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IID50159
UniprotP62944
ProteinAP-2 complex subunit beta
GeneAp2b1
OrganismRattus norvegicus
Sequence LLPS PhaSepDB
PhaSePro
LLPSDB
DrLLPS
Network xml rdf
Structure
Experiment
  :order   disorder   conflict   PDB cluster   ProS   Pfam Domain   SEG
937
 order/disorder by at least rule
     disorder by at least rule
     order by at least rule
 order/disorder by majority rule
Seq 701-937 Hetero dimer : Q9WVE9
 Evidence X-RAY 3hs9 A Reference
       Region 3hs9 A 701-704 disorder
       Region 3hs9 A 705-937 order
Seq 701-937 Hetero dimer : IID00359Complex
 Evidence X-RAY 3h1z A Reference
       Region 3h1z A 701-704 disorder
       Region 3h1z A 705-937 order
Seqphosphorylation
    4-4 Phosphoserine
    737-737 Phosphotyrosine
    928-928 Phosphotyrosine
Seqacetylation
    2-2 N-acetylthreonine
    265-265 N6-acetyllysine
 
Prediction
NeProc
Disorder 1-5,591-711
Order 6-590,719-768,773-795,800-937
ProS 628-636,655-665,690-695
AlphaFold
Disorder 1-14,192-197,550-552,583-705
Order 15-191,198-549,553-582,706-937
Pfam Hmmer
PF01602 11-534 1.3e-216
PF02883 710-817 3.5e-36
SEG 17-37 ,625-643 ,653-665
Function
Function in SwissProt
Component 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. The clathrin lattice serves as a mechanical scaffold but is itself unable to bind directly to membrane components. Clathrin-associated adaptor protein (AP) complexes which can bind directly to both the clathrin lattice and to the lipid and protein components of membranes are considered to be the major clathrin adaptors contributing the CCV formation. AP-2 also serves as a cargo receptor to selectively sort the membrane proteins involved in receptor-mediated endocytosis. AP-2 seems to play a role in the recycling of synaptic vesicle membranes from the presynaptic surface. AP-2 recognizes Y-X-X-[FILMV] (Y-X-X-Phi) and [ED]-X-X-X-L-[LI] endocytosis signal motifs within the cytosolic tails of transmembrane cargo molecules. AP-2 may also play a role in maintaining normal post-endocytic trafficking through the ARF6-regulated, non-clathrin pathway. During long-term potentiation in hippocampal neurons, AP-2 is responsible for the endocytosis of ADAM10 (By similarity). The AP-2 beta subunit acts via its C-terminal appendage domain as a scaffolding platform for endocytic accessory proteins; at least some clathrin-associated sorting proteins (CLASPs) are recognized by their [DE]-X(1,2)-F-X-X-[FL]-X-X-X-R motif. The AP-2 beta subunit binds to clathrin heavy chain, promoting clathrin lattice assembly; clathrin displaces at least some CLASPs from AP2B1 which probably then can be positioned for further coat assembly (By similarity).