Prodromou Chrisostomos
Genome Damage and Stability Centre, Brighton, UK.
Biochim Biophys Acta. 2012 Mar;1823(3):614-23. doi: 10.1016/j.bbamcr.2011.07.020. Epub 2011 Aug 4.
Hsp90 forms a variety of complexes differing both in clientele and co-chaperones. Central to the role of co-chaperones in the formation of Hsp90 complexes is the delivery of client proteins and the regulation of the ATPase activity of Hsp90. Determining the mechanisms by which co-chaperones regulate Hsp90 is essential in understanding the assembly of these complexes and the activation and maturation of Hsp90's clientele. Mechanistically, co-chaperones alter the kinetics of the ATP-coupled conformational changes of Hsp90. The structural changes leading to the formation of a catalytically active unit involve all regions of the Hsp90 dimer. Their complexity has allowed different orthologues of Hsp90 to evolve kinetically in slightly different ways. The interaction of the cytosolic Hsp90 with a variety of co-chaperones lends itself to a complex set of different regulatory mechanisms that modulate Hsp90's conformation and ATPase activity. It also appears that the conformational switches of Hsp90 are not necessarily coupled under all circumstances. Here, I described different co-chaperone complexes and then discuss in detail the mechanisms and role that specific co-chaperones play in this. I will also discuss emerging evidence that post-translational modifications also affect the ATPase activity of Hsp90, and thus complex formation. Finally, I will present evidence showing how Hsp90's active site, although being highly conserved, can be altered to show resistance to drug binding, but still maintain ATP binding and ATPase activity. Such changes are therefore unlikely to significantly alter Hsp90's interactions with client proteins and co-chaperones. This article is part of a Special Issue entitled: Heat Shock Protein 90 (HSP90).
热休克蛋白90(Hsp90)形成了多种在客户蛋白和共伴侣蛋白方面都有所不同的复合物。共伴侣蛋白在Hsp90复合物形成过程中的核心作用是客户蛋白的传递以及Hsp90 ATP酶活性的调节。确定共伴侣蛋白调节Hsp90的机制对于理解这些复合物的组装以及Hsp90客户蛋白的激活和成熟至关重要。从机制上讲,共伴侣蛋白会改变Hsp90与ATP偶联的构象变化的动力学。导致形成催化活性单元的结构变化涉及Hsp90二聚体的所有区域。其复杂性使得Hsp90的不同直系同源物在动力学上以略有不同的方式进化。胞质Hsp90与多种共伴侣蛋白的相互作用产生了一系列复杂的不同调节机制,这些机制调节Hsp90的构象和ATP酶活性。似乎Hsp90的构象转换在所有情况下不一定都是偶联的。在这里,我描述了不同的共伴侣蛋白复合物,然后详细讨论了特定共伴侣蛋白在此过程中所起的机制和作用。我还将讨论新出现的证据,即翻译后修饰也会影响Hsp90的ATP酶活性,从而影响复合物的形成。最后,我将展示证据表明,尽管Hsp90的活性位点高度保守,但它可以被改变以显示对药物结合的抗性,但仍保持ATP结合和ATP酶活性。因此,这种变化不太可能显著改变Hsp90与客户蛋白和共伴侣蛋白的相互作用。本文是名为:热休克蛋白90(HSP90)的特刊的一部分。