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ARD1-mediated Hsp70 acetylation balances stress-induced protein refolding and degradation

Authors :
Kyu-Won Kim
Hoon Choi
Bong-Jin Lee
Hee-Jun Wee
Jae Kyung Jang
Mi-Ni Lee
Seung-Hyeon Seok
Hye Shin Lee
Jaeho Jeong
Jun Yong Kim
Tam Thuy Lu Vo
Zee Yong Park
Eun Lee
Ji Hae Seo
Ji-Hyeon Park
Goo Taeg Oh
Kong-Joo Lee
Se Hwan Jang
Jin Young Park
Source :
Nature Communications, Nature Communications, Vol 7, Iss 1, Pp 1-14 (2016), NATURE COMMUNICATIONS(7)
Publication Year :
2016

Abstract

Heat shock protein (Hsp)70 is a molecular chaperone that maintains protein homoeostasis during cellular stress through two opposing mechanisms: protein refolding and degradation. However, the mechanisms by which Hsp70 balances these opposing functions under stress conditions remain unknown. Here, we demonstrate that Hsp70 preferentially facilitates protein refolding after stress, gradually switching to protein degradation via a mechanism dependent on ARD1-mediated Hsp70 acetylation. During the early stress response, Hsp70 is immediately acetylated by ARD1 at K77, and the acetylated Hsp70 binds to the co-chaperone Hop to allow protein refolding. Thereafter, Hsp70 is deacetylated and binds to the ubiquitin ligase protein CHIP to complete protein degradation during later stages. This switch is required for the maintenance of protein homoeostasis and ultimately rescues cells from stress-induced cell death in vitro and in vivo. Therefore, ARD1-mediated Hsp70 acetylation is a regulatory mechanism that temporally balances protein refolding/degradation in response to stress.<br />The chaperone Hsp70 has a dual role, promoting both protein refolding and protein degradation. Seo and Park et al. show that Hsp70 acetylation enhances protein refolding after stress, and that subsequent deacetylation progressively promotes ubiquitin ligase binding and protein degradation.

Details

ISSN :
20411723
Volume :
7
Database :
OpenAIRE
Journal :
Nature communications
Accession number :
edsair.doi.dedup.....a31c58f894d2f788b26cec1c38c21f07