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Dissecting the Critical Factors for Thermodynamic Stability of Modular Proteins Using Molecular Modeling Approach

机译:使用分子建模方法剖析模块化蛋白热力学稳定性的关键因素

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摘要

Repeat proteins have recently attracted much attention as alternative scaffolds to immunoglobulin antibodies due to their unique structural and biophysical features. In particular, repeat proteins show high stability against temperature and chaotic agents. Despite many studies, structural features for the stability of repeat proteins remain poorly understood. Here we present an interesting result from in silico analyses pursuing the factors which affect the stability of repeat proteins. Previously developed repebody structure based on variable lymphocytes receptors (VLRs) which consists of leucine-rich repeat (LRR) modules was used as initial structure for the present study. We constructed extra six repebody structures with varying numbers of repeat modules and those structures were used for molecular dynamics simulations. For the structures, the intramolecular interactions including backbone H-bonds, van der Waals energy, and hydrophobicity were investigated and then the radius of gyration, solvent-accessible surface area, ratio of secondary structure, and hydration free energy were also calculated to find out the relationship between the number of LRR modules and stability of the protein. Our results show that the intramolecular interactions lead to more compact structure and smaller surface area of the repebodies, which are critical for the stability of repeat proteins. The other features were also well compatible with the experimental results. Based on our observations, the repebody-5 was proposed as the best structure from the all repebodies in structure optimization process. The present study successfully demonstrated that our computer-based molecular modeling approach can significantly contribute to the experiment-based protein engineering challenge.
机译:重复蛋白由于其独特的结构和生物物理特征,最近作为免疫球蛋白抗体的替代支架引起了广泛关注。特别地,重复蛋白显示出对温度和混沌剂的高度稳定性。尽管进行了许多研究,但对于重复蛋白稳定性的结构特征仍然知之甚少。在这里,我们从计算机分析中提出了一个有趣的结果,该分析是研究影响重复蛋白稳定性的因素。基于可变淋巴细胞受体(VLR)的先前开发的repebody结构,由富含亮氨酸的重复序列(LRR)模块组成,用作本研究的初始结构。我们用不同数量的重复模块构建了额外的六个骨架结构,这些结构用于分子动力学模拟。对于结构,研究了分子内的相互作用,包括主链氢键,范德华能量和疏水性,然后计算了回转半径,溶剂可及表面积,二级结构比率和水合自由能,以求出LRR模块数量与蛋白质稳定性之间的关系。我们的结果表明,分子内相互作用导致重链体的结构更紧凑,表面积更小,这对于重复蛋白的稳定性至关重要。其他功能也与实验结果完全兼容。根据我们的观察,在结构优化过程中,repebody-5被认为是所有repebodies的最佳结构。本研究成功地证明了我们基于计算机的分子建模方法可以极大地促进基于实验的蛋白质工程挑战。

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