首页> 外文期刊>Proteins: Structure, Function, and Genetics >Folding-unfolding of goat alpha-lactalbumin studied by stopped-flow circular dichroism and molecular dynamics simulations.
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Folding-unfolding of goat alpha-lactalbumin studied by stopped-flow circular dichroism and molecular dynamics simulations.

机译:通过停止流圆二色性和分子动力学模拟研究了山羊α-乳白蛋白的折叠-展开。

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摘要

Folding reaction of goat alpha-lactalbumin has been studied by stopped-flow circular dichroism and molecular dynamics simulations. The effects of four single mutations and a double mutation on the stability of the protein under a native condition were studied. The mutations were introduced into residues located at a hydrophobic core in the alpha-domain of the molecule. Here we show that an amino acid substitution (T29I) increases the native-state stability of goat alpha-lactalbumin against the guanidine hydrochloride-induced unfolding by 3.5 kcal/mol. Kinetic refolding and unfolding of wild-type and mutant goat alpha-lactalbumin measured by stopped-flow circular dichroism showed that the local structure around the Thr29 side chain was not constructed in the transition state of the folding reaction. To characterize the local structural change around the Thr29 side chain to an atomic level of resolution, we performed high-temperature (at 400 K and 600 K) molecular dynamics simulations and studied the structural change at an initial stage of unfolding observed in the simulation trajectories. The Thr29 portion of the molecule experienced structural disruption accompanied with the loss of inter-residue contacts and with the water molecule penetration in the 400-K simulation as well as in four of the six 600-K simulations. Disruption of the N-terminal portion was also observed and was consistent with the results of kinetic refolding/unfolding experiments shown in our previous report.
机译:通过停止流圆二色性和分子动力学模拟研究了山羊α-乳白蛋白的折叠反应。研究了四种单突变和双突变对天然条件下蛋白质稳定性的影响。将突变引入位于分子α结构域的疏水核心处的残基中。在这里,我们显示氨基酸取代(T29I)可提高山羊α-乳清蛋白对抗盐酸胍诱导的展开的自然状态稳定性,为3.5 kcal / mol。通过停止流圆二色性测定的野生型和突变型山羊α-乳白蛋白的动力学重折叠和解折叠显示,在折叠反应的过渡状态下,未构建Thr29侧链周围的局部结构。为了表征Thr29侧链周围的局部结构变化达到原子级的分辨率,我们进行了高温(400 K和600 K)分子动力学模拟,并研究了在模拟轨迹中观察到的展开初期的结构变化。在400-K模拟以及六个600-K模拟中的四个模拟中,分子的Thr29部分经历了结构破坏,伴随着残基间接触的丧失以及水分子的渗透。还观察到N末端部分的破坏,这与我们先前报告中显示的动力学重新折叠/展开实验的结果一致。

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