Molecular chaperone Hsp90 stabilizes Pih1/Nop17 to maintain R2TP complex activity that regulates snoRNA accumulation

Author:

Zhao Rongmin1,Kakihara Yoshito1,Gribun Anna1,Huen Jennifer1,Yang Guocheng123,Khanna May453,Costanzo Michael453,Brost Renée L.453,Boone Charles453,Hughes Timothy R.453,Yip Christopher M.123,Houry Walid A.1

Affiliation:

1. Department of Biochemistry

2. Institute of Biomaterials and Biomedical Engineering

3. Terrence Donnelly Center for Cellular and Biomolecular Research, University of Toronto, Toronto, Ontario M5S 1A8, Canada

4. Banting and Best Department of Medical Research

5. Department of Molecular Genetics and Microbiology,

Abstract

Hsp90 is a highly conserved molecular chaperone that is involved in modulating a multitude of cellular processes. In this study, we identify a function for the chaperone in RNA processing and maintenance. This functionality of Hsp90 involves two recently identified interactors of the chaperone: Tah1 and Pih1/Nop17. Tah1 is a small protein containing tetratricopeptide repeats, whereas Pih1 is found to be an unstable protein. Tah1 and Pih1 bind to the essential helicases Rvb1 and Rvb2 to form the R2TP complex, which we demonstrate is required for the correct accumulation of box C/D small nucleolar ribonucleoproteins. Together with the Tah1 cofactor, Hsp90 functions to stabilize Pih1. As a consequence, the chaperone is shown to affect box C/D accumulation and maintenance, especially under stress conditions. Hsp90 and R2TP proteins are also involved in the proper accumulation of box H/ACA small nucleolar RNAs.

Publisher

Rockefeller University Press

Subject

Cell Biology

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