Diamant S, Azem A, Weiss C, Goloubinoff P
Department of Botany, Alexander Silberman Institute of Life Sciences, Hebrew University of Jerusalem, Israel.
J Biol Chem. 1995 Nov 24;270(47):28387-91. doi: 10.1074/jbc.270.47.28387.
This study addresses the role of ATP-bound and free Mg2+ and Mn2+ ions in the activation and modulation of chaperonin-assisted refolding of urea-denatured malate dehydrogenase. As compared with Mg2+, Mn2+ ions caused a significant increase in the rate of GroE-assisted malate dehydrogenase refolding and, concomitantly, a decrease in the rate of ATP hydrolysis. Moreover, Mn2+ increases the affinity of GroES for GroEL, even in the presence of saturating amounts of Mg2+. Chemical cross-linking showed that lower concentrations of Mn-ATP as compared with Mg-ATP are needed to form both asymmetric GroEL14GroES7 and symmetric GroEL14(GroES7)2 particles. The manganese-dependent increase in the rate of protein folding concurred with a specific increase in the amount of symmetric GroEL14-(GroES7)2 particles detected in a chaperonin solution. Thus, Mn2+ is a cofactor that can markedly increase the efficiency of the chaperonin reaction in vitro. Mn2+ ions can serve as an important tool for analyzing the molecular mechanism and the structure of chaperonins.
本研究探讨了与ATP结合的游离Mg2+和Mn2+离子在伴侣蛋白辅助尿素变性苹果酸脱氢酶重折叠的激活和调节中的作用。与Mg2+相比,Mn2+离子显著提高了GroE辅助苹果酸脱氢酶重折叠的速率,同时降低了ATP水解的速率。此外,即使在存在饱和量Mg2+的情况下,Mn2+也会增加GroES对GroEL的亲和力。化学交联表明,与Mg-ATP相比,形成不对称GroEL14GroES7和对称GroEL14(GroES7)2颗粒所需的Mn-ATP浓度更低。锰依赖性的蛋白质折叠速率增加与在伴侣蛋白溶液中检测到的对称GroEL14-(GroES7)2颗粒数量的特定增加相一致。因此,Mn2+是一种辅因子,可在体外显著提高伴侣蛋白反应的效率。Mn2+离子可作为分析伴侣蛋白分子机制和结构的重要工具。