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溶液中折叠良好和天然无序蛋白质的动力学:飞行时间中子散射研究

Dynamics of well-folded and natively disordered proteins in solution: a time-of-flight neutron scattering study.

作者信息

Gaspar A M, Appavou M-S, Busch S, Unruh T, Doster W

机构信息

E13, Physik Department, Technische Universität München, Lichtenberg str 1, 85747 Garching bei München, Germany.

出版信息

Eur Biophys J. 2008 Jun;37(5):573-82. doi: 10.1007/s00249-008-0266-3. Epub 2008 Jan 29.

Abstract

Casein proteins belong to the class of natively disordered proteins. The existence of disordered biologically active proteins questions the assumption that a well-folded structure is required for function. A hypothesis generally put forward is that the unstructured nature of these proteins results from the functional need of a higher flexibility. This interplay between structure and dynamics was investigated in a series of time-of-flight neutron scattering experiments, performed on casein proteins, as well as on three well-folded proteins with distinct secondary structures, namely, myoglobin (alpha), lysozyme (alpha/beta) and concanavalin A (beta). To illustrate the subtraction of the solvent contribution from the scattering spectra, we used the dynamic susceptibility spectra emphasizing the high frequency part of the spectrum, where the solvent dominates. The quality of the procedure is checked by comparing the corrected spectra to those of the dry and hydrated protein with negligible solvent contamination. Results of spectra analysis reveal differences in motional amplitudes of well-folded proteins, where beta-sheet structures appear to be more rigid than a cluster of alpha-helices. The disordered caseins display the largest conformational displacements. Moreover their global diffusion rates deviate from the expected dependence, suggesting further large-scale conformational motions.

摘要

酪蛋白属于天然无序蛋白质类别。无序生物活性蛋白质的存在对功能需要良好折叠结构这一假设提出了质疑。通常提出的一个假设是,这些蛋白质的无结构性质源于更高灵活性的功能需求。在一系列飞行时间中子散射实验中研究了结构与动力学之间的这种相互作用,这些实验是对酪蛋白以及三种具有不同二级结构的良好折叠蛋白质进行的,即肌红蛋白(α)、溶菌酶(α/β)和伴刀豆球蛋白A(β)。为了说明从散射光谱中减去溶剂贡献,我们使用了强调光谱高频部分的动态磁化率光谱,在该高频部分溶剂占主导。通过将校正后的光谱与干燥和水合蛋白质且溶剂污染可忽略不计的光谱进行比较来检查该程序的质量。光谱分析结果揭示了良好折叠蛋白质运动幅度的差异,其中β-折叠结构似乎比α-螺旋簇更刚性。无序的酪蛋白表现出最大的构象位移。此外,它们的整体扩散速率偏离预期的依赖性,表明存在进一步的大规模构象运动。

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