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Ligand Binding and Circular Permutation Modify Residue Interaction Network in DHFR

机译:DHFR中的配体结合和循环置换修饰残基相互作用网络

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摘要

Residue interaction networks and loop motions are important for catalysis in dihydrofolate reductase (DHFR). Here, we investigate the effects of ligand binding and chain connectivity on network communication in DHFR. We carry out systematic network analysis and molecular dynamics simulations of the native DHFR and 19 of its circularly permuted variants by breaking the chain connections in ten folding element regions and in nine nonfolding element regions as observed by experiment. Our studies suggest that chain cleavage in folding element areas may deactivate DHFR due to large perturbations in the network properties near the active site. The protein active site is near or coincides with residues through which the shortest paths in the residue interaction network tend to go. Further, our network analysis reveals that ligand binding has “network-bridging effects” on the DHFR structure. Our results suggest that ligand binding leads to a modification, with most of the interaction networks now passing through the cofactor, shortening the average shortest path. Ligand binding at the active site has profound effects on the network centrality, especially the closeness.
机译:残基相互作用网络和循环运动对于二氢叶酸还原酶(DHFR)的催化作用很重要。在这里,我们研究了DHFR中配体结合和链连接性对网络通信的影响。我们通过打破在实验中观察到的10个折叠元件区域和9个非折叠元件区域的链连接,对天然DHFR及其19个圆形排列变体进行了系统的网络分析和分子动力学模拟。我们的研究表明,折叠分子区域中的链断裂可能会由于活性位点附近网络特性的较大扰动而使DHFR失活。蛋白质活性位点靠近残基或与残基重合,残基相互作用网络中最短的路径倾向于通过这些残基。此外,我们的网络分析表明,配体结合对DHFR结构具有“网络桥接效应”。我们的结果表明,配体结合会导致修饰,大多数相互作用网络现在都通过辅因子,从而缩短了平均最短路径。活性位点上的配体结合对网络中心性,尤其是紧密性具有深远的影响。

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