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首页> 外文期刊>Journal of Molecular Biology >Lack of definable nucleation sites in the rate-limiting transition state of barnase under native conditions.
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Lack of definable nucleation sites in the rate-limiting transition state of barnase under native conditions.

机译:在自然条件下,barnase的限速过渡状态中缺乏可确定的成核位点。

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It has been shown that the burst-phase (submillisecond) intermediate of barnase, if it exists, can be only marginally more stable than the fully unfolded state at pH 6.3 and 25 degrees C. In the study reported here, no stable burst-phase intermediate could be detected, even in the presence of stabilizing salt (0.4 M Na(2)SO(4)). These results suggest that a burst-phase intermediate with even marginal stability does not exist. The absence of such an intermediate in turn suggests the need for re-examination of the rate-limiting transition state (RLTS) under native conditions, which was previously characterized by using a three-state model with a stable intermediate and protein engineering. Surprisingly, mutations throughout the structure of barnase do not significantly affect the folding rate, suggesting a lack of specific favorable interactions among the side-chains in the RLTS. This RLTS is clearly different from that previously characterized under denaturing conditions, indicating that changes take place in the RLTS under native and denaturing conditions. The occurrence of such changes is further supported by the observation that the unfolding rate constants of barnase and its mutants were divergent or convergent as a function of denaturant concentrations. Consistent with changes in the RLTS, a re-analysis of data from native-state hydrogen exchange studies has shown that the logarithm of the unfolding rate constant inflects down under low concentrations of denaturant. Here, we discuss in detail the question of whether changes in the RLTS involve a kinetically silent intermediate that occurs after the initial RLTS.
机译:已经显示,barnase的爆发阶段(亚毫秒级)中间产物(如果存在)只能在pH 6.3和25摄氏度下比完全展开状态稍微稳定一些。在此报告的研究中,没有稳定的爆发阶段即使存在稳定盐(0.4 M Na(2)SO(4)),也可以检测到中间体。这些结果表明,不存在具有甚至边缘稳定性的猝发相中间体。缺少这样的中间体反过来提示需要在天然条件下重新检查限速过渡态(RLTS),其先前的特征是使用具有稳定中间体和蛋白质工程的三态模型。出乎意料的是,整个barnase结构的突变不会显着影响折叠速率,这表明RLTS中侧链之间缺乏特定的有利相互作用。该RLTS明显不同于先前在变性条件下表征的RLTS,这表明RLTS在自然和变性条件下发生了变化。这些变化的发生进一步得到以下观察结果的支持:barnase及其突变体的解折叠速率常数根据变性剂浓度而发散或收敛。与RLTS的变化一致,对原始氢交换研究数据的重新分析表明,在低浓度的变性剂下,展开速率常数的对数会下降。在这里,我们详细讨论RLTS中的变化是否涉及在初始RLTS之后发生的动力学沉默中间体的问题。

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