Cellular Protein Chemistry, Bijvoet Center for Biomolecular Research, Utrecht University, Utrecht, The Netherlands; Science for Life, Utrecht University, Utrecht, The Netherlands.
Cellular Protein Chemistry, Bijvoet Center for Biomolecular Research, Utrecht University, Utrecht, The Netherlands; Science for Life, Utrecht University, Utrecht, The Netherlands.
J Mol Biol. 2018 Sep 14;430(18 Pt B):3029-3040. doi: 10.1016/j.jmb.2018.05.026. Epub 2018 May 18.
The molecular chaperone Hsp90 is involved in the folding, maturation, and degradation of a large number structurally and sequentially unrelated clients, often connected to serious diseases. Elucidating the principles of how Hsp90 recognizes this large variety of substrates is essential for comprehending the mechanism of this chaperone machinery, as well as it is a prerequisite for the design of client specific drugs targeting Hsp90. Here, we discuss the recent progress in understanding the substrate recognition principles of Hsp90 and its implications for the role of Hsp90 in the lifecycle of proteins. Hsp90 acts downstream of the chaperone Hsp70, which exposes its substrate to a short and highly hydrophobic cleft. The subsequently acting Hsp90 has an extended client-binding interface that enables a large number of low-affinity contacts. Structural studies show interaction modes of Hsp90 with the intrinsically disordered Alzheimer's disease-causing protein Tau, the kinase Cdk4 in a partially unfolded state and the folded ligand-binding domain of a steroid receptor. Comparing the features shared by these different proteins provides a picture of the substrate-binding principles of Hsp90.
分子伴侣 Hsp90 参与大量结构和顺序上不相关的客户的折叠、成熟和降解,这些客户通常与严重疾病有关。阐明 Hsp90 识别这种大量底物的原理对于理解这种伴侣机制至关重要,也是设计针对 Hsp90 的客户特异性药物的前提。在这里,我们讨论了理解 Hsp90 底物识别原理的最新进展及其对 Hsp90 在蛋白质生命周期中作用的影响。Hsp90 作用于伴侣蛋白 Hsp70 下游,Hsp70 将其底物暴露在短而高度疏水性的裂缝中。随后作用的 Hsp90 具有扩展的客户结合界面,能够实现大量低亲和力接触。结构研究表明 Hsp90 与阿尔茨海默病致病蛋白 Tau 的相互作用模式、部分展开状态的激酶 Cdk4 以及甾体受体折叠配体结合域。比较这些不同蛋白质所共有的特征提供了 Hsp90 底物结合原理的图片。