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Real-Time NMR Monitoring of Protein-Folding Kinetics by a Recycle Flow System for Temperature Jump

机译:通过循环流动系统对温度变化的蛋白质折叠动力学进行实时NMR监测

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摘要

An NMR method was developed that allows for real-time monitoring of reactions (on the order of seconds) induced by a temperature jump. In a recycle flow system, heating and cooling baths were integrated, with the latter inside the NMR probe. A refolding reaction of ribonuclease A was triggered by rapid cooling and monitored by a series of NMR measurements over 12 s. Data were processed by principal component analysis, in which a factor related to the structural change with an exponential rate constant of 0.2-0.7 s~(-1) was successfully separated from factors related to baseline instability and/or noise. Temperature dependency of the rate constant revealed the entropy-driven formation of the transition state of the refolding reaction.
机译:已开发出一种NMR方法,该方法可实时监控由温度跳跃引起的反应(数秒)。在循环流系统中,加热和冷却浴被整合在一起,后者位于NMR探针内部。快速冷却触发核糖核酸酶A的重折叠反应,并在12 s内通过一系列NMR测量进行监测。通过主成分分析对数据进行处理,将与指数变化率常数为0.2-0.7 s〜(-1)的结构变化有关的因素与与基线不稳定和/或噪声有关的因素成功分离出来。速率常数的温度依赖性揭示了熵驱动的重折叠反应过渡态的形成。

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