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pPerturb: A Server for Predicting Long-Distance Energetic Couplings and Mutation-Induced Stability Changes in Proteins via Perturbations

机译:pperturb:用于通过扰动预测长距离能偶联和突变诱导的稳定性变化的服务器

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The strength of intraprotein interactions or contact network is one of the dominant factors determining the thermodynamic stabilities of proteins. The nature and the extent of connectivity of this network also play a role in allosteric signal propagation characteristics upon ligand binding to a protein domain. Here, we develop a server for rapid quantification of the strength of an interaction network by employing an experimentally consistent perturbation approach previously validated against a large data set of 375 mutations in 19 different proteins. The web server can be employed to predict the extent of destabilization of proteins arising from mutations in the protein interior in experimentally relevant units. Moreover, coupling distances—a measure of the extent of percolation on perturbation—and overall perturbation magnitudes are predicted in a residue-specific manner, enabling a first look at the distribution of energetic couplings in a protein or its changes upon ligand binding. We show specific examples of how the server can be employed to probe for the distribution of local stabilities in a protein, to examine changes in side chain orientations or packing before and after ligand binding, and to predict changes in stabilities of proteins upon mutations of buried residues. The web server is freely available at http://pbl.biotech.iitm.ac.in/pPerturb and supports recent versions of all major browsers.
机译:脑内蛋白相互作用或联系网络的强度是确定蛋白质热力学稳定性的主要因素之一。该网络的性质和连接性的性质以及在与蛋白质结构域的配体结合时在变构信号传播特性中起作用。这里,我们通过采用先前验证的19个不同蛋白质中的375个突变的大数据集的实验一致的扰动方法,开发一种服务器的快速量化相互作用网络的强度。可以使用网络服务器来预测在实验相关单元中蛋白质内部突变产生的蛋白质的破坏程度。此外,以残留物特异性方式预测耦合距离对扰动和整体扰动幅度的渗透程度的测量,使得能够首先看看蛋白质中的能量联轴器的分布或其在配体结合时的变化。我们展示了如何使用服务器可以用于探测蛋白质中局部稳定性的探针的具体示例,以检查配体结合前后侧链取向或包装的变化,并预测埋藏突变蛋白稳定性的变化残留物。 Web服务器在http://pbl.biotech.iitm.ac.in/pperturb上自由使用,并支持最近的所有主要浏览器版本。

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