A FRET-based approach to simultaneously monitor HSF1 conformational change and oligomeric state throughout activation and inactivation is developed and previously contradictory view on Hsp90’s role in HSF1 regulation is unify.
Abstract
Heat shock factor 1 (HSF1) is the master transcriptional regulator of cellular response to disrupted cytosolic protein homeostasis. Temperature change, oxidation, and other stresses drive the trimerization and activation of HSF1 to induce expression of molecular chaperones, such as heat shock proteins Hsp70 and Hsp90, which sit at the center of cellular proteostatic networks. In turn, the HSPs and co-chaperones regulate HSF1, but mechanistic details of this cycle remain largely unknown. We developed a FRET-based approach to simultaneously monitor HSF1 conformational change and oligomeric state throughout activation and inactivation. By reconstituting Hsp-HSF1 interactions in vitro, we find that monomerization of HSF1 resembles fibril disassembly through coordinated Hsp40-Hsp70 activity. We then used site-specific photocrosslinking to track HSF1 loading into Hsp90 complexes, Hsp90 cycling, and stress-induced shifts in Hsp90-HSF1 interactions. Whereas Hsp90 inhibitors force ‘loading state’ type Hsp90-HSF1 interactions, heat shock promotes faster Hsp90 cycling. In this reconstituted system, HSF1-Hsp90 interactions are unexpectedly strongly dependent on the co-chaperone HOP, in contrast to canonical Hsp90 clients. Combining cryo-EM structures of Hsp90-HSF1 loading state and maturation state complexes with crosslinking mass spectroscopy and biophysical experiments, we show that Hsp90 holds HSF1 in a pre-activated, extended monomer state that is primed for trimerization. We propose this state both enhances responsivity but also promotes cytoplasmic-nuclear shuttling through exposure of the NLS. Notably, Hsp90-bound HSF1 can trimerize and bind DNA, placing it on-pathway for transcriptional activation. Together, our results unify previously contradictory view on Hsp90’s role in HSF1 regulation. The integrated combination of in vitro reconstitution, photocrosslinking, cryoEM and MS is an exciting new paradigm for the study of many dynamic systems including other complex proteostasis components.
Abstract The mitochondrial chaperone and co-chaperone HSP60/HSP10 (HSPD1/ HSPE1), the mammalian homologues of bacterial GroEL/GroES, form a barrel-and-lid complex to fold newly imported or misfolded mitochondrial proteins. Several lines of evidence suggest that HSPD1 and HSPE1 have diverged in function. HSPD1 and HSPE1...
The heat shock transcription factor HSF1 is best known as a master regulator of the proteotoxic stress response, yet its functions remain incompletely understood. In Drosophila melanogaster, heat shock factor (HSF) is essential for viability, but the mechanisms by which it promotes development are unclear. Here, we sho...
Jing Tang, Alicia Shipley, Roger P. White et al.· Development· 0 citations
Abstract Maintaining protein homeostasis (proteostasis) is crucial for long-term tissue health. This requires the action of stress response pathways and protein quality control mechanisms that act within or across different sub-cellular compartments to preserve proteome integrity. Within the cytosol/nucleus, the loss o...
In cells recovering from proteotoxic stress, inhibition of SUMO conjugation led to sustained activation of Heat Shock Factor 1 (HSF1) and SUMOylation of HSF1 as a central regulatory node for restoration of proteostasis, highlighting the critical role of SUMO signaling in regulating the dynamics of a molecular condensat...
S. Mueller, Upayan Patra, Svenja Kuska et al.· 0 citations
These findings demonstrate that the conformational plasticity of HOP can be strategically exploited for targeted protein-protein interaction (PPI) disruption in cancer therapy.
Gagandeep Singh, T. Chaudhuri· Biochimica et Biophysica Act...· 0 citations
In numerous neurodegenerative diseases known collectively as tauopathies, the microtubule‐associated protein tau forms fibrillar aggregates that are hallmarks of disease pathology. Tauopathies represent a substantial fraction of diseases associated with protein misfolding. Cellular chaperones known as small heat shock...
M. Cervantes, Maria K. Janowska, L. M. Tuttle et al.· Protein Science· 0 citations
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