Department of Experimental Solid State Physics Wigner Research Centre, Konkoly-Thege út 29-33., 1121, Budapest, Hungary.
Research Group of Intrinsically Disordered Proteins, Institute of Enzymology, Research Centre for Natural Sciences, Magyar tudósok körútja 2, 1117, Budapest, Hungary.
Chemphyschem. 2020 Jul 2;21(13):1420-1428. doi: 10.1002/cphc.202000264. Epub 2020 Jun 8.
Wide-line H NMR measurements were extended and all results were interpreted in a thermodynamics-based new approach on aqueous solutions of thymosin-β (Tβ ), stabilin cytoplasmic domain (CTD), and their 1 : 1 complex. Energy distributions of potential barriers controlling the motion of protein-bound water molecules were determined. Heterogeneous and homogeneous regions were found in the protein-water interface. The measure of heterogeneity of this interface gives quantitative value for the portion of disordered parts in the protein. Ordered structural elements were found extending up to ∼20 % of the individual whole proteins. About 40 % of the binding sites of free Tβ get 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.
宽线 H NMR 测量得以扩展,所有结果均基于热力学新方法在胸苷-β(Tβ)、稳定素胞质结构域(CTD)及其 1:1 复合物的水溶液中得到解释。控制蛋白结合水分子运动的势垒能分布被确定。在蛋白-水界面发现了非均匀和均匀区域。该界面的非均匀性测量为蛋白无序部分的定量值。有序结构元素在个体全蛋白中延伸至约 20%。自由 Tβ 的约 40%的结合位点参与将复合物结合在一起的键。就蛋白-水相互作用而言,复合物具有最不均匀的溶剂可及表面(SAS)。复合物比 Tβ 或稳定素 CTD 更无序。复合物具有更大的 SAS 面积,这被解释为其开放式结构的明显标志。