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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Folding and unfolding thermodynamics of the TC10b Trp-cage miniprotein
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Folding and unfolding thermodynamics of the TC10b Trp-cage miniprotein

机译:TC10b Trp笼小蛋白的折叠和展开热力学

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摘要

We examine the folding-unfolding of a variant of the Trp-cage, known as TC10b, and compare structural stability, dynamics, and thermodynamics with that of the TC5b variant, using replica exchange molecular dynamics (REMD). The TC10b variant was designed to have larger helical stability by the substitution of amino acids with greater alpha helical propensities in the N-terminal region. Experiments have shown TC10b to possess larger overall stability than TC5b. Simulations starting from unbiased, unfolded initial conditions are run for 1 μs per replica. The calculations show a higher melting temperature for TC10b than TC5b, and suggest a more ordered folded structure through the elimination of a substate found in the folded ensemble of TC5b. We model the difference in Gibbs free energy, △G(P,T), of folding using the bootstrap statistical method, which is used to calculate uncertainties associated with the thermodynamic parameters for both variants of the Trp-cage. We find that while the shape of the area for which the protein is stability folded is elliptical for TC5b, there is a degree of uncertainty associated with that of TC10b, with one model suggesting elliptical and another suggesting hyperbolic. This model suggests that at high pressures, TC5b can experience pressure denaturation, but TC10b may not.
机译:我们研究了Trp-cage变体TC10b的折叠-折叠,并使用副本交换分子动力学(REMD)比较了TC5b变体的结构稳定性,动力学和热力学。 TC10b变体设计为通过在N端区域中以更大的α螺旋倾向取代氨基酸来具有更大的螺旋稳定性。实验表明,TC10b具有比TC5b更大的整体稳定性。从无偏差,展开的初始条件开始的仿真每个副本运行1μs。计算结果表明,TC10b的熔化温度高于TC5b,并且通过消除TC5b折叠集合中的亚态,提出了更有序的折叠结构。我们使用自举统计方法对吉布斯自由能的差异△G(P,T)进行建模,该方法用于计算Trp笼两个变体的热力学参数相关的不确定性。我们发现,对于TC5b,虽然蛋白质被稳定折叠的区域的形状是椭圆形的,但与TC10b的形状存在一定程度的不确定性,其中一个模型建议为椭圆形,而另一个模型建议为双曲线。该模型表明,在高压下,TC5b会经历压力变性,但TC10b可能不会。

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