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处于预熔球态的蛋白质的溶剂化动力学

Solvation dynamics of a protein in the pre molten globule state.

作者信息

Samaddar Soma, Mandal Amit Kumar, Mondal Sudip Kumar, Sahu Kalyanasis, Bhattacharyya Kankan, Roy Siddhartha

机构信息

Department of Biophysics, Bose Institute, P 1/12 CIT, Scheme VIIM, Kolkata 700 054, India.

出版信息

J Phys Chem B. 2006 Oct 26;110(42):21210-5. doi: 10.1021/jp064136g.

Abstract

The nature of solvent molecules around proteins in native and different non-native states is crucial for understanding the protein folding problem. We have characterized two compact denatured states of glutaminyl-tRNA synthetase (GlnRS) under equilibrium conditions in the presence of a naturally occurring osmolyte, l-glutamate. The solvation dynamics of the compact denatured states and the fully unfolded state has been studied using a covalently attached probe, acrylodan, near the active site. The solvation dynamics progressively becomes faster as the protein goes from the native to the molten globule to the pre molten globule to the fully unfolded state. Anisotropy decay measurements suggest that the pre-molten-globule intermediate is more flexible than the molten globule although the secondary structure is largely similar. Dynamic light scattering studies reveal that both the compact denatured states are aggregated under the measurement conditions. The implications of solvation dynamics in aggregated compact denatured states have been discussed.

摘要

蛋白质处于天然状态及不同非天然状态时,其周围溶剂分子的性质对于理解蛋白质折叠问题至关重要。我们已经对谷氨酰胺-tRNA合成酶(GlnRS)在天然渗透压剂L-谷氨酸存在下的平衡条件下的两种紧密变性状态进行了表征。使用共价连接在活性位点附近的探针丙烯罗丹明,研究了紧密变性状态和完全展开状态的溶剂化动力学。随着蛋白质从天然状态转变为熔球态、预熔球态再到完全展开状态,溶剂化动力学逐渐加快。各向异性衰减测量表明,尽管二级结构在很大程度上相似,但预熔球态中间体比熔球态更具柔韧性。动态光散射研究表明,在测量条件下,两种紧密变性状态均发生了聚集。文中已讨论了聚集紧密变性状态下溶剂化动力学的影响。

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