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Homology modeling of G-protein-coupled receptors with X-ray structures on the rise

机译:具有上升的X射线结构的G蛋白偶联受体的同源性建模

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摘要

GPCRs are key components of signal transduction pathways and are important drug targets. Recently determined GPCR structures provide opportunities for advancements in GPCR modeling. This review focuses on the choice of experimental templates, the treatment of extracellular loops and the description of ligand-binding sites in GPCR modeling. Four important conclusions are reached in this review: (i) multi-template models may produce better structures than single-template models, although inferior models may also be generated by multi-template approaches, warranting the development and application of improved model assessment methods; (ii) cautious incorporation of knowledge-based constraints can improve the quality of models and docking; (iii) molecular dynamics simulations account for structural features not observed in X-ray structures and may refine docking poses; and (iv) while progress in de novo methods for long loop prediction is ongoing, loopless models provide a practical alternative for docking and virtual screening applications.
机译:GPCR是信号转导途径的关键组成部分,是重要的药物靶标。最近确定的GPCR结构为GPCR建模的发展提供了机会。这篇综述着重于实验模板的选择,细胞外环的处理以及GPCR建模中配体结合位点的描述。这篇综述得出了四个重要结论:(i)多模板模型可能比单模板模型产生更好的结构,尽管劣等模型也可能通过多模板方法生成,从而保证了改进模型评估方法的开发和应用; (ii)谨慎地结合基于知识的约束可以提高模型和对接的质量; (iii)分子动力学模拟解释了X射线结构中未观察到的结构特征,并可能完善了对接姿势; (iv)在从头开始进行长循环预测的方法不断进步的同时,无环模型为对接和虚拟筛选应用提供了一种实用的替代方法。

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