9DYV image
Deposition Date 2024-10-14
Release Date 2025-10-22
Last Version Date 2025-11-19
Entry Detail
PDB ID:
9DYV
Title:
Assembly and functional mechanisms of the Hsp70-Hsp40 chaperone machinery
Biological Source:
Source Organism:
Host Organism:
Method Details:
Experimental Method:
Conformers Calculated:
100
Conformers Submitted:
20
Selection Criteria:
structures with the lowest energy
Macromolecular Entities
Structures with similar UniProt ID
Protein Blast
Polymer Type:polypeptide(L)
Molecule:Chaperone protein DnaJ 2
Gene (Uniprot):dnaJ2
Chain IDs:A
Chain Length:118
Number of Molecules:1
Biological Source:Thermus thermophilus
Ligand Molecules
Primary Citation
Mechanisms of assembly and function of the Hsp70-Hsp40 chaperone machinery.
Mol.Cell 85 4032 ? (2025)
PMID: 41092901 DOI: 10.1016/j.molcel.2025.09.023

Abstact

Hsp70 and Hsp40 molecular chaperones form a central machinery that remodels client proteins involved in numerous biological processes. Here, we integrated cryo-electron microscopy and nuclear magnetic resonance spectroscopy to determine the architecture of the full-length Hsp70-Hsp40 machinery. The structure of the complex in a physiologically inhibited state reveals distinct regulatory mechanisms. In the active state, the Hsp40 glycine-phenylalanine (G/F)-rich region acts as a pseudo-substrate for Hsp70, directly modulating refolding. This region also maintains Hsp40 in an autoinhibited state; upon binding to Hsp70, the inhibition is disrupted, exposing a cryptic client-binding site that enables client engagement and refolding. Transitions between these states are central to controlling refolding efficiency. Disrupting either the autoinhibited state or the G/F-Hsp70 interaction impairs function and elicits a compensatory heat shock response in cells. Our findings uncover the regulatory dynamics of a fundamental chaperone system, with broad implications for understanding protein homeostasis and the cellular response to stress.

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Primary Citation of related structures
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