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Persistent conformational heterogeneity of triosephosphate isomerase: separation and characterization of conformational isomers in solution.

机译:磷酸三糖异构酶的持久构象异质性:溶液中构象异构体的分离和表征。

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Subunit dissociation of dimeric rabbit muscle triosephosphate isomerase (TIM) by hydrostatic pressure has previously been shown not to follow the expected dependence on protein concentration [Rietveld and Ferreira (1996) Biochemistry 35, 7743-7751]. This anomalous behavior was attributed to persistent conformational heterogeneity (i.e., the coexistence of long-lived conformational isomers) in the ensemble of TIM dimers. Here, we initially show that subunit dissociation/unfolding of TIM by guanidine hydrochloride (GdnHCl) also exhibits an anomalous dependence on protein concentration. Dissociation/unfolding of TIM by GdnHCl was investigated by intrinsic fluorescence and circular dichroism spectroscopies and was found to be a highly cooperative transition in which the tertiary and secondary structures of the protein were concomitantly lost. A procedure based on size-exclusion chromatography in the presence of intermediate (0.6 M) GdnHCl concentrations was developed to isolate two conformational isomers of TIM that exhibit significantly different stabilities and kinetics of unfolding by GdnHCl. Complete unfolding of the two isolated conformers at a high GdnHCl concentration (1.5 M), followed by refolding by removal of the denaturant, completely abolished the differences in their unfolding kinetics. These results indicate that such differences stem from conformational heterogeneity of TIM and are not related to any chemical modification of the protein. Furthermore, they add support to the notion that long-lived conformational isomers of TIM coexist in solution and provide a basis for the interpretation of the persistent heterogeneity of this protein.
机译:先前已证明通过流体静压力使二聚体兔肌肉三磷酸磷酸异构酶(TIM)的亚基解离不遵循对蛋白质浓度的预期依赖性[Rietveld and Ferreira(1996)Biochemistry 35,7743-7751]。这种异常行为归因于TIM二聚体中的持久构象异质性(即长寿命构象异构体的共存)。在这里,我们最初显示,通过盐酸胍(GdnHCl)TIM的亚基解离/解折叠也表现出对蛋白质浓度的异常依赖性。通过内在荧光和圆二色性光谱研究了GdnHCl对TIM的解离/解折叠,发现这是一种高度协作的过渡,其中蛋白质的三级和二级结构随之丢失。开发了一种基于尺寸排阻色谱的方法,在中等浓度(0.6 M)GdnHCl的存在下,可以分离出TIM的两个构象异构体,它们显示出明显不同的稳定性和GdnHCl展开的动力学。在高GdnHCl浓度(1.5 M)下完全分离出两个分离的构象异构体,然后通过除去变性剂进行重折叠,从而完全消除了它们的展开动力学差异。这些结果表明,这种差异源于TIM的构象异质性,与蛋白质的任何化学修饰无关。此外,它们为TIM的长寿构象异构体在溶液中共存的观点提供了支持,并为解释该蛋白的持久异质性提供了基础。

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