Institute of Physical Chemistry, University of Freiburg, Freiburg, Germany.
Spemann Graduate School of Biology and Medicine (SGBM), University of Freiburg, Freiburg, Germany.
Nat Commun. 2024 Jan 17;15(1):569. doi: 10.1038/s41467-024-44847-6.
The molecular chaperone and heat shock protein Hsp90 is part of many protein complexes in eukaryotic cells. Together with its cochaperones, Hsp90 is responsible for the maturation of hundreds of clients. Although having been investigated for decades, it still is largely unknown which components are necessary for a functional complex and how the energy of ATP hydrolysis is used to enable cyclic operation. Here we use single-molecule FRET to show how cochaperones introduce directionality into Hsp90's conformational changes during its interaction with the client kinase Ste11. Three cochaperones are needed to couple ATP turnover to these conformational changes. All three are therefore essential for a functional cyclic operation, which requires coupling to an energy source. Finally, our findings show how the formation of sub-complexes in equilibrium followed by a directed selection of the functional complex can be the most energy efficient pathway for kinase maturation.
分子伴侣和热休克蛋白 Hsp90 是真核细胞中许多蛋白质复合物的一部分。Hsp90 与其共伴侣一起负责数百种客户的成熟。尽管已经研究了几十年,但对于功能性复合物所需的哪些成分以及如何利用 ATP 水解的能量来实现循环操作,仍然知之甚少。在这里,我们使用单分子 FRET 来显示共伴侣如何在 Hsp90 与其客户激酶 Ste11 的相互作用过程中引入方向性到其构象变化中。需要三种共伴侣将 ATP 周转率与这些构象变化偶联。因此,这三种共伴侣对于功能性循环操作都是必不可少的,这需要与能量源偶联。最后,我们的发现表明,在平衡时形成亚复合物,然后有针对性地选择功能复合物,可能是激酶成熟的最节能途径。