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

机译:ARD1介导的Hsp70乙酰化可平衡应激诱导的蛋白质复性和降解

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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.
机译:热休克蛋白(Hsp)70是一种分子伴侣蛋白,可通过两种相反的机制在细胞应激期间维持蛋白同质性:蛋白复性和降解。但是,Hsp70在压力条件下平衡这些相对功能的机制仍然未知。在这里,我们证明了Hsp70优先促进应激后的蛋白折叠,并通过依赖于ARD1介导的Hsp70乙酰化的机制逐渐转换为蛋白降解。在早期应激反应中,Hsp70立即被ARD1在K77处乙酰化,乙酰化的Hsp70与伴侣伴侣蛇麻草结合,使蛋白质重新折叠。此后,Hsp70脱乙酰基化并与泛素连接酶蛋白CHIP结合,以在后续阶段完成蛋白降解。此开关是维持蛋白质同源性所必需的,并最终在体外和体内使细胞免于应激诱导的细胞死亡。因此,ARD1介导的Hsp70乙酰化是一种调节机制,可在压力下暂时平衡蛋白质的折叠/降解。

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