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GroEL的一种单体变体可结合核苷酸,但作为分子伴侣无活性。

A monomeric variant of GroEL binds nucleotides but is inactive as a molecular chaperone.

作者信息

White Z W, Fisher K E, Eisenstein E

机构信息

Center for Advanced Research in Biotechnology, University of Maryland Biotechnology Institute, Rockville 20850, USA.

出版信息

J Biol Chem. 1995 Sep 1;270(35):20404-9. doi: 10.1074/jbc.270.35.20404.

Abstract

The heat shock protein GroEL from Escherichia coli is a tetradecameric oligomer that facilitates the refolding of nonnative polypeptides in an ATP-hydrolysis dependent reaction. A mutant in GroEL was prepared in which lysine 3 was substituted with glutamate, which destabilizes the oligomeric structure of GroEL (Horovitz, A., Bochkareva, E.S., and Girshovich, A.S. (1993) J. Biol. Chem. 268, 9957-9959). The highly expressed and purified GroELK3E was judged to be monomeric by sedimentation equilibrium, yielding a molecular weight of 54,500, despite a weak tendency of the mutant to reversibly form higher order aggregates above 4 mg ml-1. The monomeric variant appears to be folded based on the far UV circular dichroism spectrum, which shows significant alpha-helical content, but with slight differences in conformation relative to wild-type GroEL. The increase in exposed hydrophobic surface of the monomer was probed with the dye 4,4'-bis-1-anilino-3-naphthalenesulfonate (bis-ANS). The fluorescence of bis-ANS increases approximately 150-fold in the presence of the mutant, and about 4 mol of bis-ANS bind per mol of monomer, with a binding constant of 1.6 microM. Adenosine nucleotide binding to monomeric GroELK3E resulted in considerable quenching of bis-ANS fluorescence, correlating with significant structural changes as seen in the far UV circular dichroism, and permitted the measurement of binding isotherms for ATP and ADP. Hyperbolic ATP binding isotherms yield a dissociation constant of 82 microM, about 4-fold weaker than the K0.5 for ATP seen in steady-state kinetics assays of the wild-type GroEL ATPase.A similar difference was seen for ADP binding. These results suggest that the mutation disrupts the native tetradecameric quaternary structure through conformational changes that may also weaken nucleotide binding. The monomeric mutant exhibited no chaperone activity as evidenced by a filure to inhibit or facilitate the refolding of chemically denatured enolase, an inability to refold denatured rhodanese above spontaneous levels, and a lack of binding to alpha-casein, a competitor in many chaperonin-promoted refolding reactions. Thus, the formation of assembly incompetent monomers by the lysine 3 to glutamate mutation results in a dramatic decrease in the affinity for nonnative polypeptide chains and suggests that the oligomeric nature of GroEL is crucial for its molecular chaperone function.

摘要

来自大肠杆菌的热休克蛋白GroEL是一种十四聚体寡聚物,它在ATP水解依赖性反应中促进非天然多肽的重折叠。制备了GroEL的一个突变体,其中赖氨酸3被谷氨酸取代,这使GroEL的寡聚结构不稳定(霍罗维茨,A.,博奇卡列娃,E.S.,和吉尔绍维奇,A.S.(1993年)《生物化学杂志》268,9957 - 9959)。通过沉降平衡判断,高表达并纯化的GroELK3E为单体,分子量为54,500,尽管该突变体在浓度高于4 mg/ml时存在可逆形成高阶聚集体的微弱趋势。基于远紫外圆二色光谱,单体变体似乎是折叠的,该光谱显示出显著的α - 螺旋含量,但相对于野生型GroEL,其构象略有不同。用染料4,4'-双 - 1 - 苯胺基 - 3 - 萘磺酸盐(双 - ANS)探测单体暴露疏水表面的增加情况。在突变体存在的情况下,双 - ANS的荧光增加约150倍,每摩尔单体约结合4摩尔双 - ANS,结合常数为1.6 μM。腺苷核苷酸与单体GroELK3E的结合导致双 - ANS荧光显著猝灭,这与远紫外圆二色光谱中观察到的显著结构变化相关,并允许测量ATP和ADP的结合等温线。双曲线型的ATP结合等温线产生的解离常数为82 μM,比野生型GroEL ATP酶稳态动力学测定中观察到的ATP的K0.5弱约4倍。ADP结合也观察到类似差异。这些结果表明,该突变通过构象变化破坏了天然的十四聚体四级结构,这种构象变化也可能削弱核苷酸结合。单体突变体没有表现出伴侣活性,这表现为未能抑制或促进化学变性烯醇酶的重折叠、无法将变性的硫氰酸酶重折叠至高于自发水平以及缺乏与α - 酪蛋白的结合,α - 酪蛋白是许多伴侣蛋白促进的重折叠反应中的一种竞争者。因此,赖氨酸3突变为谷氨酸导致形成无组装能力的单体,这使得对非天然多肽链的亲和力急剧下降,并表明GroEL的寡聚性质对其分子伴侣功能至关重要。

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