Badcoe I G, Smith C J, Wood S, Halsall D J, Holbrook J J, Lund P, Clarke A R
Department of Biochemistry, University of Bristol School of Medical Sciences, University Walk, U.K.
Biochemistry. 1991 Sep 24;30(38):9195-200. doi: 10.1021/bi00102a010.
When Bacillus stearothermophilus LDH dimer is incubated with increasing concentrations of the denaturant guanidinium chloride, three distinct unfolded states of the molecule are observed at equilibrium [Smith, C. J., et al. (1991) Biochemistry 30, 1028-1036]. The kinetics of LDH refolding are consistent with an unbranched progression through these states. The Escherichia coli chaperonin, GroEL, binds with high affinity to the completely denatured form and more weakly to the earliest folding intermediate, thus retarding the refolding process. A later structurally defined folding intermediate, corresponding to a molten globule form, is not bound by GroEL; neither is the inactive monomer. The complex between GroEL and denatured LDH is destabilized by the binding of magnesium/ATP (Mg/ATP) or by the nonhydrolyzable analogue adenylyl imidodiphosphate (AMP-PNP). From our initial kinetic data, we propose that GroEL exists in two interconvertible forms, one of which is stabilized by the binding of Mg/ATP but associates weakly with the unfolded protein. The other is destabilized by Mg/ATP and associates strongly with unfolded LDH. The relevance of these findings to the role of GroEL in vivo is discussed.
当嗜热脂肪芽孢杆菌乳酸脱氢酶(LDH)二聚体与浓度不断增加的变性剂氯化胍一起温育时,在平衡状态下观察到该分子有三种不同的解折叠状态[史密斯,C.J.等人(1991年)《生物化学》30卷,第1028 - 1036页]。LDH重折叠的动力学与通过这些状态的无分支进程一致。大肠杆菌伴侣蛋白GroEL与完全变性的形式以高亲和力结合,而与最早的折叠中间体结合较弱,从而阻碍重折叠过程。后来一种结构明确的折叠中间体,对应于熔球态,不被GroEL结合;无活性单体也不被结合。GroEL与变性LDH之间的复合物会因镁/ATP(Mg/ATP)或不可水解类似物腺苷亚胺二磷酸(AMP - PNP)的结合而不稳定。根据我们最初的动力学数据,我们提出GroEL以两种可相互转化的形式存在,其中一种因Mg/ATP的结合而稳定,但与解折叠蛋白的结合较弱。另一种因Mg/ATP而不稳定,与解折叠的LDH结合紧密。本文讨论了这些发现与GroEL在体内作用的相关性。