Heat Shock Factor 1 Is a Substrate for p38 Mitogen-Activated Protein Kinases

Author:

Dayalan Naidu Sharadha1,Sutherland Calum2,Zhang Ying1,Risco Ana3,de la Vega Laureano1,Caunt Christopher J.4,Hastie C. James5,Lamont Douglas J.6,Torrente Laura1,Chowdhry Sudhir1,Benjamin Ivor J.7,Keyse Stephen M.1,Cuenda Ana3,Dinkova-Kostova Albena T.18

Affiliation:

1. Division of Cancer Research, School of Medicine, University of Dundee, Dundee, Scotland, United Kingdom

2. Division of Cardiovascular and Diabetes Medicine, School of Medicine, University of Dundee, Dundee, Scotland, United Kingdom

3. Department of Immunology and Oncology, Centro Nacional de Biotecnología/CSIC, Madrid, Spain

4. Department of Biology and Biochemistry, University of Bath, Claverton Down, Bath, United Kingdom

5. Division of Signal Transduction Therapy, School of Life Sciences, University of Dundee, Dundee, Scotland, United Kingdom

6. Division of Biological Chemistry and Drug Discovery, School of Life Sciences, University of Dundee, Dundee, Scotland, United Kingdom

7. Cardiovascular Center, Medical College of Wisconsin, Milwaukee, Wisconsin, USA

8. Department of Pharmacology and Molecular Sciences and Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland, USA

Abstract

ABSTRACT Heat shock factor 1 (HSF1) monitors the structural integrity of the proteome. Phosphorylation at S326 is a hallmark for HSF1 activation, but the identity of the kinase(s) phosphorylating this site has remained elusive. We show here that the dietary agent phenethyl isothiocyanate (PEITC) inhibits heat shock protein 90 (Hsp90), the main negative regulator of HSF1; activates p38 mitogen-activated protein kinase (MAPK); and increases S326 phosphorylation, trimerization, and nuclear translocation of HSF1, and the transcription of a luciferase reporter, as well as the endogenous prototypic HSF1 target Hsp70. In vitro , all members of the p38 MAPK family rapidly and stoichiometrically catalyze the S326 phosphorylation. The use of stable knockdown cell lines and inhibitors indicated that among the p38 MAPKs, p38γ is the principal isoform responsible for the phosphorylation of HSF1 at S326 in cells. A protease-mass spectrometry approach confirmed S326 phosphorylation and unexpectedly revealed that p38 MAPK also catalyzes the phosphorylation of HSF1 at S303/307, previously known repressive posttranslational modifications. Thus, we have identified p38 MAPKs as highly efficient catalysts for the phosphorylation of HSF1. Furthermore, our findings suggest that the magnitude and persistence of activation of p38 MAPK are important determinants of the extent and duration of the heat shock response.

Funder

Biotechnology and Biological Sciences Research Council

Ministerio de Economia y Competitividad

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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