Descriptions

The autoinhibited protein was predicted that may have potential autoinhibitory elements via cis-regPred.

Autoinhibitory domains (AIDs)

Target domain

Relief mechanism

Assay

cis-regPred

Accessory elements

No accessory elements

Autoinhibited structure

Activated structure

1 structures for P38700

Entry ID Method Resolution Chain Position Source
AF-P38700-F1 Predicted AlphaFoldDB

14 variants for P38700

Variant ID(s) Position Change Description Diseaes Association Provenance
s08-69191 119 I>V No SGRP
s08-69085 154 P>R No SGRP
s08-69000 182 K>N No SGRP
s08-68983 188 G>D No SGRP
s08-68952 198 K>N No SGRP
s08-68902 215 V>A No SGRP
s08-68899 216 E>G No SGRP
s08-68851 232 A>G No SGRP
s08-68580 322 R>S No SGRP
s08-68505 347 D>E No SGRP
s08-68438 370 I>V No SGRP
s08-68281 422 T>N No SGRP
s08-68077 490 S>T No SGRP
s08-67849 566 C>Y No SGRP

No associated diseases with P38700

1 regional properties for P38700

Type Name Position InterPro Accession
domain Clathrin/coatomer adaptor, adaptin-like, N-terminal 40 - 621 IPR002553

Functions

Description
EC Number
Subcellular Localization
  • Golgi apparatus membrane ; Peripheral membrane protein
  • Early endosome membrane ; Peripheral membrane protein
  • Cytoplasmic vesicle, clathrin-coated vesicle membrane ; Peripheral membrane protein
PANTHER Family
PANTHER Subfamily
PANTHER Protein Class
PANTHER Pathway Category No pathway information available

9 GO annotations of cellular component

Name Definition
AP-1 adaptor complex A heterotetrameric AP-type membrane coat adaptor complex that consists of beta1, gamma, mu1 and sigma1 subunits and links clathrin to the membrane surface of a vesicle; vesicles with AP-1-containing coats are normally found primarily in the trans-Golgi network. In at least humans, the AP-1 complex can be heterogeneric due to the existence of multiple subunit isoforms encoded by different genes (gamma1 and gamma2, mu1A and mu1B, and sigma1A, sigma1B and sigma1C).
AP-2 adaptor complex A heterotetrameric AP-type membrane coat adaptor complex that consists of alpha, beta2, mu2 and sigma2 subunits, and links clathrin to the membrane surface of a vesicle, and the cargo receptors during receptor/clathrin mediated endocytosis. Vesicles with AP-2-containing coats are normally found primarily near the plasma membrane, on endocytic vesicles. In at least humans, the AP-2 complex can be heterogeneric due to the existence of multiple subunit isoforms encoded by different alpha genes (alphaA and alphaC).
cytoplasmic vesicle A vesicle found in the cytoplasm of a cell.
cytosol The part of the cytoplasm that does not contain organelles but which does contain other particulate matter, such as protein complexes.
early endosome A membrane-bounded organelle that receives incoming material from primary endocytic vesicles that have been generated by clathrin-dependent and clathrin-independent endocytosis; vesicles fuse with the early endosome to deliver cargo for sorting into recycling or degradation pathways.
early endosome membrane The lipid bilayer surrounding an early endosome.
Golgi membrane The lipid bilayer surrounding any of the compartments of the Golgi apparatus.
nucleus A membrane-bounded organelle of eukaryotic cells in which chromosomes are housed and replicated. In most cells, the nucleus contains all of the cell's chromosomes except the organellar chromosomes, and is the site of RNA synthesis and processing. In some species, or in specialized cell types, RNA metabolism or DNA replication may be absent.
trans-Golgi network The network of interconnected tubular and cisternal structures located within the Golgi apparatus on the side distal to the endoplasmic reticulum, from which secretory vesicles emerge. The trans-Golgi network is important in the later stages of protein secretion where it is thought to play a key role in the sorting and targeting of secreted proteins to the correct destination.

