Sučec Iva, Bersch Beate, Schanda Paul
CEA, CNRS, Institut de Biologie Structurale (IBS), Univ. Grenoble Alpes, Grenoble, France.
Institute of Science and Technology Austria, Klosterneuburg, Austria.
Front Mol Biosci. 2021 Oct 25;8:762005. doi: 10.3389/fmolb.2021.762005. eCollection 2021.
Molecular chaperones are central to cellular protein homeostasis. Dynamic disorder is a key feature of the complexes of molecular chaperones and their client proteins, and it facilitates the client release towards a folded state or the handover to downstream components. The dynamic nature also implies that a given chaperone can interact with many different client proteins, based on physico-chemical sequence properties rather than on structural complementarity of their (folded) 3D structure. Yet, the balance between this promiscuity and some degree of client specificity is poorly understood. Here, we review recent atomic-level descriptions of chaperones with client proteins, including chaperones in complex with intrinsically disordered proteins, with membrane-protein precursors, or partially folded client proteins. We focus hereby on chaperone-client interactions that are independent of ATP. The picture emerging from these studies highlights the importance of dynamics in these complexes, whereby several interaction types, not only hydrophobic ones, contribute to the complex formation. We discuss these features of chaperone-client complexes and possible factors that may contribute to this balance of promiscuity and specificity.
分子伴侣对于细胞蛋白质稳态至关重要。动态无序是分子伴侣及其客户蛋白复合物的一个关键特征,它有助于客户蛋白释放至折叠状态或交接给下游组分。这种动态特性还意味着,给定的分子伴侣可基于物理化学序列特性而非其(折叠后的)三维结构的结构互补性,与许多不同的客户蛋白相互作用。然而,这种通用性与一定程度的客户特异性之间的平衡仍知之甚少。在此,我们综述了近期关于分子伴侣与客户蛋白的原子水平描述,包括与内在无序蛋白、膜蛋白前体或部分折叠的客户蛋白形成复合物的分子伴侣。我们在此重点关注不依赖于ATP的分子伴侣 - 客户蛋白相互作用。这些研究呈现出的情况凸显了这些复合物中动态性的重要性,即不仅是疏水相互作用,还有几种相互作用类型都有助于复合物的形成。我们讨论了分子伴侣 - 客户蛋白复合物的这些特征以及可能导致这种通用性与特异性平衡的因素。