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Structural Models of Class A G Protein-Coupled Receptors as a Tool for Drug Design: Insights on Transmembrane Bundle Plasticity

机译:作为药物设计工具的A类G蛋白偶联受体的结构模型:跨膜束可塑性的见解。

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摘要

G protein-coupled receptors (GPCRs) interact with an extraordinary diversity of ligands by means of their extracellular domains and/or the extracellular part of the transmembrane (TM) segments. Each receptor subfamily has developed specific sequence motifs to adjust the structural characteristics of its cognate ligands to a common set of conformational rearrangements of the TM segments near the G protein binding domains during the activation process. Thus, GPCRs have fulfilled this adaptation during their evolution by customizing a preserved 7TM scaffold through conformational plasticity. We use this term to describe the structural differences near the binding site crevices among different receptor subfamilies, responsible for the selective recognition of diverse ligands among different receptor subfamilies. By comparing the sequence of rhodopsin at specific key regions of the TM bundle with the sequences of other GPCRs we have found that the extracellular region of TMs 2 and 3 provides a remarkable example of conformational plasticity within Class A GPCRs. Thus, rhodopsin-based molecular models need to include the plasticity of the binding sites among GPCR families, since the “quality” of these homology models is intimately linked with the success in the processes of rational drugdesign or virtual screening of chemical databases.
机译:G蛋白偶联受体(GPCR)通过其胞外域和/或跨膜(TM)段的胞外部分与多种配体相互作用。每个受体亚家族都已开发出特定的序列基序,以在激活过程中将其同源配体的结构特征调整为靠近G蛋白结合域的TM片段的一组常见构象重排。因此,GPCR在进化过程中通过构象可塑性定制保留的7TM支架来实现这种适应。我们用这个术语来描述不同受体亚家族之间结合位点缝隙附近的结构差异,这负责在不同受体亚家族之间选择性识别各种配体。通过将TM束特定关键区域的视紫红质的序列与其他GPCR的序列进行比较,我们发现TM 2和3的细胞外区域提供了A类GPCR内构象可塑性的显着实例。因此,基于视紫红质的分子模型需要包括GPCR家族之间结合位点的可塑性,因为这些同源性模型的“质量”与合理药物设计或化学数据库虚拟筛选过程中的成功密切相关。

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