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Direct single-molecule visualization of Hsp90-mediated relief of an Hsp70-folding block

Jul 2026 · Science Advances · Vol 12 · 0 citations · 65 references
Medicine

TL;DR

HtpG reduces rebinding of DnaK to folding intermediates while still allowing engagement with misfolded clients, enabling productive refolding in the presence of typically inhibitory concentrations of DnaK and suggests that the number and position of DnaK binding sites on clients provide a mechanism by which proteins can harness chaperone promiscuity for optimal folding.

Abstract

Heat shock protein 70 (Hsp70) and Hsp90 are essential molecular chaperones that cooperate to fold diverse client proteins, yet how their activities are coordinated to remodel clients remains unclear. To address this, we used a combination of single-molecule fluorescence resonance energy transfer and total internal reflection fluorescence microscopy to observe individual firefly luciferase proteins during sequential engagement with Escherichia coli Hsp70 (DnaK) and Hsp90 (HtpG). We show that HtpG reduces rebinding of DnaK to folding intermediates while still allowing engagement with misfolded clients, enabling productive refolding in the presence of typically inhibitory concentrations of DnaK. HtpG couples adenosine 5′-triphosphate binding and hydrolysis to promote progressive folding through localized compaction across multiple regions of the client, reducing misfolding and establishing native interdomain contacts. Kinetic simulations support a model whereby heterogeneous DnaK binding generates region-specific folding kinetics and conformational dynamics. This enables efficient subdomain folding by DnaK/HtpG and suggests that the number and position of DnaK binding sites on clients provide a mechanism by which proteins can harness chaperone promiscuity for optimal folding.

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