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刀豆α-甘露糖苷酶的多态性展开:热稳定的无规卷曲中间体的证据。

Multistate unfolding of α-mannosidase from Canavalia ensiformis (Jack Bean): evidence for the thermostable molten globule.

机构信息

Division of Biochemical Sciences, National Chemical Laboratory, Pune 411008, India.

出版信息

Biochem Biophys Res Commun. 2010 Dec 17;403(3-4):391-7. doi: 10.1016/j.bbrc.2010.11.041. Epub 2010 Nov 16.

Abstract

The relevance of partially ordered states of proteins (such as the molten-globule state) in cellular processes is beginning to be understood. We examined the conformational transitions in a multimeric and high molecular weight class II α-mannosidase from Canavalia ensiformis (Jack Bean) (Jbα-man) utilizing intrinsic fluorescence, solute quenching, hydrophobic dye binding, size exclusion chromatography and circular dichroism (CD) spectroscopy for the protein in presence of Guanidine hydrochloride (GdnHCl). The decomposition analysis of the protein spectra obtained during unfolding showed progressive appearance of class S, I, II and III trp. The parameter A and spectral center of mass showed multi state unfolding of the protein and phase diagram analysis revealed formation of an intermediate of Jbα-man in the vicinity of 1 M GdnHCl. The intermediate exhibited compact secondary and distorted tertiary structure with exposed hydrophobic amino acids on the surface, indicating the molten-globule nature. The dissociation, partial unfolding and aggregation of Jbα-man occurred simultaneously during chemical denaturation. The molten-globule possessed slightly higher hydrodynamic radius, perturbance in the structure up to 60 °C and stability of the structure up to 80 °C unlike the native Jack Bean α-mannosidase. The modes of chemical and thermal denaturation of the native protein were different. The solute quenching parameters confirmed the altered confirmation of the intermediate. Taken together, our results constitute one of the early reports of formation of GdnHCl induced molten globule in a class II α-mannosidase.

摘要

蛋白质的部分有序状态(如熔融球蛋白状态)在细胞过程中的相关性开始被理解。我们利用内源荧光、溶质猝灭、疏水性染料结合、分子筛层析和圆二色性(CD)光谱法,研究了来自刀豆(Canavalia ensiformis)(刀豆α-甘露糖苷酶(Jack Bean))的多聚体和高分子量 II 类α-甘露糖苷酶(Jbα-man)在盐酸胍(GdnHCl)存在下的构象转变。在展开过程中获得的蛋白光谱的分解分析表明,逐步出现 S、I、II 和 III trp 类。参数 A 和光谱质心显示蛋白的多态展开,相图分析显示在约 1 M GdnHCl 附近形成 Jbα-man 的中间产物。该中间产物表现出紧凑的二级结构和扭曲的三级结构,表面暴露疏水性氨基酸,表明其具有熔融球蛋白的性质。在化学变性过程中,Jbα-man 发生解离、部分展开和聚集。与天然刀豆α-甘露糖苷酶不同,熔融球蛋白具有稍高的流体力学半径、60°C 时结构的微扰以及 80°C 时结构的稳定性。天然蛋白的化学和热变性模式不同。溶质猝灭参数证实了中间产物构象的改变。总之,我们的结果构成了 II 类α-甘露糖苷酶中形成 GdnHCl 诱导的熔融球蛋白的早期报告之一。

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