7YKI image
Deposition Date 2022-07-22
Release Date 2023-08-02
Last Version Date 2024-10-09
Entry Detail
PDB ID:
7YKI
Title:
Crystal structure of MAGI2 PDZ0-GK domain in complex with phospho-SAPAP1 GBR3 peptide
Biological Source:
Source Organism:
Mus musculus (Taxon ID: 10090)
Method Details:
Experimental Method:
Resolution:
2.00 Å
R-Value Free:
0.24
R-Value Work:
0.20
Space Group:
P 21 2 21
Macromolecular Entities
Structures with similar UniProt ID
Protein Blast
Polymer Type:polypeptide(L)
Molecule:Membrane-associated guanylate kinase, WW and PDZ domain-containing protein 2
Gene (Uniprot):Magi2
Chain IDs:A, B (auth: C)
Chain Length:234
Number of Molecules:2
Biological Source:Mus musculus
Structures with similar UniProt ID
Protein Blast
Polymer Type:polypeptide(L)
Molecule:SAPAP1
Chain IDs:C (auth: B), D
Chain Length:14
Number of Molecules:2
Biological Source:Mus musculus
Primary Citation
Phosphorylation-dependent recognition of diverse protein targets by the cryptic GK domain of MAGI MAGUKs.
Sci Adv 9 eadf3295 eadf3295 (2023)
PMID: 37163606 DOI: 10.1126/sciadv.adf3295

Abstact

Dynamic signal transduction requires the rapid assembly and disassembly of signaling complexes, often mediated by phosphoprotein binding modules. The guanylate kinase-like (GK) domain of the membrane-associated guanylate kinases (MAGUKs) is such a module orchestrating signaling at cellular junctions. The MAGI subfamily of MAGUKs contains a truncated GK domain with unknown structure and function, although they participate in diverse physiological and pathological processes. Here, we demonstrate that the truncated GK domain of MAGI2 interacts with its adjacent PDZ0 domain to form a structural supramodule capable of recognizing phosphoproteins. A conserved phosphorylation-dependent binding motif for PDZ0-GK is delineated, which leads to identification of a set of previously unknown binding partners. We explore the structure and function of the MAGI2-target complex with an inhibitory peptide derived from the consensus motif. Our work reveals an action mechanism of the cryptic MAGI GKs and broadens our understanding of the target recognition rules of phosphoprotein binding modules.

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