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The Link That Binds: The Linker of Hsp70 as a Helm of the Protein’s Function

机译:绑定的链接:Hsp70的连接子作为蛋白质功能的掌控者

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摘要

The heat shock 70 (Hsp70) family of molecular chaperones plays a central role in maintaining cellular proteostasis. Structurally, Hsp70s are composed of an N-terminal nucleotide binding domain (NBD) which exhibits ATPase activity, and a C-terminal substrate binding domain (SBD). The binding of ATP at the NBD and its subsequent hydrolysis influences the substrate binding affinity of the SBD through allostery. Similarly, peptide binding at the C-terminal SBD stimulates ATP hydrolysis by the N-terminal NBD. Interdomain communication between the NBD and SBD is facilitated by a conserved linker segment. Hsp70s form two main subgroups. Canonical Hsp70 members generally suppress protein aggregation and are also capable of refolding misfolded proteins. Hsp110 members are characterized by an extended lid segment and their function tends to be largely restricted to suppression of protein aggregation. In addition, the latter serve as nucleotide exchange factors (NEFs) of canonical Hsp70s. The linker of the Hsp110 family is less conserved compared to that of the canonical Hsp70 group. In addition, the linker plays a crucial role in defining the functional features of these two groups of Hsp70. Generally, the linker of Hsp70 is quite small and varies in size from seven to thirteen residues. Due to its small size, any sequence variation that Hsp70 exhibits in this motif has a major and unique influence on the function of the protein. Based on sequence data, we observed that canonical Hsp70s possess a linker that is distinct from similar segments present in Hsp110 proteins. In addition, Hsp110 linker motifs from various genera are distinct suggesting that their unique features regulate the flexibility with which the NBD and SBD of these proteins communicate via allostery. The Hsp70 linker modulates various structure-function features of Hsp70 such as its global conformation, affinity for peptide substrate and interaction with co-chaperones. The current review discusses how the unique features of the Hsp70 linker accounts for the functional specialization of this group of molecular chaperones.
机译:分子伴侣的热休克70(Hsp70)家族在维持细胞蛋白稳定中起着核心作用。在结构上,Hsp70由显示ATPase活性的N末端核苷酸结合结构域(NBD)和C末端底物结合结构域(SBD)组成。 ATP在NBD处的结合及其随后的水解作用通过变构影响SBD的底物结合亲和力。同样,在C末端SBD结合的肽会刺激N末端NBD水解ATP。保守的连接片段促进了NBD和SBD之间的域间通信。 Hsp70s形成两个主要的亚组。规范的Hsp70成员通常抑制蛋白质聚集,并且还能够重新折叠错误折叠的蛋白质。 Hsp110成员的特点是延伸的盖部分,其功能往往在很大程度上限制了蛋白质聚集的抑制。另外,后者用作标准Hsp70的核苷酸交换因子(NEF)。与标准的Hsp70组相比,Hsp110家族的接头保守性较低。此外,该连接子在定义这两组Hsp70的功能中起着至关重要的作用。通常,Hsp70的接头非常小,大小从7个到13个残基不等。由于Hsp70的大小小,因此它在此基序中表现出的任何序列变异都会对蛋白质的功能产生重大而独特的影响。基于序列数据,我们观察到规范的Hsp70s具有与Hsp110蛋白中存在的相似区段不同的接头。另外,来自不同属的Hsp110接头基序是不同的,表明它们的独特特征调节了这些蛋白质的NBD和SBD通过变构通讯的灵活性。 Hsp70接头调节Hsp70的各种结构功能特征,例如其整体构象,对肽底物的亲和力以及与伴侣蛋白的相互作用。当前的评论讨论了Hsp70接头的独特功能如何解释这组分子伴侣的功能专业化。

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