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MCPath:用于预测可能的别构途径和功能残基的蒙特卡罗路径生成方法。

MCPath: Monte Carlo path generation approach to predict likely allosteric pathways and functional residues.

机构信息

Department of Chemical Engineering and Polymer Research Center, Bogazici University, Bebek, 34342, Istanbul, Turkey.

出版信息

Nucleic Acids Res. 2013 Jul;41(Web Server issue):W249-55. doi: 10.1093/nar/gkt284. Epub 2013 Jun 5.

Abstract

Allosteric mechanism of proteins is essential in biomolecular signaling. An important aspect underlying this mechanism is the communication pathways connecting functional residues. Here, a Monte Carlo (MC) path generation approach is proposed and implemented to define likely allosteric pathways through generating an ensemble of maximum probability paths. The protein structure is considered as a network of amino acid residues, and inter-residue interactions are described by an atomistic potential function. PDZ domain structures are presented as case studies. The analysis for bovine rhodopsin and three myosin structures are also provided as supplementary case studies. The suggested pathways and the residues constituting the pathways are maximally probable and mostly agree with the previous studies. Overall, it is demonstrated that the communication pathways could be multiple and intrinsically disposed, and the MC path generation approach provides an effective tool for the prediction of key residues that mediate the allosteric communication in an ensemble of pathways and functionally plausible residues. The MCPath server is available at http://safir.prc.boun.edu.tr/clbet_server.

摘要

蛋白质的变构机制在生物分子信号中至关重要。该机制的一个重要方面是连接功能残基的通信途径。这里提出并实现了一种蒙特卡罗(MC)路径生成方法,通过生成最大概率路径的集合来定义可能的变构途径。蛋白质结构被视为氨基酸残基的网络,并且残基间的相互作用由原子势函数描述。PDZ 结构域结构被作为案例研究。还提供了牛视紫红质和三种肌球蛋白结构的分析作为补充案例研究。所提出的途径和构成途径的残基是最大可能的,并且与以前的研究大多一致。总体而言,证明了通信途径可以是多样的和内在的,并且 MC 路径生成方法为预测在途径的集合中介导变构通信的关键残基以及功能合理的残基提供了一种有效的工具。MCPath 服务器可在 http://safir.prc.boun.edu.tr/clbet_server 获得。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/040e/3692092/3cd326a070a1/gkt284f1p.jpg

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