CDS

Accession Number TCMCG078C01129
gbkey CDS
Protein Id KAG0448043.1
Location complement(join(46825..46972,47041..47120,50006..50077,50156..50236,50697..50822,50906..50992,51080..51244,51390..51470,52428..52474,52542..52659,52750..52926,53075..53195,53309..53413,53510..53616,55386..55451,55604..55709,61211..61299,61421..61502,65746..65843,65967..66068,66930..67022,67122..67193,84023..84230,84472..84569,84642..84704,86921..87046,92317..92448,94143..94271))
Organism Vanilla planifolia
locus_tag HPP92_028038

Protein

Length 992aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA633886, BioSample:SAMN14973820
db_source JADCNL010000381.1
Definition hypothetical protein HPP92_028038 [Vanilla planifolia]
Locus_tag HPP92_028038

EGGNOG-MAPPER Annotation

COG_category U
Description Subunit of the adaptor protein complex 2 (AP-2). Adaptor protein complexes function in protein transport via transport vesicles in different membrane traffic pathways. Adaptor protein complexes are vesicle coat components and appear to be involved in cargo selection and vesicle formation. AP-2 is involved in clathrin-dependent endocytosis in which cargo proteins are incorporated into vesicles surrounded by clathrin (clathrin-coated vesicles, CCVs) which are destined for fusion with the early endosome
KEGG_TC -
KEGG_Module -
KEGG_Reaction -
KEGG_rclass -
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko04131        [VIEW IN KEGG]
ko04147        [VIEW IN KEGG]
KEGG_ko ko:K11824        [VIEW IN KEGG]
EC -
KEGG_Pathway ko04144        [VIEW IN KEGG]
ko04721        [VIEW IN KEGG]
ko04961        [VIEW IN KEGG]
ko05016        [VIEW IN KEGG]
map04144        [VIEW IN KEGG]
map04721        [VIEW IN KEGG]
map04961        [VIEW IN KEGG]
map05016        [VIEW IN KEGG]
GOs GO:0005575        [VIEW IN EMBL-EBI]
GO:0005623        [VIEW IN EMBL-EBI]
GO:0005886        [VIEW IN EMBL-EBI]
GO:0016020        [VIEW IN EMBL-EBI]
GO:0044464        [VIEW IN EMBL-EBI]
GO:0071944        [VIEW IN EMBL-EBI]

