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首页> 外文期刊>Journal of Molecular Biology >THE EFFECT OF ENVIRONMENT ON THE STABILITY OF AN INTEGRAL MEMBRANE HELIX - MOLECULAR DYNAMICS SIMULATIONS OF SURFACTANT PROTEIN C IN CHLOROFORM, METHANOL AND WATER
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THE EFFECT OF ENVIRONMENT ON THE STABILITY OF AN INTEGRAL MEMBRANE HELIX - MOLECULAR DYNAMICS SIMULATIONS OF SURFACTANT PROTEIN C IN CHLOROFORM, METHANOL AND WATER

机译:环境对整体膜螺旋的稳定性的影响-表面活性蛋白C在氯仿,甲醇和水中的分子动力学模拟

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摘要

A series of three molecular dynamics simulations at 300 K in explicit solvent environments of chloroform, methanol and water has been performed on the pulmonary surfactant lipoprotein, SP-C, comprising several consecutive valine residues in order to investigate the stability of the alpha-helical conformation. Two additional simulations were performed on truncated SP-C with a five-residue N-terminal deletion at 300 K and 500 K in water, the high temperature run in order to increase the rate of peptide denaturation. Indications of destabilization appear in chloroform during 1 ns while the SP-C alpha-helix is remarkably stable during 1 ns in methanol and water. In particular the polyvalyl part comprising residues Val15 to Val21 remains intact even at elevated temperature, and the valines do not disrupt the alpha-helical conformation. The valyl-rotamer sampling is partly restricted. Unfolding takes place successively along the primary sequence starting from the C-terminal end. Factors affecting polypeptide stability in molecular dynamics simulations are addressed. The intrinsic helix-forming tendency of valine residues and its dependence on the sequence context, and the role of the solvent environment in stabilizing or destabilizing an alpha-helical fold, are discussed. [References: 59]
机译:为了研究α-螺旋构象的稳定性,在含氯表面活性剂脂蛋白SP-C上,在氯仿,甲醇和水的明确溶剂环境中,于300 K下进行了一系列三个分子动力学模拟,该蛋白包含多个连续的缬氨酸残基。 。对截短的SP-C进行了两个额外的模拟,在水中以300 K和500 K进行了5个残基的N末端缺失,高温运行是为了增加肽的变性速率。在1 ns的氯仿中会出现不稳定的迹象,而在甲醇和水中的1 ns内SP-Cα-螺旋则非常稳定。特别地,即使在升高的温度下,包含残基Val15至Val21的聚戊二烯部分也保持完整,并且缬氨酸不破坏α-螺旋构象。缬氨酸-旋转异构体的采样受到部分限制。从C末端开始,沿着一级序列连续发生展开。解决了在分子动力学模拟中影响多肽稳定性的因素。讨论了缬氨酸残基的内在螺旋形成趋势及其对序列背景的依赖性,以及溶剂环境在稳定或破坏α-螺旋折叠中的作用。 [参考:59]

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