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与一种小β蛋白热变性相关的动态转变。

Dynamic transition associated with the thermal denaturation of a small Beta protein.

作者信息

Russo Daniela, Pérez Javier, Zanotti Jean-Marc, Desmadril Michel, Durand Dominique

机构信息

Laboratoire Léon Brillouin, CE Saclay, 91191 Gif-sur-Yvette Cédex, France.

出版信息

Biophys J. 2002 Nov;83(5):2792-800. doi: 10.1016/S0006-3495(02)75288-0.

Abstract

We studied the temperature dependence of the picosecond internal dynamics of an all-beta protein, neocarzinostatin, by incoherent quasielastic neutron scattering. Measurements were made between 20 degrees C and 71 degrees C in heavy water solution. At 20 degrees C, only 33% of the nonexchanged hydrogen atoms show detectable dynamics, a number very close to the fraction of protons involved in the side chains of random coil structures, therefore suggesting a rigid structure in which the only detectable diffusive movements are those involving the side chains of random coil structures. At 61.8 degrees C, although the protein structure is still native, slight dynamic changes are detected that could reflect enhanced backbone and beta-sheet side-chain motions at this higher temperature. Conversely, all internal dynamics parameters (amplitude of diffusive motions, fraction of immobile scatterers, mean-squared vibration amplitude) rapidly change during heat-induced unfolding, indicating a major loss of rigidity of the beta-sandwich structure. The number of protons with diffusive motion increases markedly, whereas the volume occupied by the diffusive motion of protons is reduced. At the half-transition temperature (T = 71 degrees C) most of backbone and beta-sheet side-chain hydrogen atoms are involved in picosecond dynamics.

摘要

我们通过非相干准弹性中子散射研究了全β蛋白新制癌菌素皮秒级内部动力学的温度依赖性。在重水溶液中于20℃至71℃之间进行了测量。在20℃时,只有33%未交换的氢原子表现出可检测到的动力学,这一数值与参与无规卷曲结构侧链的质子比例非常接近,因此表明存在一种刚性结构,其中唯一可检测到的扩散运动是那些涉及无规卷曲结构侧链的运动。在61.8℃时,尽管蛋白质结构仍然是天然的,但检测到了轻微的动态变化,这可能反映了在此较高温度下主链和β折叠侧链运动的增强。相反,在热诱导的解折叠过程中,所有内部动力学参数(扩散运动的幅度、固定散射体的比例、均方振动幅度)迅速变化,表明β三明治结构的刚性大幅丧失。具有扩散运动的质子数量显著增加,而质子扩散运动所占据的体积减小。在半转变温度(T = 71℃)时,大部分主链和β折叠侧链氢原子参与皮秒级动力学。

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