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Pressure-jump small-angle x-ray scattering detected kinetics of staphylococcal nuclease folding.

机译:跳压小角X射线散射检测到葡萄球菌核酸酶折叠的动力学。

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摘要

The kinetics of chain disruption and collapse of staphylococcal nuclease after positive or negative pressure jumps was monitored by real-time small-angle x-ray scattering under pressure. We used this method to probe the overall conformation of the protein by measuring its radius of gyration and pair-distance-distribution function p(r) which are sensitive to the spatial extent and shape of the particle. At all pressures and temperatures tested, the relaxation profiles were well described by a single exponential function. No fast collapse was observed, indicating that the rate limiting step for chain collapse is the same as that for secondary and tertiary structure formation. Whereas refolding at low pressures occurred in a few seconds, at high pressures the relaxation was quite slow, approximately 1 h, due to a large positive activation volume for the rate-limiting step for chain collapse. A large increase in the system volume upon folding implies significant dehydration of the transition state and a high degree of similarity in terms of the packing density between the native and transition states in this system. This study of the time-dependence of the tertiary structure in pressure-induced folding/unfolding reactions demonstrates that novel information about the nature of protein folding transitions and transition states can be obtained from a combination of small-angle x-ray scattering using high intensity synchrotron radiation with the high pressure perturbation technique.
机译:正负压力跳跃后,链球破坏和葡萄球菌核酸酶崩溃的动力学通过在压力下的实时小角度X射线散射进行监测。我们使用这种方法通过测量蛋白质的旋转半径和对粒子的空间范围和形状敏感的成对距离分布函数p(r)来探测蛋白质的整体构象。在所测试的所有压力和温度下,松弛分布都可以通过单个指数函数很好地描述。没有观察到快速塌陷,表明链塌陷的速率限制步骤与二级和三级结构形成的速率限制步骤相同。低压在几秒钟内发生重折叠,而在高压下,松弛非常缓慢,大约1小时,这是由于链断裂的限速步骤的正活化体积较大。折叠时系统体积的大增加意味着过渡态的严重脱水,以及该系统中原始状态和过渡态之间的堆积密度方面的高度相似性。对三元结构在压力诱导的折叠/展开反应中的时间依赖性的研究表明,有关蛋白质折叠过渡和过渡状态性质的新信息可以通过使用高强度的小角度X射线散射组合获得高压微扰技术的同步辐射。

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