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首页> 外文期刊>Journal of land use science >Ligand field molecular dynamics simulation of Pt(II)-phenanthroline binding to N-terminal fragment of amyloid-beta peptide
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Ligand field molecular dynamics simulation of Pt(II)-phenanthroline binding to N-terminal fragment of amyloid-beta peptide

机译:Pt(ii) - 苯蒽醌与淀粉样蛋白β肽N-末端片段结合的pt(ii)分子分子动力学模拟

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摘要

We report microsecond timescale molecular dynamics simulation of the complex formed between Pt(II)-phenanthroline and the 16 N-terminal residues of the A beta peptide that is implicated in the onset of Alzheimer's disease, along with equivalent simulations of the metal-free peptide. Simulations from a variety of starting points reach equilibrium within 100 ns, as judged by root mean square deviation and radius of gyration. Platinum-bound peptides deviate rather more from starting points, and adopt structures with larger radius of gyration, than their metal-free counterparts. Residues bound directly to Pt show smaller fluctuation, but others actually move more in the Pt-bound peptide. Hydrogen bonding within the peptide is disrupted by binding of Pt, whereas the presence of salt-bridges are enhanced.
机译:我们报告了Pt(ii)-phenanthroline和β肽的16 n末端残基在阿尔茨海默病的发作中涉及的β(II) - 苯蒽葡萄碱和16 n末端残基的复合物的微倍数时间段分子模拟,以及无金属肽的等同模拟 。 从各种起点的仿真达到100ns内的平衡,如通过均方根偏差和啮合半径判断。 铂结束的肽偏离从起点而偏离,并采用具有较大旋转半径的结构,而不是无金属对应物。 将直接与PT结合的残基显示出较小的波动,但其他物实际上在PT结合的肽中移动更多。 通过PT的结合破坏肽内的氢键合,而盐桥的存在增强。

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