isoelectric point: 4,40470 aromaticity: 0,08828 hydropathy: -0,04671
Domains
Domains [InterPro]
DC_0755
ATT
1–440
ATT
1–440
DC_0349
ATT
527–691
ATT
527–691
G3DSA:2.60.120.260
STR
652–775
STR
652–775
IPR008979
STR
654–744
STR
654–744
IPR000421
RBD
660–737
RBD
660–737
DC_0349
ATT
683–943
ATT
683–943
1
3115
Architecture
ATT 1-440 | ATT 447-1520 | STR 1521-1572 | ATT 1573-2566 | STR 2631-3061 |
Legend:
ATT
STR
RBD
CBM
LEC
ENZ
CHP
LNK
TAS
TTP
UNK
Unmapped
Taxonomy
| Name | Taxonomy ID | Lineage | |
|---|---|---|---|
| Phage |
Brevundimonas phage vB_BpoS-Marchewka [NCBI] |
2948604 | Uroviricota > Caudoviricetes > Jeanschmidtviridae > Marchewkavirus marchewka > |
| Host |
Brevundimonas pondensis [NCBI] |
2774189 | cellular organisms > Bacteria > Pseudomonadati > Pseudomonadota > Alphaproteobacteria > Caulobacterales |
Coding sequence (CDS)
Coding sequence (CDS)
Genbank protein accession
UTC29064.1
[NCBI]
Genbank nucleotide accession
ON529851
[NCBI]
CDS location
range 311502 -> 320849
strand -
strand -
CDS
ATGACCGACTACACCCCGATTCTCCACCTGCCCCAGGTTGCCGCCAACCAGGAGCAGAAGGAGGCGACGATCAATACCGCGATCGCCATTCTCGAAGCGGCGATGAACGACGCGTTGACGGTGTCGCTGGCAGCGGGTGACGTCACCCTCAACACCGATCAGTTCACCAAGTATTTCCTGCTTCAGTTCGCGGGGCATACGGCGGCGCGGACCGTGACGGTTCCGGGGACGCCGCGCTGGTTCGCCATCGAGAACCAGGGCACGGCCTCGGTCGTGGTCAAGGTCGCCGGAACCGGCTTGTCGGCGGAACTTCCCGCCAATCGGATCGGCCTGGTGGTGTCGGACGGCGCCGACGTGCGCTTCGTCGTTCCTGACCCCATTTCGGGCATGGGACTGCTGCGCGACCTGTCCGACGTGTCGGGAATGCCGACCGACGGGCAACTGCTCCGCTACAACGCCGCGACCAATTCCTGGAGTCCGTGGACGCTGGCGATGTCGTTCGCCCAACTGACGGACACGCCCTCCTCCCTGGCGGGGAACGCCGGCAGCCTGGTGGCGGTCAACGCCGCCGGCACCCGGCTGGAGTTCGTCTCCTCGGCCGCCAACGTCAACTCGTTTGTCGATCTGGACGACACGCCCAACAGCTACGCGGGCGCCGCAAACCGCCACGTCGTCGTCAACGCCGGCGGCTCTGGCCTGACCTACGCCACCCCCTACCTGCGCGAGAACTCGGATTTCCCGAACTCCTATGCCGGGCAGTCGGGCAAGTTCGTCCAGGTAAACGCCACCAACAACGGCGTTCAATTCGCCATGCCGACGGTCGCCGACCTGTCGAATGGTCCGGGCGCCCCGGTGTTCGCTGACGCCCTCACCTACCTGCGCGTCAACGCGGCGGGCACCGGCTGGGAATATGCGCCGGGAACGGGCGGTCCGGTCAACTTCACCGAACTCCTGGACACGCCGAACAGCTTCACGGGGCAGGCCGGCAAGCTGGCGCGGGTCGCCACGGATGAAGATCGCCTGATCTTCGGGACCCTGCGCCTCACCGAACTGTCCGATACGCCGAACGTCTATACGGACGCCGCCGGCATGGTGCTGCGGGTCAACTCGACCCAGAGCGGCATGGTCTTCGGCCGCCTGAAGCTGGCTGATCTGTCCGACGGCCCCGGCGCGATGGCCCCGGCGAACGCGCTGCGCTATCTGCGGGTCAACGCCAACGGCACGGCGCTGGAATATGTGCGCCCCTCGATCACTGAAATGGCCGGCGTCGCCTCCATGGTCGGCGCCGGCGGACGCTTCGTCCGCGTCAACGGTAATGAGGACGGATTCGAATACGTCCTCAACGCGGTGGACGTCGCCTTCATCGGTCTGACCGACACGCCCGCGAACTACCAGAACGCCCAGAACAAGTTCGTCGCCGTCAACCCGGCGGGCACGGGCCTGATCTTCGTGCCGGCCCCCTCGGGCGGCGGCGGCGGCGGTGCGACCACCCTCGACCAATTGACGGACGTCACGATCGTCGATCCGGCGGCGGGCGAGGTGCTGACCTACCGCGACGGCGTTTGGGGCTCCGAGCCCGTGCCCGCAACCGGCGGCGGCGCCAACGCGCTGGTCGAGTTGACGGACGTCGCCTATCCCGACGGCCCGCCGACCGAAGACTACGTCCTGACCTACAAAAGCGGCTTCTGGACTCCGCAACCCTCGGCGACGGCGGCCATCCCCCAGGCGCTCGACGACCTGACGGATGTCGACTTCTCGGCGGGCACGCCCTTGAACGGCGACCTGCTGACCTTCTACAACGGCGTCTGGGTCTACGCTCCGCCCCAGGCGATCGCCGGGGAAGGCCTGCGCTTCGGCGAACACCGCGACTGGCGTTTGTTCTTCCGCACGCCCGCCGCCGTCGCCATCGACATCACCGCGCTGATCTTGCGTGAGGGGGCGGGCCTGCCTCAGGCGGCCGTCGGCGGGACGCCCGCCGCCAGCGCGGAGCCTTCGGGCTTCCCCGCCGCCGCCGCCTTCGACGACGACCCCGCCACCTATTGGCGCGCGCCGTCCGACGCGGCCGATGAGTCCTGGCTGCGCTACACCTTCGCCGCCCCTGTCGAAATCAACGCCCTGACCTTGACGCCGGCGGCGCTGCGCCAGTTGCCGATTGCCTGGGACGTACAGTTTTCGGACGACGGCGGCCTGACCTGGATCACCGCCTGGAGCGAGACGCGGGTTTCGGGCTGGGGCGCCGCCGAGACGCTCGAATCGATTCCCACGCGCGCCAAGCTGTCGTTCGCCCAGCTTTCGGATTCTCCGGGGCCGATGACGGCCCATGGCGGCAAGGTCGTCCGGGTCAGCGAGGATGGCACCAAGCTGGAGTATGCGGTGTTCACGCCGCCGATCTCCGACCTGGCCGACCTGGGCGACGTCAACCTGAATCCGGCGCCGGTCAACGGCGAGGTGCTGACCTTCAAGGACGGCGAATGGATCGCGGAGCCGCCGGCGGCGACCGTCCTGCCTGACATCGCGTTGGATGATCTCACGGACGCCGCCACCGCCGGTCAGCAGGATGGTGATCTCCTGGGCCGTCGCGGCGGGCTCTGGACCCCGGTCACGAGCCCGACCGATCTCGGTCGCCACGCCTACTGGCGCGTCGTCGTGGACGACACCGCCGCCTATCCCGGAACGACCACCGTCGTCATCGCGGAACTGCTGCTGCGCGCCGTCCCCGGCGGGCCGCAACAGGCGACCGGCGGAACGGCGATCGGTACGGGCGGGAACCAGAACGGCGCCTTTGACGGCACGACCGGGGACGCCTGGACGGCCGCGCTTCCGGACGCCTGGATCGGCTATCATTTCGCCGCCCCGGTGGCGTTGCAGGAAATCGCCGTCACCGCGTCGGCGGTGGCGGGGTGGGCGACCAACTATTCGCCTGAAGTGCTGCGTGTGCAGTATTCCGACGACGGCGTGACCTGGTTCGCCGGTTGGACCGTGACGGGCCAGACCGGATGGACGACCGCGCAGCAGCGCGTCTTCACGCGACCGGGCGTGACCACCAGCTTCCTTGACCATCGCGACACGCCTTCGACCTACGTCGCCCAGGCGAACAAGCTGGTCCAGGTCAAGGCCGACGAGAGTGGACTGGAGTTCGTCCCCAAACCGTCGATCCCGGCGACGCTGAACGACTTGACGGACGTCGATCTCACGGTCGCGCCGACGGCCGATCAACTGCTGACGTTCAAAGACGGCGTGTGGACGGCCGAGGACGCGGCCAAGGTCGACTACGCTGACCTGCTGAACCCGCCGATGATTCCGACCACGCTGGACGATCTCGTCGACGTTGACCTGACGGAACCCTCGCCTGAATTCGGCGAGGTTCTGACCTACGTCAACGTCGTTGACGTCGGCGGCGTCTGGCGCGCCCGCCGCATGCGCCTGAGCATGTTGGGCGATGTGCGCCAGCCGCCCAACCCGACCAATGGTCAGGTCCTGACCTGGATCGACTCCGGGGTCGAGGGCAGCGGCTACTGGGAAGCCCGGACGCCGGACGGTTCCGGACCCGGCGGCGACTATCCGATCTATATCTACGATGGGCGCCAGATTGAATCCGGTGTCGGCGTGCCCGACTGGGCCATGCCGTCCGGGTCGCTCTACATGCGCCACGATCCCGGCGACCTCTATGTGTCGCGCGCGACGCCGCGCCTGGCGGCCAAGATCGAGCAGACCCGTGGCTTCGTGTCGCCGAATCCGGGGCCGCTGACCTGGGCTTACGACCAGCCGATTCAGACCGGCAACTGGTTGATCCTGGTGTACGCGTCGGGGACCTCCGGACCGGTGTCGCTTGACGCCCTGTGGACCGTGGTGAACACCGCGCCCGGCGCCGACATCAACGTCACCATCGCCTATCGGAAGATCGACGATACCGAGGCCAGCCCCCTGCCGATCACGGCGACGGCGACCCCGGAAGACGCCTGGGCTGTCTATGAGGTGTCAGGCCTGGGCGACGCCTGGGCTGACTTCTACCAGACCGCCTTTGCGGCGGGTTCGACGTCGGGCGCCTTCGCCCCGGCCGCCTACACGGCCCCGACCTCCAGTCCCTACACGTTCGCGATCGGCGCCCTGTTCGAGAAGGGCGGAACCACGCCTGGAACCCTGCGGGGTGAATTCGGCAACGAGCCGATTGCGGACCGCGTCGACGCCCTCAACATGTCCGTCGCGGGGACGTGGTCGCTCGACCCGGACGCCGACGCCACCGTGACGGCCACCCTGGGCGCCGGTTCGCCGCTCTGGGCCTATGCGGCGATCTACTTTGACACCCTGCACCGCTACGGGGAGAACCTGGAGCCGGCCTGGATCAAGGTCGCCCTGGACGGCGACGCCCTGACCACCAGCCTGGCGGCGCTGACCGACGTCGATCTGACGACCCCGCCGGTTGACGGCCAGGGCCTCGTCTATCGCGACGGAGTCTGGACGGCGGATGATCTCGCCCCCGCCGAACTCGATCCTGCGCGTCAGGCCCTGCCGCTGGAGATCGTCAATCCCGGAGCCGAGTTGGGTGTGACCGGCTGGACGATGACGGCCGGCGCCTTTACGGCCGGTGCTGTGCCGGGCTCGGACGGCGCCAATGCTTTCCGCGCGACGCAGAATACCGGCGTGTGTGAAATGGCGCAGACGATTGCGCTTGATCCCGCGCTCGCGGACTTCATCGACGCCGGGCGCGGCACGGTGACTGTGGCGTTCCGCTACATCTATACCAGCACGGAGGCGACTCGGGCTCAGGTCACGATCGAGGCTCTTGACGCCGCCGGCGTGCCGATCGACAGCGGCGCCTCGCCTCAGTACCTCACCACGGCCGCGTGGCAGACGGGGACGGTAACGCACGCCTTGCCGCCACTGACGCGATCGGTGCGCCTCGTCGCCAACTCGACGCGCACCAGCACCTGGAACTACGGCGCTTTCGACTCTTTCGCTGGTCAGGTGATGGTCTCCTCGACCTATCCGGCCTTGGCGGACCTGCCTGATGTCGGCCCCTGGACGGCCGCGCCGCAGCCGGGTGAGGTCCTGACCTTCCGCGACGGCGCCTGGCAGCATGAAACCCCGCCCCCGTCCGAAGTGAAATTCGGCGCCCACGCCTACTGGCGCGTGATCTTCCACAACACCTCCACCGCCAGTTGGGTCACGGCCAAGGAACTGATCTTCCGCGCGGCGGCCGGAGGCCCGCAACTGGCGACGGGCGGGACGGCATCGTCGTCCACGGCCTGGCCTGGGCAGGTCGCGGCCAACGCGTTTGACGGCGATCCGCTCACGAAGTGGCAGAACAACGGCGACAACGACGGCGCCTGGATTCGCTATGCCTTCCCGACGCCGGTGGAGGTGAACCACGTCACCTTGACCGTGGACAGCAGCCGCACGGCGACGTCGCTCGGCGTCCAGTATTCCGATGACGGCGTCACCTGGATCACGGCCTGGAAGGACGTCCGCGCCTCCTGGGCCAATGGAGCGACGCTGGAACTGGCTCCGACCCAGTCGAAGCAGGCCTTCGCGCGGCTGGGTGATGGACCCGGCCCTCTGGGCGGGCAGGGCGGCAAGCTGGTCGCCGTGGACGCCGCAGGCGTGGCGCTGACCTATGTGCCGTCGGTCACGAAGCTGAACGACCTGTCGGACGTGTCCGTCGAGCCTACGGCGGACCAGGTCATGACCTACCGCAACGGCGCCTGGCTGTCAGACGTGGCGCCGGTATCAGCGCACCTGTCGTTTGGCGCTCACACGCGCTGGCGTATCTACTTCCGCACGACGGTGTCCGATTACATCACCGTGCGCGACGTCGTGATGTCCCATGTCTTCGGCGGCCCGCAACTGGCGGTCGGCGGAACGCCTACGGCGTCCTCGACCCGCAGCGCGACCTACAGCGCCGACAAGGCGTTCGACGCGGACACCGCGACCTATTGGCAGTCGGTGCTCAGCGCCTCGACGGGGACGTGGCTGCGGTACGATTTCGCCTCTCCGGTCGAGATCGGGCACGTCTCGCTGACGACGGCCGGAACCCGCACCGGCGCGATCGCCTGGGATGTCCAGTATTCCGATGACGGCACCAACTGGACCACCGCCTATTCGCGCGGCACGGCGACCGGATGGACCGCGCCGACCCTTTACCCCACGGGGTCGCGGGACCGGATCGCCTTCACGCGCTTGATCGACGCCCCCGCCAGCTATGCCGGCCAGGGCGGCAAGGTCGTCGCGGTCCGTGCGGACGGGCAAGGGCTGGAGTTCCTGCCCTTCGCGGACGGCACGCTGAAGATTCCGACGCATCGTGGCGAGTATGGGGTCACGACGGGATACGTCACCTACGATTTCGAGGGATTCCCTCCCGACGTCTTCGCTAACGCCTACGCCGCCGGCTGGGCCATTGTCGATCAAGACGACGCACCCTACACCAAGGTGCTGAAGTCTCCGATCATCGGGGCCAACTCGGCGACGGAGTTCACCTTCACCGTCGTGGCTGATGCCACGACGCCCAACCTCACGTTGCGGTATCGGGTGCAGAGTGAACCGTCTGTCGATCTTTTCCGGGTGTACGTCGACGACGTGCAGGTCCTGTCCGACAGCGGCGCCGAGAATCCTTTCAAGACCTTCACGACGCCCTTGGCTACGGGGACCCGCACCATCCGCCTGCGGTACGCTAAAGACGGTACGTCTGATCGTGGTTCCGACGACGTGCGGCTCAGCTACATCCGCTGCAACGGCGTCTACTCAGCCGAGCCCTATGTGGCCGGCGACACCGTCACCCATGACGGCGTCTTCTACATCTGCCTGGTGAACGGCGCGACGGATGCGCCGGGCACGAGCGGACAGTGGCAGCGCCTGCCCGATCGTCTCGGGCAGCTTGACGGCGTCGACCTGAGCACCGCCCCGGCGGCGGATCAGGTCCTGACCTTCAAGGATGGCGTCTGGAGCGCCCGCAATCTGCCGGCGTCGTCGGGCGGCGTTCCCGCCCTGTCGGAACTGACCGACGTCACGTTTGACACGCCGCCTGCGGAAGACAACGTCCTCACGTTCAAAGACGGCGCCTGGCGTCCCGGCGCAGGCGTACGCGGGCTCTTCCTGGAGAACGCCGAAATCGGTTCAGGGGAAGGCCCTCCGGTCGACCTGAAGCCGGCGGGGTCGTTCTACATCGACGAACTGACCCAGCAGGTCTACCAGAGCGACTTCCATCCCCCGACCTTGGCACCGGCGCCGACGATCGTCCAGCAGGTTCTCGCCATGGTGTCGACGGGGGCCTCCGGTCCCGCGCCGGTCACGGCGGTCCTGCCGGCGACGCCCCAAGCGGGGAACTGGCTCGTGGCGCTGCTGTGTGAGCAGACCGTCCCGACGGCAGGTTCCGGCTGGACCCTGGTGCCGGACGCGCCGGTTTCGAGCGCGGATCGCGTGATCCCGGCCATGGCCTATCGACAGGCGACCGGAGCCGACACCGCCACCCTGACGCCTTTCGTCACGGGCTCCACGCCCAGCATCACGAGCGCCGGCGCCGTCGCGATCTTCGAGATTGCCGGCTTGTCGTCGTGGGAGGACGCCGTCGCGGGAATCGTCTGGGAAGATCAGACGACCTACCTGGCGTCGGCCTCCGGGGTCGACCGCGCACCGCTGACGGCCCCGGAGAACCATGATTCTCTGGCCCTGGCGCTCTATGCCGTGCGACCGTCCTCGGCGACCCTGACGGTCACCGCGCCCTGGACCGTCCTGGCGCAGGACTCCGGCACGGTGAGCACTTCAAACCGCCGCGCCGTCCTGGCTTCGGCCGTCGTCTCGGCTTCCGCGTCGATCGCCCCGAAGGCGGCCTTCACGGGCATGACGGAGGCGGGCTTTGTCTCCGTGATCCTGAAGGGGCCGGCGGAGCCGCAGGGCGGGTGGTCGCGCTACACCGGAAATCTGTCGCTGACGGACCTGGTCAACGTCGCCGACACGGCGGCGACTCAAGGGACGGTGCTGACCTACCGGGACGGCCAGTGGACGCCGGAAACGCCGGAAACCGGCGTGGCCGGCACGGGCGAGCCGGAAGTCGTCGCGCCGCTCGGGACCATCTATCAGCGTCGCGACGACATTGGCGAGGCCTGGGTTGCGACTCTGGTGCCCAACACCCTGCCCGCGACCCAGACCTATCAGGCCACCGGCGCCCGGCAGACCTTCACGGTCGTCGGCCCCTACACCAGCCTGACGTTCCACATGTGGGGCGCGGGCGGCGGCGGCGGCTCCTATAGCGGCTCCCAGGGGGGAACGTCAGGCGCAGGCGGGTTCACCGTGGCGACCATTCCGGTCGCGGACGGTGACGTCATCGAACTGGACGTTCCCACGGGCGGCGGCGCAGGGATTCGCACGCCGGGGTCTGTTGGCGCGGGCTTCGGCGGCTGGCCTGACGGCGGCGAAGGCCGCATGGGCGACGTCATGCCCGGCGGCGGCGGCGGTTCGGCCCGTGTATGGAAGAATGGCGTCCTGATGGCGGTCGCTGGCGGCGGCGGCGGCGGCAGCGGCTATGTCACGGCCGGCGGCGCCGGCGGCGGCGTGGCGGGTCAAAACGCCAGCAGCAGCGGCGGCACGGGCGGCACGCAGACGGCGGGTGGTTATGCCGCCGCCACACCGGCGGCGTCGGACAAGTTCGGCGGCTACCTGATGGGCGGCGTCGGCGGCGCGGGCGCTGATCGCTTCGTGACGACGGCGGACGATGGCGCGGGCGGCGGCGGCGGCTATTACGGCGGCGGCGGCGGCGGCGGCGATGGTCGCGCGGGCGGCGGCGGGTCTGGCTACCTGAACGCAGCCGCAGGCGTTGTCGGCACCCTCGTTGCGGGCGATCGGCTCGTGCCTGGCGGTACGGATGATCCCCACTATCAGACCGGGATCGGCATTGGCGTTCCGCCGACGAACACGCCCGCGTCCGGTGTGCCCGGCGCGCCGGGCCAGATCGTCATGGTCTCGACTCCGCCGGTGCAAGGGTGGCGGCGTCTGTCGACGACCGACGATCTCGCTCCGGCGTTCGAGCAGGACCTGTTGAAGATCAGCGTCCAGGCTGAAGCAGACGGGGACTATGTGCTCGCGCTTTCCGACCGGCGCGGGTTCCGGTCCTTCTCCTCGACGTTCAACCGGACCGTCACGGTGCCGCCGCATTCGGCTGTGGCCTTCCCCCTGGGGGCCTCGGTCTCGGTGCGGCGCAGCGGCGCCGGCACGCTCACGGTCCTGGCGGGGGCGGGCGTCACGCTGGAATACCCGGCGGACATGCTGCCGCGCCTGCGTCGCCCCCATTCGGTGGCGTCCCTGGTCCAGACGGCGACCGACGTCTGGTCGCTGTTCGGCGATCTGGAGCCGGTATAA
Genome Context
Genome Context
Gene Ontology
| Description | Category | Evidence (source) | |
|---|---|---|---|
| GO:0005886 | plasma membrane | Cellular Component | IEA:UniProtKB-SubCell (UniProt) |
| GO:0005524 | ATP binding | Molecular Function | IEA:UniProtKB-KW (UniProt) |
| GO:0004714 | transmembrane receptor protein tyrosine kinase activity | Molecular Function | IEA:UniProtKB-EC (UniProt) |
Tertiary structure
PDB ID
89b5be8f85534e191a2020439f2ad54341641de72189722f63e2bc557def308e
Model Confidence
Very high
pLDDT > 90
pLDDT > 90
High
90 > pLDDT > 70
90 > pLDDT > 70
Low
70 > pLDDT > 50
70 > pLDDT > 50
Very low
pLDDT < 50
pLDDT < 50