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From the Cover: Millisecond time scale conformational flexibility in a hyperthermophile protein at ambient temperature

机译:从封面开始:环境温度下超嗜热菌蛋白的毫秒级时标构象灵活性

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摘要

Rubredoxin from the hyperthermophile Pyrococcus furiosus is the most thermostable protein characterized to date with an estimated global unfolding rate of 10−6 s−1 at 100°C. In marked contrast to these slow global dynamics, hydrogen exchange experiments here demonstrate that conformational opening for solvent access occurs in the ≈millisecond time frame or faster at 28°C for all amide positions. Under these conditions all backbone amides with exchange protection factors between 104 and 106, for which EX2 exchange kinetics were directly verified, have exchange activation energy values within 2–3 kcal/mol of that observed for unstructured peptides. The conformational flexibility of this protein is thus sufficient for water and base catalyst access to the exchanging amide with quite limited structural disruption. The common hypothesis that enhanced conformational rigidity in the folded native state underlies the increased thermal stability of hyperthermophile proteins is not supported by these data.
机译:来自嗜热嗜热球菌的红氧还蛋白是迄今为止最热稳定的蛋白质,其特征是在100°C时估计的整体展开率为10 -6 s -1 。与这些缓慢的整体动力学形成鲜明对比的是,此处的氢交换实验表明,对于所有酰胺位置而言,在约毫秒时间范围内或在28°C下,溶剂进入的构象开放发生时间都在毫秒级左右。在这些条件下,所有交换保护系数在10 4 和10 6 之间的骨架酰胺(直接验证了EX2交换动力学)的交换活化能值在2-3 kcal之内/ mol的非结构化肽。因此,该蛋白质的构象柔韧性足以使水和碱催化剂以相当有限的结构破坏方式进入交换酰胺。这些数据不支持在折叠的天然状态下构象刚度增强的基本假设,即高温嗜热菌蛋白的热稳定性提高。

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