首页> 外文期刊>Journal of the Royal Society Interface >Similarity between class A and class B G-protein-coupled receptors exemplified through calcitonin gene-related peptide receptor modelling and mutagenesis studies
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Similarity between class A and class B G-protein-coupled receptors exemplified through calcitonin gene-related peptide receptor modelling and mutagenesis studies

机译:降钙素基因相关肽受体建模和诱变研究例证了A类和B类G蛋白偶联受体之间的相似性

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Modelling class B G-protein-coupled receptors (GPCRs) using class A GPCR structural templates is difficult due to lack of homology. The plant GPCR, GCR1, has homology to both class A and class B GPCRs. We have used this to generate a class A-class B alignment, and by incorporating maximum lagged correlation of entropy and hydrophobicity into a consensus score, we have been able to align receptor transmembrane regions. We have applied this analysis to generate active and inactive homology models of the class B calcitonin gene-related peptide (CGRP) receptor, and have supported it with site-directed mutagenesis data using 122 CGRP receptor residues and 144 published mutagenesis results on other class B GPCRs. The variation of sequence variability with structure, the analysis of polarity violations, the alignment of group-conserved residues and the mutagenesis results at 27 key positions were particularly informative in distinguishing between the proposed and plausible alternative alignments. Furthermore, we have been able to associate the key molecular features of the class B GPCR signalling machinery with their class A counterparts for the first time. These include the [K/RJKLH motif in intracellular loop 1, [I/L]xxxL and KxxK at the intracellular end of TM5 and TM6, the NPXXY/VAVLY motif on TM7 and small group-conserved residues in TM1, TM2, TM3 and TM7. The equivalent of the class A DRY motif is proposed to involve Arg~(2.39), His~(2.43) and Glu~(3.46), which makes a polar lock with T~(6.37). These alignments and models provide useful tools for understanding class B GPCR function.
机译:由于缺乏同源性,难以使用A类GPCR结构模板对B类G蛋白偶联受体(GPCR)进行建模。植物GPCR GCR1与A类和B类GPCR具有同源性。我们已经使用它来生成A类B类比对,并且通过将熵和疏水性的最大滞后相关性纳入共识分数,我们已经能够使受体跨膜区域比对。我们已应用此分析生成B类降钙素基因相关肽(CGRP)受体的活性和非活性同源性模型,并使用122个CGRP受体残基和144个已发表的其他B类诱变结果的定点诱变数据为它提供了支持GPCR。序列变异性随结构的变化,极性违背的分析,基团保守残基的比对以及27个关键位置的诱变结果在区分拟议的比对和合理的比对中特别有用。此外,我们首次能够将B类GPCR信号传导机制的关键分子特征与其A类对应物联系起来。这些包括在TM5和TM6的细胞内末端的[K / RJKLH基序,在细胞内环1的[I / L] xxxL和KxxK,在TM7上的NPXXY / VAVLY基序和在TM1,TM2,TM3和TM7。拟议的A类DRY基序的等价物涉及Arg〜(2.39),His〜(2.43)和Glu〜(3.46),从而与T〜(6.37)形成极性锁定。这些比对和模型为理解B类GPCR功能提供了有用的工具。

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