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通过核磁共振氢谱研究胸腺素-β、稳定素C末端结构域(CTD)及其1:1复合物水溶液中的分子运动和相互作用。

Molecular Motions and Interactions in Aqueous Solutions of Thymosin-β , Stabilin C-Terminal Domain (CTD) and Their 1:1 Complex Studied by H NMR Spectroscopy.

作者信息

Bokor Mónika, Tantos Ágnes, Mészáros Attila, Jenei Bence, Haminda Réka, Tompa Péter, Tompa Kálmán

机构信息

Experimental Solid State Research, Wigner Research Centre for Physics of the Hungarian Academy of Sciences, Konkoly-Thege út 29-33. 1121, Budapest, Hungary.

Institute of Enzymology, Research Centre for Natural Sciences, Hungarian Academy of Sciences, Magyar tudósok körútja 2, 1117, Budapest, Hungary.

出版信息

Chemphyschem. 2018 Apr 5;19(7):848-856. doi: 10.1002/cphc.201701187. Epub 2018 Feb 16.

Abstract

Wide-line H NMR measurements were extended and all results were reinterpreted in a new thermodynamics-based approach to study aqueous solutions of thymosin-β (Tβ ), stabilin C-terminal domain (CTD) and their 1:1 complex. The energy distributions of the potential barriers, which control motion of protein-bound water molecules, were determined. Heterogeneous and homogeneous regions were found at the protein-water interface. The measure of heterogeneity gives a quantitative value for the portion of disordered parts in the protein. Ordered structural elements were found extending up to 20 % of the whole proteins. About 40 % of the binding sites of free Tβ become involved in bonds holding the complex together. The complex has the most heterogeneous solvent accessible surface (SAS) in terms of protein-water interactions. The complex is more disordered than Tβ or stabilin CTD. The greater SAS area of the complex is interpreted as a clear sign of its open structure.

摘要

扩展了宽线氢核磁共振测量,并采用一种基于新热力学的方法重新解释了所有结果,以研究胸腺素-β(Tβ)、稳定素C末端结构域(CTD)及其1:1复合物的水溶液。确定了控制与蛋白质结合的水分子运动的势垒的能量分布。在蛋白质-水界面发现了异质和均质区域。异质性的度量给出了蛋白质中无序部分比例的定量值。发现有序结构元件延伸至整个蛋白质的20%。游离Tβ约40%的结合位点参与了将复合物结合在一起的键。就蛋白质-水相互作用而言,该复合物具有最不均匀的溶剂可及表面(SAS)。该复合物比Tβ或稳定素CTD更无序。复合物更大的SAS面积被解释为其开放结构的明显标志。

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