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ASD v3.0: unraveling allosteric regulation with structural mechanisms and biological networks

机译:ASD v3.0:利用结构机制和生物网络揭示变构调控

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摘要

Allosteric regulation, the most direct and efficient way of regulating protein function, is induced by the binding of a ligand at one site that is topographically distinct from an orthosteric site. Allosteric Database (ASD, available online at ) has been developed to provide comprehensive information featuring allosteric regulation. With increasing data, fundamental questions pertaining to allostery are currently receiving more attention from the mechanism of allosteric changes in an individual protein to the entire effect of the changes in the interconnected network in the cell. Thus, the following novel features were added to this updated version: (i) structural mechanisms of more than 1600 allosteric actions were elucidated by a comparison of site structures before and after the binding of an modulator; (ii) 261 allosteric networks were identified to unveil how the allosteric action in a single protein would propagate to affect downstream proteins; (iii) two of the largest human allosteromes, protein kinases and GPCRs, were thoroughly constructed; and (iv) web interface and data organization were completely redesigned for efficient access. In addition, allosteric data have largely expanded in this update. These updates are useful for facilitating the investigation of allosteric mechanisms, dynamic networks and drug discoveries.
机译:变构调节是调节蛋白质功能的最直接和最有效的方法,是通过在一个与正构位点在地形上不同的位点上的配体结合而诱导的。已开发了变构数据库(ASD,可在网上找到),以提供具有变构调节特征的综合信息。随着数据的增加,与变构有关的基本问题目前正从单个蛋白质的变构变化机制到细胞内互连网络变化的整体影响方面得到越来越多的关注。因此,在此更新版本中添加了以下新颖功能:(i)通过比较调节剂结合前后的位点结构,阐明了超过1600种变构作用的结构机理; (ii)确定了261个变构网络以揭示单个蛋白质中的变构作用将如何传播以影响下游蛋白质; (iii)彻底构建了人类最大的两个变构基因,即蛋白激酶和GPCR; (iv)完全重新设计了网络界面和数据组织,以实现高效访问。此外,在此更新中,变构数据已大大扩展。这些更新有助于促进变构机制,动态网络和药物发现的研究。

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