Protein Domain : IPR013041

Type:  Domain Name:  Coatomer/clathrin adaptor appendage, Ig-like subdomain
Description:  Proteins synthesized on the ribosome and processed in the endoplasmic reticulum are transported from the Golgi apparatus to the trans-Golgi network (TGN), and from there via small carrier vesicles to their final destination compartment. This traffic is bidirectional, to ensure that proteins required to form vesicles are recycled. Vesicles have specific coat proteins (such as clathrin or coatomer) that are important for cargo selection and direction of transfer []. Clathrin coats contain both clathrin and adaptor complexes that link clathrin to receptors in coated vesicles. Clathrin-associated protein complexes are believed to interact with the cytoplasmic tails of membrane proteins, leading to their selection and concentration. The two major types of clathrin adaptor complexes are the heterotetrameric adaptor protein (AP) complexes, and the monomeric GGA (Golgi-localising, Gamma-adaptin ear domain homology, ARF-binding proteins) adaptors []. All AP complexes are heterotetramers composed of two large subunits (adaptins), a medium subunit (mu) and a small subunit (sigma). Each subunit has a specific function. Adaptin subunits recognise and bind to clathrin through their hinge region (clathrin box), and recruit accessory proteins that modulate AP function through their C-terminal appendage domains. By contrast, GGAs are monomers composed of four domains, which have functions similar to AP subunits: an N-terminal VHS (Vps27p/Hrs/Stam) domain, a GAT (GGA and Tom1) domain, a hinge region, and a C-terminal GAE (gamma-adaptin ear) domain. The GAE domain is similar to the AP gamma-adaptin ear domain, being responsible for the recruitment of accessory proteins that regulate clathrin-mediated endocytosis [].While clathrin mediates endocytic protein transport from ER to Golgi, coatomers (COPI, COPII) primarily mediate intra-Golgi transport, as well as the reverse Golgi to ER transport of dilysine-tagged proteins []. Coatomers reversibly associate with Golgi (non-clathrin-coated) vesicles to mediate protein transport and for budding from Golgi membranes []. Coatomer complexes are hetero-oligomers composed of at least an alpha, beta, beta', gamma, delta, epsilon and zeta subunits. This entry represents a beta-sandwich structural motif found in the appendage (ear) domain of alpha-, beta- and gamma-adaptin from AP clathrin adaptor complexes, the GAE (gamma-adaptin ear) domain of GGA adaptor proteins, and the appendage domain of the gamma subunit of coatomer complexes. These domains have an immunoglobulin-like beta-sandwich fold containing 7 or 8 strands in 2 beta-sheets in a Greek key topology [, , ]. Although the appendage domains from AP / GGA adaptins and coatomers share a similar fold, there is little sequence identity between them. However, they also share similar motif-based cargo recognition and accessory factor recruitment mechanisms. Short Name:  Coatomer/clathrin_app_Ig-like

4 Child Features

DB identifier Type Name
IPR008153 Domain Clathrin adaptor, gamma-adaptin, appendage
IPR013040 Domain Coatomer, gamma subunit, appendage, Ig-like subdomain
IPR013037 Domain Clathrin adaptor, beta-adaptin, appendage, Ig-like subdomain
IPR013038 Domain Clathrin adaptor, alpha-adaptin, appendage, Ig-like subdomain

0 Contains

1 Cross References

Identifier
SSF49348

0 Found In

0 GO Annotation

0 Ontology Annotations

0 Parent Features

3256 Proteins

DB identifier UniProt Accession Secondary Identifier Organism Name Length
233268 D8S746 PAC:15421058 Selaginella moellendorffii 861  
230624 D8R188 PAC:15415405 Selaginella moellendorffii 997  
268757 D8SJW9 PAC:15416460 Selaginella moellendorffii 886  
168054 D8R5I2 PAC:15419184 Selaginella moellendorffii 846  
269184 D8SU50 PAC:15414966 Selaginella moellendorffii 871  
evm.model.supercontig_180.11 PAC:16411493 Carica papaya 413  
evm.model.supercontig_47.59 PAC:16420664 Carica papaya 958  
evm.model.supercontig_62.141 PAC:16423941 Carica papaya 544  
evm.model.supercontig_69.3 PAC:16424898 Carica papaya 388  
29785.m000969 B9SB76 PAC:16808515 Ricinus communis 903  
29883.m002039 B9S4M0 PAC:16812126 Ricinus communis 875  
29991.m000630 B9SN68 PAC:16815248 Ricinus communis 1018  
30190.m010889 B9RBE3 PAC:16823253 Ricinus communis 887  
Cucsa.385480.1 PAC:16982576 Cucumis sativus 1019  
Cucsa.109670.1 A0A0A0LIY7 PAC:16959922 Cucumis sativus 887  
Cucsa.148800.2 PAC:16964203 Cucumis sativus 839  
Cucsa.148800.1 A0A0A0K1I7 PAC:16964202 Cucumis sativus 907  
Cucsa.240490.1 A0A0A0K7N9 PAC:16970898 Cucumis sativus 887  
Cucsa.285910.2 PAC:16974919 Cucumis sativus 682  
Cucsa.285910.1 A0A0A0KQ95 PAC:16974918 Cucumis sativus 875  
Cucsa.303320.1 A0A0A0KK76 PAC:16975890 Cucumis sativus 900  
orange1.1g004132m PAC:18118560 Citrus sinensis 772  
orange1.1g002971m PAC:18118558 Citrus sinensis 862  
orange1.1g002996m PAC:18118559 Citrus sinensis 860  
orange1.1g048218m A0A067FIT5 PAC:18109114 Citrus sinensis 948  
orange1.1g002900m PAC:18134455 Citrus sinensis 869  
orange1.1g003409m PAC:18134456 Citrus sinensis 822  
orange1.1g001845m A0A067DS13 PAC:18099867 Citrus sinensis 1006  
orange1.1g045023m PAC:18102310 Citrus sinensis 812  
AT4G11380.1 Q9SUS3 PAC:19648064 Arabidopsis thaliana 894  

8 Publications

First Author Title Year Journal Volume Pages PubMed ID
            12858162
            14690497
            15261670
            17041781
            17449236
            12042876
            12808037
            14527408