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The Hsp90 isoforms from S. cerevisiae differ in structure, function and client range

delete2019-08-09
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H
Hannah Girstmair
F
Franziska Tippel
A
Abraham López
K
Katarzyna Tych
F
Frank Stein
P
Per Haberkant
P
Philipp W. N. Schmid
D
Dominic Helm
M
Matthias Rief
M
Michael Sattler
J
Johannes Büchner *
DOI:10.1038/s41467-019-11518-wdelete
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Abstract

Abstract

En 中文
The molecular chaperone Hsp90 is an important regulator of proteostasis. It has remained unclear why S. cerevisiae possesses two Hsp90 isoforms, the constitutively expressed Hsc82 and the stress-inducible Hsp82. Here, we report distinct differences despite a sequence identity of 97%. Consistent with its function under stress conditions, Hsp82 is more stable and refolds more efficiently than Hsc82. The two isoforms also differ in their ATPases and conformational cycles. Hsc82 is more processive and populates closed states to a greater extent. Variations in the N-terminal ATP-binding domain modulate its dynamics and conformational cycle. Despite these differences, the client interactomes are largely identical, but isoform-specific interactors exist both under physiological and heat shock conditions. Taken together, changes mainly in the N-domain create a stress-specific, more resilient protein with a shifted activity profile. Thus, the precise tuning of the Hsp90 isoforms preserves the basic mechanism but adapts it to specific needs.
Keywords:
N-TERMINAL DOMAIN
MOLECULAR CHAPERONE HSP90
CRYSTAL-STRUCTURE
PROTEIN
BINDING
YEAST
CYCLE
IDENTIFICATION
COCHAPERONE
RADICICOL
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Journal

Nature Communications cover
Nature Communications
IF:
15.7
Papers:
9.3W
Citations:
91.2W

Organization

T
Technical University of Munich
Scholars:
5.2W
Papers: 3.9W
Citations: 6.2W