4Q2P image
Deposition Date 2014-04-09
Release Date 2014-09-10
Last Version Date 2023-09-20
Entry Detail
PDB ID:
4Q2P
Keywords:
Title:
NHERF3 PDZ2 in Complex with a Phage-Derived Peptide
Biological Source:
Source Organism:
Homo sapiens (Taxon ID: 9606)
Host Organism:
Method Details:
Experimental Method:
Resolution:
2.05 Å
R-Value Free:
0.25
R-Value Work:
0.18
R-Value Observed:
0.19
Space Group:
H 3
Macromolecular Entities
Polymer Type:polypeptide(L)
Molecule:Na(+)/H(+) exchange regulatory cofactor NHE-RF3
Gene (Uniprot):PDZK1
Chain IDs:A, B, C
Chain Length:99
Number of Molecules:3
Biological Source:Homo sapiens
Primary Citation
A structural portrait of the PDZ domain family.
J.Mol.Biol. 426 3509 3519 (2014)
PMID: 25158098 DOI: 10.1016/j.jmb.2014.08.012

Abstact

PDZ (PSD-95/Discs-large/ZO1) domains are interaction modules that typically bind to specific C-terminal sequences of partner proteins and assemble signaling complexes in multicellular organisms. We have analyzed the existing database of PDZ domain structures in the context of a specificity tree based on binding specificities defined by peptide-phage binding selections. We have identified 16 structures of PDZ domains in complex with high-affinity ligands and have elucidated four additional structures to assemble a structural database that covers most of the branches of the PDZ specificity tree. A detailed comparison of the structures reveals features that are responsible for the diverse specificities across the PDZ domain family. Specificity differences can be explained by differences in PDZ residues that are in contact with the peptide ligands, but these contacts involve both side-chain and main-chain interactions. Most PDZ domains bind peptides in a canonical conformation in which the ligand main chain adopts an extended β-strand conformation by interacting in an antiparallel fashion with a PDZ β-strand. However, a subset of PDZ domains bind peptides with a bent main-chain conformation and the specificities of these non-canonical domains could not be explained based on canonical structures. Our analysis provides a structural portrait of the PDZ domain family, which serves as a guide in understanding the structural basis for the diverse specificities across the family.

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