Rezaei-Ghaleh Nasrollah, Amininasab Mehriar, Nemat-Gorgani Mohsen
Institute of Biochemistry and Biophysics, Department of Cell and Molecular Biology, Faculty of Science, University of Tehran, Tehran, Iran.
Biophys J. 2008 Nov 1;95(9):4139-47. doi: 10.1529/biophysj.108.132407. Epub 2008 Jul 25.
Amyloid nanofibril formation appears to be a generic property of polypeptide chains. alpha-Chymotrypsin (aCT) was recently driven toward amyloid-like aggregation by the addition of trifluoroethanol (TFE) at intermediate concentrations. In this study we employed a molecular dynamics simulation to investigate the early events in TFE-induced conformational changes of aCT that precede amyloid formation, and compared the results of the simulation with previous experiments. TFE molecules were found to rapidly replace the water molecules closely associated with the protein surface. The gyration radius, together with total and hydrophobic solvent-accessible surface areas of aCT, was significantly increased. In accord with the experimental observations, the extended beta-conformation of backbone was increased. The secondary structural elements of aCT in water and TFE/water mixture showed a reasonable fit, whereas significant deviations were observed for several loops. These alterations originated largely from main-chain rotations at glycine residues. The catalytic active site and S1 binding pocket of the enzyme were also distorted in the TFE/water mixture. The obtained results are suggested to provide more insights into the conformational properties of the amyloid aggregation-prone protein species. Possible mechanisms of TFE-induced alterations in the conformation and dynamics of the protein structure are also discussed.
淀粉样纳米纤维的形成似乎是多肽链的一种普遍特性。最近,通过添加中等浓度的三氟乙醇(TFE),α-胰凝乳蛋白酶(aCT)被诱导形成类似淀粉样的聚集体。在本研究中,我们采用分子动力学模拟来研究在淀粉样形成之前TFE诱导的aCT构象变化的早期事件,并将模拟结果与先前的实验进行比较。发现TFE分子能迅速取代与蛋白质表面紧密结合的水分子。aCT的回转半径以及总溶剂可及表面积和疏水溶剂可及表面积均显著增加。与实验观察结果一致,主链的伸展β构象增加。aCT在水和TFE/水混合物中的二级结构元件显示出合理的拟合,然而,几个环存在显著偏差。这些改变主要源于甘氨酸残基处的主链旋转。在TFE/水混合物中,该酶的催化活性位点和S1结合口袋也发生了扭曲。研究结果有助于更深入了解易于形成淀粉样聚集体的蛋白质的构象特性。还讨论了TFE诱导蛋白质结构构象和动力学变化的可能机制。