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核糖核酸酶A和核糖核酸酶S的动力学:计算与实验研究

Dynamics of ribonuclease A and ribonuclease S: computational and experimental studies.

作者信息

Nadig G, Ratnaparkhi G S, Varadarajan R, Vishveshwara S

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore, India.

出版信息

Protein Sci. 1996 Oct;5(10):2104-14. doi: 10.1002/pro.5560051017.

Abstract

RNase S is a complex consisting of two proteolytic fragments of RNase A: the S peptide (residues 1-20) and S protein (residues 21-124). RNase S and RNase A have very similar X-ray structures and enzymatic activities. Previous experiments have shown increased rates of hydrogen exchange and greater sensitivity to tryptic cleavage for RNase S relative to RNase A. It has therefore been asserted that the RNase S complex is considerably more dynamically flexible than RNase A. In the present study we examine the differences in the dynamics of RNase S and RNase A computationally, by MD simulations, and experimentally, using trypsin cleavage as a probe of dynamics. The fluctuations around the average solution structure during the simulation were analyzed by measuring the RMS deviation in coordinates. No significant differences between RNase S and RNase A dynamics were observed in the simulations. We were able to account for the apparent discrepancy between simulation and experiment by a simple model. According to this model, the experimentally observed differences in dynamics can be quantitatively explained by the small amounts of free S peptide and S protein that are present in equilibrium with the RNase S complex. Thus, folded RNase A and the RNase S complex have identical dynamic behavior, despite the presence of a break in polypeptide chain between residues 20 and 21 in the latter molecule. This is in contrast to what has been widely believed for over 30 years about this important fragment complementation system.

摘要

核糖核酸酶S是一种复合物,由核糖核酸酶A的两个蛋白水解片段组成:S肽(第1 - 20位氨基酸残基)和S蛋白(第21 - 124位氨基酸残基)。核糖核酸酶S和核糖核酸酶A具有非常相似的X射线结构和酶活性。先前的实验表明,相对于核糖核酸酶A,核糖核酸酶S的氢交换速率增加,对胰蛋白酶切割的敏感性更高。因此,有人断言核糖核酸酶S复合物比核糖核酸酶A在动力学上具有更大的灵活性。在本研究中,我们通过分子动力学模拟从计算上研究核糖核酸酶S和核糖核酸酶A动力学的差异,并通过使用胰蛋白酶切割作为动力学探针进行实验研究。通过测量坐标中的均方根偏差来分析模拟过程中平均溶液结构周围的波动。在模拟中未观察到核糖核酸酶S和核糖核酸酶A动力学之间的显著差异。我们能够通过一个简单的模型来解释模拟和实验之间明显的差异。根据这个模型,实验观察到的动力学差异可以通过与核糖核酸酶S复合物处于平衡状态的少量游离S肽和S蛋白来定量解释。因此,折叠的核糖核酸酶A和核糖核酸酶S复合物具有相同的动力学行为,尽管在后者分子中第20和21位氨基酸残基之间存在多肽链断裂。这与30多年来人们对这个重要的片段互补系统的广泛看法形成了对比。

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The action of trypsin on ribonuclease-S.胰蛋白酶对核糖核酸酶-S的作用。
Biochemistry. 1962 Mar;1:295-304. doi: 10.1021/bi00908a017.

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