1 GO annotations of molecular function

Name Definition
clathrin adaptor activity Bringing together a cargo protein with clathrin, responsible for the formation of endocytic vesicles.

6 GO annotations of biological process

Name Definition
clathrin-dependent endocytosis An endocytosis process that begins when material is taken up into clathrin-coated pits, which then pinch off to form clathrin-coated endocytic vesicles.
endocytosis A vesicle-mediated transport process in which cells take up external materials or membrane constituents by the invagination of a small region of the plasma membrane to form a new membrane-bounded vesicle.
Golgi to vacuole transport The directed movement of substances from the Golgi to the vacuole.
intracellular protein transport The directed movement of proteins in a cell, including the movement of proteins between specific compartments or structures within a cell, such as organelles of a eukaryotic cell.
vesicle targeting, trans-Golgi to endosome The process in which vesicles are directed to specific destination membranes during transport from the trans-Golgi to the endosome.
vesicle-mediated transport A cellular transport process in which transported substances are moved in membrane-bounded vesicles; transported substances are enclosed in the vesicle lumen or located in the vesicle membrane. The process begins with a step that directs a substance to the forming vesicle, and includes vesicle budding and coating. Vesicles are then targeted to, and fuse with, an acceptor membrane.

7 homologous proteins in AiPD

UniProt AC Gene Name Protein Name Species Evidence Code
Q00776 APM1 AP-1 complex subunit mu-1-I Saccharomyces cerevisiae (strain ATCC 204508 / S288c) (Baker's yeast) PR
Q99186 APM4 AP-2 complex subunit mu Saccharomyces cerevisiae (strain ATCC 204508 / S288c) (Baker's yeast) PR
Q96CW1 AP2M1 AP-2 complex subunit mu Homo sapiens (Human) PR
Q8CDJ8 Ston1 Stonin-1 Mus musculus (Mouse) PR
P84091 Ap2m1 AP-2 complex subunit mu Mus musculus (Mouse) PR
P35603 dpy-23 AP-2 complex subunit mu Caenorhabditis elegans PR
O23140 AP2M AP-2 complex subunit mu Arabidopsis thaliana (Mouse-ear cress) PR
10 20 30 40 50 60
MSSSLFILDE NLEPLVSKNI RALPNLSSVL SSFKQCYHDG SPPILSQNDW FFIHLKRDFL
70 80 90 100 110 120
HFVSVIHTTD KPNIDLMTIL AFLEQFYHLL QKYFEIEVLT KNVILDNILL VLELIDECID
130 140 150 160 170 180
FGIVQVTDPS IIKDYIRVKV NVPRVTVDNE EWSPGEESSS SSGSDSDSEY SNTNKRKDKK
190 200 210 220 230 240
KKRKKKKGTK GKSVGKSKLK SIMVNNKENR GINVVETVKE TLRNKNDTGK EAANDELPND
250 260 270 280 290 300
GNDLYINGDI AKTIIMPISW RTKGIHYAKN EFFLDVIERV QYLMDFEKGV IRKNLIHGEI
310 320 330 340 350 360
VCRCYLSGMP KLKISINKIL NRDPQFMSNS SFHQCVSLDS INTIEKDEEK NSDDDAGLQA
370 380 390 400 410 420
ATDAREIEFI PPDGEFVLCQ YELKRHVKDA PMVRLKDFEI KPKLKKFKIQ IVTKIQTNFK
430 440 450 460 470 480
PTNSTSKLNV RIPLTKVFQE YKIDLSKQIR FKANIGKVVF NLSDDFLLWE IQTMKGHREH
490 500 510 520 530 540
STNKSSQYNS DEDDPNTCAS MVAEFPLFNQ EEYDRLQEEM KTSMNPPPLR TGPRLEELYR
550 560 570 580 590 600
QVHDQQTSHV TPRDKLVNID FEIPYCTCSG LKVEYLKVEE PQLQYQSFPW VRYKTVSDEE
YAYIV