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Time-resolved dynamic light scattering as a method to monitor compaction during protein folding

机译:时间分辨动态光散射作为监测蛋白质折叠过程中压紧度的方法

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The mechanisms and the dynamics of protein folding are subject of a still increasing number of theoretical and experimental studies. While spectroscopic methods are already used for many years to measure the folding rates and to monitor the formation of secondary and tertiary structure, kinetic measurements of the compactness are only beginning to emerge. Time-resolved dynamic light scattering (DLS) is a useful tool to follow the compaction during protein folding by measuring the hydrodynamic Stokes radius R-S. Additionally changes in the state of association can be detected by simultaneous measurements of the scattering intensity. The usefulness of different techniques for time-resolved DLS measurements and the general limits for kinetic DLS experiments are discussed first. Then we describe the adaptation of a stopped-flow system (SFM-3) to a DLS apparatus, the particular data acquisition schemes, and the experimentally attainable limits. The feasibility of stopped-flow DLS is demonstrated by the results of folding investigations with ribonuclease A, phosphoglycerate kinase, and bovine alpha -lactalbumin. Refolding was initiated by denaturant dilution jumps, which were repeated up to 100 times in order to obtain a reasonable signal-to-noise ratio. Kinetic DLS experiments can be performed fairly with a time resolution of one second. The time resolution of 100ms is probably the attainable limit. The capabilities of time-resolved DLS and time-resolved small-angle X-ray scattering are compared. [References: 30]
机译:蛋白质折叠的机制和动力学是仍在不断增加的理论和实验研究的主题。尽管光谱方法已经被用于测量折叠率和监测二级和三级结构的形成,但是紧凑性的动力学测量才刚刚开始出现。时间分辨动态光散射(DLS)是一种有用的工具,可通过测量流体动力学斯托克斯半径R-S来跟踪蛋白质折叠过程中的压实。另外,可以通过同时测量散射强度来检测缔合状态的变化。首先讨论了时间分辨DLS测量的不同技术的实用性以及动力学DLS实验的一般限制。然后,我们描述了DLS设备的停流系统(SFM-3)的适应性,特定的数据采集方案以及实验上可获得的限制。通过核糖核酸酶A,磷酸甘油酸激酶和牛α-乳清蛋白的折叠研究结果证明了停流DLS的可行性。通过变性剂稀释跃迁开始重折叠,将其重复进行多达100次以获取合理的信噪比。动力学DLS实验可以公平地执行,时间分辨率为一秒。 100ms的时间分辨率可能是可以达到的极限。比较了时间分辨DLS和时间分辨小角度X射线散射的功能。 [参考:30]

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