University of Illinois, Urbana-Champaign Department of Cell and Developmental Biology, 601 S. Goodwin Avenue, Urbana, IL 61801, USA.
University of Illinois, Urbana-Champaign Department of Cell and Developmental Biology, 601 S. Goodwin Avenue, Urbana, IL 61801, USA.
J Mol Biol. 2024 Jul 15;436(14):168460. doi: 10.1016/j.jmb.2024.168460. Epub 2024 Jan 30.
The Heat Shock Protein 90 (Hsp90) molecular chaperone is a key driver of protein homeostasis (proteostasis) under physiologically normal and stress conditions. In eukaryotes, Hsp90 is essential and is one of the most abundant proteins in a cell where the chaperone shuttles between the cytoplasm and nucleus to fold, stabilize, and regulate client proteins and protein complexes. Numerous high-throughput screens have mapped the Hsp90 interactome, building a vast network comprising ∼25% of the proteome in budding yeast. How Hsp90 is able to associate with this diverse and large cadre of targets is critical to comprehending how the proteostatic process works. Here, we review recent progress on our understanding of the molecular underpinnings driving Hsp90-client interactions from both the perspective of the targets and Hsp90. In addition to considering the available Hsp90-client structures, we also assessed recently identified Hsp90-client peptide complexes to build a model that justifies how Hsp90 might recognize a wide spectrum of target proteins. In brief, Hsp90 either directly recognizes a site within an intrinsically disordered region (IDR) of a client protein to transiently regulate that client or it associates with an unstructured polypeptide section created by the concerted efforts of multiple chaperones and cochaperones to stably associate with a client. Overall, Hsp90 exploits a common recognition property (i.e., IDR) within diverse clients to support chaperone-actionthereby enabling its central role in proteostasis.
热休克蛋白 90(Hsp90)分子伴侣是生理正常和应激条件下蛋白质平衡(蛋白质稳态)的关键驱动因素。在真核生物中,Hsp90 是必需的,并且是细胞中最丰富的蛋白质之一,伴侣穿梭于细胞质和核之间,以折叠、稳定和调节客户蛋白和蛋白复合物。许多高通量筛选已经绘制了 Hsp90 相互作用组图谱,构建了一个庞大的网络,包含了芽殖酵母中约 25%的蛋白质组。Hsp90 如何能够与如此多样化和庞大的目标群体相关联,对于理解蛋白质稳态过程的工作原理至关重要。在这里,我们从目标和 Hsp90 的角度回顾了最近对驱动 Hsp90-客户相互作用的分子基础的理解进展。除了考虑现有的 Hsp90-客户结构外,我们还评估了最近鉴定的 Hsp90-客户肽复合物,以构建一个模型,该模型解释了 Hsp90 如何识别广泛的靶蛋白。简而言之,Hsp90 要么直接识别客户蛋白中无规则区域(IDR)内的一个位点,以暂时调节该客户,要么与多个伴侣和共伴侣协同作用产生的无规则多肽段结合,以稳定地与客户结合。总的来说,Hsp90 利用不同客户的共同识别特性(即 IDR)来支持伴侣作用,从而使其在蛋白质稳态中发挥核心作用。