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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Replica exchange simulations of transient encounter complexes in protein-protein association
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Replica exchange simulations of transient encounter complexes in protein-protein association

机译:蛋白质-蛋白质缔合中瞬时相遇复合物的复制交换模拟

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Recent paramagnetic relaxation enhancement (PRE) studies on several weakly interacting protein complexes have unequivocally demonstrated the existence of transient encounter complexes. Here, we present a computational method to study protein-protein binding by creating equilibrium ensembles that include both specific and nonspecific protein complexes. In a joint analysis of simulation and experiment we explore the physical nature and underlying physicochemical characteristics of encounter complexes involving three protein-protein interactions of the bacterial phosphotransferase system. Replica exchange Monte Carlo simulations using a coarse-grained energy function recover the structures of the specific complexes and produce binding affinities in good agreement with experiment. Together with the specific complex, a relatively small number of distinct nonspecific complexes largely accounts for the measured PRE data. The combined relative population of the latter is less than ~10%. The binding interfaces of the specific and nonspecific complexes differ primarily in size but exhibit similar amino acid compositions. We find that the overall funnel-shaped energy landscape of complex formation is dominated by the specific complex, a small number of structured nonspecific complexes, and a diffuse cloud of loosely bound complexes connecting the specific and nonspecific binding sites with each other and the unbound state. Nonspecific complexes may not only accelerate the binding kinetics by enhancing the rate of success of random diffusional encounters but also play a role in protein function as alternative binding modes.
机译:最近对几种弱相互作用蛋白复合物的顺磁弛豫增强(PRE)研究已明确证明了瞬时相遇复合物的存在。在这里,我们提出了一种计算方法,通过创建包括特定蛋白和非特异性蛋白复合物的平衡体来研究蛋白质与蛋白质的结合。在模拟和实验的联合分析中,我们探索了涉及细菌磷酸转移酶系统的三种蛋白质-蛋白质相互作用的复合物的物理性质和潜在的理化特性。使用粗糙粒度能量函数的仿品交换蒙特卡洛模拟恢复了特定配合物的结构,并产生了与实验吻合的结合亲和力。与特定的配合物一起,相对少量的不同的非特异性配合物在很大程度上解释了所测得的PRE数据。后者的相对总人口少于〜10%。特异性和非特异性复合物的结合界面主要在大小上不同,但是表现出相似的氨基酸组成。我们发现,复合物形成的整个漏斗形能量格局主要由特定的复合物,少量结构化的非特定复合物以及散布的松散结合的复合物云组成,这些散布的结合复合物将特定的和非特定的结合位点彼此连接并处于未结合状态。非特异性复合物不仅可以通过提高随机扩散相遇的成功率来加速结合动力学,而且还可以作为替代结合方式在蛋白质功能中发挥作用。

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