Department of Molecular Biosciences, The University of Texas at Austin, Austin, Texas, USA.
Department of Molecular Biosciences, The University of Texas at Austin, Austin, Texas, USA
Mol Cell Biol. 2020 May 28;40(12). doi: 10.1128/MCB.00628-19.
Maintenance of protein homeostasis in eukaryotes under normal growth and stress conditions requires the functions of Hsp70 chaperones and associated cochaperones. Here, we investigate an evolutionarily conserved serine phosphorylation that occurs at the site of communication between the nucleotide-binding and substrate-binding domains of Hsp70. Ser151 phosphorylation in yeast Hsp70 (Ssa1) is promoted by cyclin-dependent kinase (Cdk1) during normal growth. Phosphomimetic substitutions at this site (S151D) dramatically downregulate heat shock responses, a result conserved with HSC70 S153 in human cells. Phosphomimetic forms of Ssa1 also fail to relocalize in response to starvation conditions, do not associate with Hsp40 cochaperones Ydj1 and Sis1, and do not catalyze refolding of denatured proteins in cooperation with Ydj1 and Hsp104. Despite these negative effects on HSC70/HSP70 function, the S151D phosphomimetic allele promotes survival of heavy metal exposure and suppresses the Sup35-dependent [ ] prion phenotype, consistent with proposed roles for Ssa1 and Hsp104 in generating self-nucleating seeds of misfolded proteins. Taken together, these results suggest that Cdk1 can downregulate Hsp70 function through phosphorylation of this site, with potential costs to overall chaperone efficiency but also advantages with respect to reduction of metal-induced and prion-dependent protein aggregate production.
真核生物在正常生长和应激条件下维持蛋白质平衡需要 Hsp70 伴侣和相关共伴侣的功能。在这里,我们研究了一种在 Hsp70 的核苷酸结合和底物结合结构域之间的通讯位点发生的进化上保守的丝氨酸磷酸化。在正常生长过程中,细胞周期蛋白依赖性激酶(Cdk1)促进酵母 Hsp70(Ssa1)中丝氨酸 151 的磷酸化。该位点的磷酸模拟取代(S151D)极大地下调热休克反应,这一结果在人类细胞中的 HSC70 S153 中是保守的。Ssa1 的磷酸模拟形式也不能响应饥饿条件重新定位,不能与 Hsp40 共伴侣 Ydj1 和 Sis1 结合,也不能与 Ydj1 和 Hsp104 合作催化变性蛋白的重折叠。尽管这些对 HSC70/HSP70 功能的负面影响,S151D 磷酸模拟等位基因促进重金属暴露的存活,并抑制 Sup35 依赖性[ ]朊病毒表型,与 Ssa1 和 Hsp104 在产生错误折叠蛋白的自我成核种子中的作用一致。总之,这些结果表明,Cdk1 可以通过磷酸化该位点下调 Hsp70 功能,这可能会降低整体伴侣效率,但也有利于减少金属诱导和朊病毒依赖性蛋白聚集体的产生。