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Counteraction of urea-induced protein denaturation by trimethylamine N-oxide: A chemical chaperone at atomic resolution

机译:三甲胺N-氧化物对尿素诱导的蛋白质变性的反作用:原子分辨率下的化学分子伴侣

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摘要

Proteins are very sensitive to their solvent environments. Urea is a common chemical denaturant of proteins, yet some animals contain high concentrations of urea. These animals have evolved an interesting mechanism to counteract the effects of urea by using trimethylamine N-oxide (TMAO). The molecular basis for the ability of TMAO to act as a chemical chaperone remains unknown. Here, we describe molecular dynamics simulations of a small globular protein, chymotrypsin inhibitor 2, in 8 M urea and 4 M TMAO/8 M urea solutions, in addition to other control simulations, to investigate this effect at the atomic level. In 8 M urea, the protein unfolds, and urea acts in both a direct and indirect manner to achieve this effect. In contrast, introduction of 4 M TMAO counteracts the effect of urea and the protein remains well structured. TMAO makes few direct interactions with the protein. Instead, it prevents unfolding of the protein by structuring the solvent. In particular, TMAO orders the solvent and discourages it from competing with intraprotein H bonds and breaking up the hydrophobic core of the protein.
机译:蛋白质对其溶剂环境非常敏感。尿素是蛋白质的常见化学变性剂,但有些动物含有高浓度的尿素。这些动物通过使用三甲胺N-氧化物(TMAO)进化出了一种有趣的机制来抵消尿素的作用。 TMAO充当化学分子伴侣的能力的分子基础仍然未知。在这里,我们描述了一种小球状蛋白,胰凝乳蛋白酶抑制剂2在8 M尿素和4 M TMAO / 8 M尿素溶液中的分子动力学模拟,以及其他对照模拟,以在原子水平上研究这种影响。在8 M尿素中,蛋白质会解折叠,尿素以直接和间接的方式起作用以达到这种效果。相反,引入4 M TMAO抵消了尿素的作用,蛋白质仍然结构良好。 TMAO与蛋白质几乎没有直接相互作用。相反,它通过结构化溶剂来防止蛋白质解折叠。特别是,TMAO命令溶剂并阻止其与蛋白内H键竞争并破坏蛋白的疏水核心。

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