Mechanosensor-mediated Hsp70 phosphorylation orchestrates the landscape of the heat shock response

S Siddhi Omkar J Jake T. Kline J James H. Grissom D Diyun Sun R Richard J. Chi J Jared A. M. Bard L Luca Fornelli (Department of Chemistry, Proteomics Center of Excellence, Northwestern University) A Andrew W. Truman

Abstract

Abstract Cells must respond rapidly to heat stress by activating multiple signaling pathways that preserve proteostasis. In budding yeast, this includes induction of Hsf1 and Msn2/4-mediated transcription, cell integrity signaling, stress-triggered phase separation of proteins, and inhibition of translation. How these pathways are so rapidly activated and coordinated remains unclear. We show that the mechanosensor Mid2 senses heat-induced membrane stretch and leads to rapid phosphorylation of the cytosolic Hsp70 Ssa1 at a well-conserved threonine (T492). Phosphorylation of T492 leads to epichaperome rearrangement promoting fine-tuning of multiple cellular processes including translational pausing, HSF activity, MAPK signaling and stress granule resolution. Taken together, these results provide a comprehensive, unified theory of the global yeast heat shock response mediated by the Hsp70 chaperone code.

Article Details

Volume / Issue Vol. 17, Issue 1
Published December 13, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (8)

S

Siddhi Omkar

J

Jake T. Kline

J

James H. Grissom

D

Diyun Sun

R

Richard J. Chi

J

Jared A. M. Bard

L

Luca Fornelli

Department of Chemistry, Proteomics Center of Excellence, Northwestern University

A

Andrew W. Truman