Sequence

CDS:  
ATGGCGTCCACGATGCGCGGCTTGTCCGTGTTCATCAGCGACATACGCAACTGCCAGAATAAAGAGCAGGAGCGCCTCCGTGTCGACAAGGAACTTGGTCACATCCGTACCCGCTTCAAGAACGAGAAGGGCTTGACTCCTTACGAGAAGAAAAAGTATGTTTGGAAAATGCTTTATATCTACATGCTAGGTTATGATGTGGATTTTGGTCACATGGAGACAGTTTCATTGATATCTGCACCCAAATATCCTGAGAAACAGGTGGGATACATTGTTACATCTTGCTTGCTCAATGAAAACCATGACTTTCTAAGAATGGTAGTAAACACTGTGCGCAATGACATAATTGGCCGCAATGAAACTTTTCAGTGTTTGGCACTTACCATGGTTGGAAATATTGGTGGAAGAGAATTTGCAGAGTCATTGGCACCTGATGTGCAAAAGCTTCTGGTCTCTAACAGCTGCAGGCCTCTTGTTCGTAAAAAGGCTGCACTATGCCTTCTTCGTTTGTTTAGGAAGAATCCTGATGTAGTTAATATTGATGGATGGTCAGATCGCATGGCCCAACTTTTAGATGAGCGTGATTTGGGTGTCTTGACATCTGCTATGAGTCTTTTTGTGGCACTAGTATCAAATAATGCTGACGCATATTGGAATTGTGTTGCAAAATGTGTGAAAATATTGGAACGTCTGGCCAGGAGCAATGATGTTCCACAAGAGTACACCTATTATGGAATTCCTTCTCCTTGGCTTCAGGTTAAGACAATGAGGGCTCTCCAATATTTTCCTACTATTGAAGATCCAAGCATTAGAAAATCCTTATTTGAAGTTCTCCAACGGATTTTGATGGGCACTGATGTGGTTAAAAATGTCAACAAGAATAATGCGTCACATGCTGTTCTCTTTGAAGCACTGGCCCTGGTTATGCATCTTGATGCTGAAAAGGAGATGATGTCTCAATGTGTGGCGTTGCTTGGGAAGTTTATCTCTGTTAGAGAACCCAATATTCGGTATCTTGGCCTTGAGAATATGAGCAGGATGCTGATGGTTTCTGATGTGCAAGATATAATTAAAAGGCATCAGGCACAAATTATTACTTCCTTGAAAGATCCTGATATAAGTATAAGAAGACGTTCTCTCGATTTGCTTTATGGCATGTGTGACATTTCTAATGCAAAGGATATTGTTGAGGAGTTATTGCAGTATCTAAGCACAGCAGAGTTCGCAATGCGTGAAGAGTTGGCACTGAAGATTGCCATTTTGGCAGAAAAGTTTGCTCCAGACCTATCTTGGTATGTTGATGTTATACTTCAACTAATTGACAAAGCAGGAGACTTTGTTAGTGATGACATATGGTATCGTGTGGTCCAATTTGTCACAAATAATGAGGATTTACAGCCATATGCAGCAGCAAAAGCAAGAGTTTACCTTGAAAAACCAGCTTTGCATGAAACAATGGTCAAGGTTGGTGCCTATCTTCTTGGTGAGTATGGCCATCTTTTAGCCAGAAGGCCTGGCTGCAGTCCAAAGGAGCTCTTTTCTATTATAAATGAAAAGCTTCCGACTGTCTCGCCACCCACTGTTGCTATTCTTCTTTCATCCTATGCCAAAATGTTAATGCACACGCATCCCCCTGATTCAGATTTACAAGACCAAATCTTGGCAATTTTCAGAAAATATGAGAGTTACATAGACGTAGAGATACAGCAAAGAGCTGTTGAATACTTTTTGCTTAGTCAGAAAGGTGCGGCTTTGATGGATGTACTGGCTGAGATGCCAAAATTCCCAGAACGCCAGTCTGCGTTGCTAAGGAAGGCTGAGGATGTTGAGGCAGACACTGCAGAGCAAAGTGCAATAAGATTGCGTAGTTTGCAGCAAACATCTAATGCCTTGGTTTTGACTGACCAAATCCCTCCTAATGGGTCCCTCCCAGTTGGCCAGCTTAACCTTGTTAAAATAACTAGCCAGAATATGGAAAACTCTGTGGAGCAAGGGGGAATTGAGGCTTATGGAGCTGTTGGCAAAGTAGATCTAGAACAAGCTCCATCACCGGACCTCCTAGGCGATCTTCTTGGTCCACTAGCTATAGAAGGTCCTTTAGCATTAGCTTCTCTTGGTGATCAGCTCAACACTGTTCAGCCTACCGTAAATATAGAAGAAAGGTTCAATGCCTTGTGTCTAAAGGACAGTGGTGTTTTATATGAGGATCCTCATATACAGATTGGTGTCAAGGCAGAATGGAGGGCTCATCATGGACGGCTAGTGCTTTTCCTGGGTAACAAGAATGTTTCACCTCTATCATCTGTAAAGGCTTTAATACTGCCACCACGCCATTTAAAGATGGAGCTTTCACTGGTACCTGAAACAATTCCTCCAAGAGCACAGGTGCAATGCCCACTTGACGTTGTTAGTCTGCAAGCGAGCAGAGATGTTCCAGTTCTTGATTTTTCTTACAAATTTGGAGATGCTGTGGTCAATGTGAAACTGCGCCTTCCAACTGTGCTCAACAAATTTCTACAGCCCACGACAGTCTCTGCAGAAGAATTCTTTCCCTATTGGAAATCAATTCCAGGACCACCTACGAAACTGCAGGAAGTTGTTAGGGGTGTGAAGGCCTTGTCTCTTCCTGAAATGGCAAATCTTTTTGCAAGCTTGCATTTGGGAATATCTCAAGGACTTGATTTAAATCCAAACAATCTGGTGGCAAGTGCAACCTTTTACTCTGAGAATTCTCGTTCTATACTTTGTTTGATTAGAGTTGAGACGGATCCTGCAGACAGAACTCAACTCCGCCTTACAGTTGCTTCAGGAGATCCTATACTAACATTTGAGTTGAAGGAACTTATCAAGGAATATTTGATCAGCATTCCCGCACCAAGCTTGGCTGCAGCAGCTCCCACAGCCGTTCCTCTGCAACCTGAATCACCAATGATTCCTGCATCCAATGACCCAGGTGCCCTGCTTGCTGCGCTTCTTTAA
Protein:  
MASTMRGLSVFISDIRNCQNKEQERLRVDKELGHIRTRFKNEKGLTPYEKKKYVWKMLYIYMLGYDVDFGHMETVSLISAPKYPEKQVGYIVTSCLLNENHDFLRMVVNTVRNDIIGRNETFQCLALTMVGNIGGREFAESLAPDVQKLLVSNSCRPLVRKKAALCLLRLFRKNPDVVNIDGWSDRMAQLLDERDLGVLTSAMSLFVALVSNNADAYWNCVAKCVKILERLARSNDVPQEYTYYGIPSPWLQVKTMRALQYFPTIEDPSIRKSLFEVLQRILMGTDVVKNVNKNNASHAVLFEALALVMHLDAEKEMMSQCVALLGKFISVREPNIRYLGLENMSRMLMVSDVQDIIKRHQAQIITSLKDPDISIRRRSLDLLYGMCDISNAKDIVEELLQYLSTAEFAMREELALKIAILAEKFAPDLSWYVDVILQLIDKAGDFVSDDIWYRVVQFVTNNEDLQPYAAAKARVYLEKPALHETMVKVGAYLLGEYGHLLARRPGCSPKELFSIINEKLPTVSPPTVAILLSSYAKMLMHTHPPDSDLQDQILAIFRKYESYIDVEIQQRAVEYFLLSQKGAALMDVLAEMPKFPERQSALLRKAEDVEADTAEQSAIRLRSLQQTSNALVLTDQIPPNGSLPVGQLNLVKITSQNMENSVEQGGIEAYGAVGKVDLEQAPSPDLLGDLLGPLAIEGPLALASLGDQLNTVQPTVNIEERFNALCLKDSGVLYEDPHIQIGVKAEWRAHHGRLVLFLGNKNVSPLSSVKALILPPRHLKMELSLVPETIPPRAQVQCPLDVVSLQASRDVPVLDFSYKFGDAVVNVKLRLPTVLNKFLQPTTVSAEEFFPYWKSIPGPPTKLQEVVRGVKALSLPEMANLFASLHLGISQGLDLNPNNLVASATFYSENSRSILCLIRVETDPADRTQLRLTVASGDPILTFELKELIKEYLISIPAPSLAAAAPTAVPLQPESPMIPASNDPGALLAALL