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首页> 外文期刊>RSC Advances >Ammonium based stabilizers effectively counteract urea-induced denaturation in a small protein: insights from molecular dynamics simulations
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Ammonium based stabilizers effectively counteract urea-induced denaturation in a small protein: insights from molecular dynamics simulations

机译:铵基稳定剂可有效抵消小蛋白中尿素引起的变性:分子动力学模拟的见解

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Room temperature ionic liquids (IL) and deep eutectic solvents (DES) are known to aid the conformational stability and activity of proteins and enzymes in aqueous solutions. They are popular alternatives to harsh organic protecting osmolytes offsetting the thermal/chemical denaturation of proteins due to their greener attributes and low costs. In this paper, using extensive molecular dynamics (MD) simulations we show that a small helix–rich protein, chicken villin headpiece subdomain (HP-36), is rendered stable by an IL, triethylammonium acetate (TEAA) in aqueous solutions containing very high concentrations of urea (8 M). For comparison, the protein is also simulated in a deep eutectic mixture composed of 4 M choline chloride (ChCl) and 8 M urea under identical simulation conditions. Our simulations clearly show that a sharp increase in the relative proportion of TEAA (from 1?:?5 to 1?:?2 with respect to the denaturant urea) does not have a pronounced structure-enhancing effect on the protein. In contrast, for ChCl to function as an efficient protein stabilizer against the harsh action of urea, deep eutectic conditions are mandatory. To the best of our knowledge, this is the first study investigating the comparative aspects of the microscopic properties of a protein in an IL and a DES having similar ammonium-based structural frameworks.
机译:室温离子液体(IL)和深共熔溶剂(DES)有助于水溶液中蛋白质和酶的构象稳定性和活性。由于它们具有更绿色的特性和较低的成本,它们是刺激性有机保护渗透剂的替代品,可抵消蛋白质的热/化学变性。在本文中,使用广泛的分子动力学(MD)模拟,我们显示了IL乙酸三乙铵(TEAA)在含有非常高浓度的水溶液中使富含螺旋的小蛋白鸡villin头域(HP-36)变得稳定。尿素浓度(8 M)。为了进行比较,还可以在相同的模拟条件下,在由4 M氯化胆碱(ChCl)和8 M尿素组成的深共晶混合物中模拟蛋白质。我们的模拟清楚地表明,TEAA的相对比例的急剧增加(相对于变性尿素,从1?:?5增加到1?:?2)对蛋白质没有明显的结构增强作用。相反,要使ChCl起到有效的蛋白质稳定剂的作用,以抵抗尿素的苛刻作用,则必须具有深共晶条件。据我们所知,这是首次研究具有相似的基于铵的结构框架的IL和DES中蛋白质微观特性的比较方面。

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