McLaughlin Stephen H, Ventouras Laure-Anne, Lobbezoo Bastiaan, Jackson Sophie E
Cambridge University Chemical Laboratory, Lensfield Road, Cambridge CB2 1EW, UK.
J Mol Biol. 2004 Nov 26;344(3):813-26. doi: 10.1016/j.jmb.2004.09.055.
The ATPase activity of the molecular chaperone Hsp90 is essential for its function in the assembly of client proteins. To understand the mechanism of human Hsp90, we have carried out a detailed kinetic analysis of ATP binding, hydrolysis and product release. ATP binds rapidly in a two-step process involving the formation of a diffusion-collision complex followed by a conformational change. The rate-determining step was shown to be ATP hydrolysis and not subsequent ADP dissociation. There was no evidence from any of the biophysical measurements for cooperativity in either nucleotide binding or hydrolysis for the dimeric protein. A monomeric fragment, lacking the C-terminal dimerisation domain, showed no dependence on protein concentration and, therefore, subunit association for activity. The thermodynamic linkage between client protein binding and nucleotide affinity revealed ATP bound Hsp90 has a higher affinity for client proteins than the ADP bound form. The kinetics are consistent with independent Michaelis-Menten catalysis in each subunit of the Hsp90 dimer. We propose that Hsp90 functions in an open-ring configuration for client protein activation.
分子伴侣Hsp90的ATP酶活性对其在客户蛋白组装中的功能至关重要。为了解人类Hsp90的作用机制,我们对ATP结合、水解和产物释放进行了详细的动力学分析。ATP通过两步过程快速结合,第一步形成扩散碰撞复合物,随后发生构象变化。结果表明,限速步骤是ATP水解而非随后的ADP解离。任何生物物理测量均未提供证据表明二聚体蛋白在核苷酸结合或水解方面存在协同作用。一个缺少C端二聚化结构域的单体片段,其活性不依赖于蛋白质浓度,因此也不依赖于亚基缔合。客户蛋白结合与核苷酸亲和力之间的热力学联系表明,与ADP结合形式相比,结合ATP的Hsp90对客户蛋白具有更高的亲和力。动力学结果与Hsp90二聚体每个亚基中的独立米氏催化一致。我们提出,Hsp90以开环构型发挥作用来激活客户蛋白。