Department of Life Science, Graduate School and Faculty of Engineering Science, Akita University, Akita 010-8502, Japan.
Department of Molecular Biosciences, Faculty of Life Sciences, Kyoto Sangyo University, Kamigamo, Kita-ku, Kyoto 803-8555, Japan.
Int J Mol Sci. 2018 Feb 6;19(2):489. doi: 10.3390/ijms19020489.
The GroEL/GroES chaperonin complex acts as a folding cage by producing a bullet-like asymmetric complex, and GroEL exists as double rings regardless of the presence of adenosine triphosphate (ATP). Its mammalian chaperonin homolog, heat shock protein, HSP60, and co-chaperonin, HSP10, play an essential role in protein folding by capturing unfolded proteins in the HSP60/HSP10 complex. However, the structural transition in ATPase-dependent reaction cycle has remained unclear. We found nucleotide-dependent association and dissociation of the HSP60/HSP10 complex using various analytical techniques under near physiological conditions. Our results showed that HSP60 exist as a significant number of double-ring complexes (football- and bullet-type complexes) and a small number of single-ring complexes in the presence of ATP and HSP10. HSP10 binds to HSP60 in the presence of ATP, which increased the HSP60 double-ring formation. After ATP is hydrolyzed to Adenosine diphosphate (ADP), HSP60 released the HSP10 and the dissociation of the double-ring to single-rings occurred. These results indicated that HSP60/HSP10 undergoes an ATP-dependent transition between the single- and double-rings in their system that is highly distinctive from the GroEL/GroES system particularly in the manner of complex formation and the roles of ATP binding and hydrolysis in the reaction cycle.
GroEL/GroES 分子伴侣复合物通过形成类似子弹的不对称复合物充当折叠笼,并且无论是否存在三磷酸腺苷 (ATP),GroEL 都以双环形式存在。其哺乳动物伴侣蛋白同源物热休克蛋白 HSP60 及其共同伴侣蛋白 HSP10 在蛋白折叠中发挥重要作用,通过在 HSP60/HSP10 复合物中捕获未折叠的蛋白。然而,ATP 酶依赖的反应循环中的结构转变仍不清楚。我们使用各种分析技术在接近生理条件下发现了 HSP60/HSP10 复合物在核苷酸依赖性下的结合和解离。我们的结果表明,在存在 ATP 和 HSP10 的情况下,HSP60 以大量的双环复合物(足球型和子弹型复合物)和少量的单环复合物形式存在。HSP10 在存在 ATP 的情况下与 HSP60 结合,从而增加了 HSP60 双环的形成。当 ATP 水解为二磷酸腺苷 (ADP) 后,HSP60 释放 HSP10,双环复合物解离为单环。这些结果表明,HSP60/HSP10 在其系统中经历了一个 ATP 依赖性的单环和双环之间的转变,这与 GroEL/GroES 系统非常不同,特别是在复合物形成的方式以及 ATP 结合和水解在反应循环中的作用。