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Modern Homology Modeling of G-Protein Coupled Receptors: Which Structural Template to Use?

机译:G蛋白偶联受体的现代同源性建模:使用哪种结构模板?

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摘要

The recent availability in the literature of new crystal structures of inactive G-protein coupled receptors (GPCRs) prompted its to study the extent to which these crystal structures constitute ail advantage over the former prototypic rhodopsin template for homology modeling of the transmembrane (TM) region Of human class A GPCRs. Our results suggest that better templates than those currently available are required by the majority of these GPCRs to generate homology models that are accurate enough for simple virtual screening aimed at computer-aided drug discovery. Thus, we investigated: ( I) which class A GPCRs would have the highest impact as potential templates for homology modeling of other GPCRs, if their structures were solved, and (2) the extent to which multiple-template homology modeling (using all currently available GPCR crystal structures) provides ail improvement over single-template homology modeling, as evaluated by the accuracy of rigid protein-flexible ligand docking on these models.
机译:失活的G蛋白偶联受体(GPCR)的新晶体结构在文献中的最新可用性促使其研究这些晶体结构相对于用于跨膜(TM)区同源性建模的原型原型视紫红质模板的全部优势的程度人类A类GPCR。我们的结果表明,大多数GPCR需要比目前可用的模板更好的模板,以生成同源性模型,该模型足够精确,可用于针对计算机辅助药物发现的简单虚拟筛选。因此,我们进行了以下调查:(I)如果解决了其他GPCR的结构问题,哪些A类GPCR作为潜在的模板可以作为其他GPCR的同源模型的潜在模板,以及(2)多模板同源性建模的程度(目前使用所有现有的GPCR晶体结构)相对于单模板同源性建模提供了所有改进,如通过刚性蛋白质-柔性配体对接在这些模型上的准确性所评估的。

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