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蛋白质构象在平衡时的分布形状是什么?

What is the shape of the distribution of protein conformations at equilibrium?

机构信息

a CCMAR and Physics, FCT , Universidade do Algarve , Campus de Gambelas, 8005-139 Faro , Portugal.

出版信息

J Biomol Struct Dyn. 2015;33(7):1539-46. doi: 10.1080/07391102.2014.966148. Epub 2014 Oct 10.

Abstract

According to the thermodynamic hypothesis, the native state of proteins is that in which the free energy of the system is at its lowest, so that at normal temperature and pressure, proteins evolve to that state. We selected four proteins representative of each of the four classes, and for each protein make four simulations, one starting from the native structure and the other three starting from the structure obtained by threading the sequence of one protein onto the native backbone fold of the other three proteins. Because of their large conformational distances with respect to the native structure, the three alternative initial structures cannot be considered as local minima within the native ensemble of the corresponding protein. As expected, the initial native states are preserved in the .5 μs simulations performed here and validate the simulations. On the other hand, when the initial state is not native, an analysis of the trajectories does not reveal any evolution towards the native state, during that time. These results indicate that the distribution of protein conformations is multipeak shaped, so that apart from the peak corresponding to the native state, there are other peaks associated with average structures that are very different from the native and that can last as long as the native state.

摘要

根据热力学假说,蛋白质的天然状态是系统自由能最低的状态,因此在正常温度和压力下,蛋白质会进化到这种状态。我们选择了四个具有代表性的蛋白质,每个蛋白质进行了四次模拟,一次从天然结构开始,另外三次从将一个蛋白质的序列穿入其他三个蛋白质的天然骨架折叠得到的结构开始。由于它们与天然结构的构象距离很大,因此这三种替代的初始结构不能被视为相应蛋白质天然集合中的局部最小值。不出所料,在这里进行的.5 μs 模拟中保留了初始的天然状态,并验证了模拟。另一方面,当初始状态不是天然状态时,对轨迹的分析并没有显示出在那段时间内向天然状态的任何演变。这些结果表明蛋白质构象的分布是多峰形的,因此除了对应天然状态的峰之外,还有其他与非常不同于天然状态的平均结构相关的峰,并且可以持续与天然状态一样长的时间。

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