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Studies on the structure and conformational flexibility of secondary structures in amyloid beta - A quantum chemical study

机译:淀粉样蛋白β - 量子化学研究中二次结构结构和构象灵活性研究

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摘要

Density functional theory (DFT) calculations are performed to study the conformational flexibility of secondary structures in amyloid beta (A beta) polypeptide. In DFT, M06-2X/6-31+G(d, p) method is used to optimize the secondary structures of 2LFM and 2BEG in gas phase and in solution phase. Our calculations show that the secondary structures are energetically more stable in solution phase than in gas phase. This is due to the presence of strong solvent interaction with the secondary structures considered in this study. Among the backbone phi and psi dihedral angles, psi varies significantly in sheet structure. This is due to the absence of intermolecular hydrogen bond (H-bond) interactions in sheets considered in this study. Our calculations show that the conformational transition of helix/coil to sheet or vice-versa is due to the floppiness of the amino acid residues. This is observed from the Ramachandran map of the studied secondary structures. Further, it is noted that the intramolecular H-bond interactions play a significant role in the conformational transition of secondary structures of A beta.
机译:进行密度函数理论(DFT)计算以研究淀粉样蛋白β(β)多肽中的二次结构的构象灵活性。在DFT中,M06-2X / 6-31 + G(D,P)方法用于优化在气相和溶液相中的2LFM和2BEG的二次结构。我们的计算表明,二级结构在溶液相中能量更稳定于气相。这是由于存在强烈的溶剂相互作用与本研究中考虑的二级结构。在骨干PHI和PSI二面角中,PSI在片状结构中变化显着。这是由于本研究中考虑的片材中没有分子间氢键(H键)相互作用。我们的计算表明,螺旋/线圈与片材的构象过渡或反之亦然是由于氨基酸残基的凹凸。从研究的二级结构的Ramachandran地图观察到这一点。此外,应注意,分子内H键相互作用在β的二次结构的构象转变中发挥着重要作用。

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