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Statistical analysis and prediction of functional residues effective for GPCR-protein coupling selectivity

机译:对GPCR-蛋白质偶联选择性有效的功能残基的统计分析和预测

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One of the important issues in G-protein-coupled receptor (GPCR) functional analysis is the mechanism of GPCR-G-protein coupling selectivity. G-proteins are classified into G(i/o), G(q/11) and G(S) families. Although several experimental and computational analyses have been attempted, the mechanism remains unknown to this day. In this study, we have analyzed the multiple sequence alignments of GPCRs of known coupling selectivities by mapping onto the tertiary structure of rhodopsin. We identified several functional residue sites in GPCRs related to coupling selectivity, which are located mainly at the intracellular loops, and found that the occurrence of positivelyegatively charged amino acids of the characteristic residues varies depending on the G-protein coupling selectivity. Especially, the occurrence of positively charged amino acids in receptors coupling to G(S) family is less than that in receptors coupling to G(i/o) and G(q/11) families. It is interesting that some characteristic residues are located near the extracellular terminus of transmembrane helices, which is far from the GPCR/G-protein binding interface. In most of the receptors coupling to G(S) family, the occurrence of proline on the position corresponding to the 170th residue on rhodopsin is rare. These findings are vital to improving our understanding of the mechanism of G-protein coupling selectivity.
机译:G蛋白偶联受体(GPCR)功能分析的重要问题之一是GPCR-G蛋白偶联选择性的机制。 G蛋白分为G(i / o),G(q / 11)和G(S)家族。尽管已经尝试了几次实验和计算分析,但该机制至今仍未知。在这项研究中,我们分析了视紫红质的三级结构,从而分析了已知偶联选择性的GPCR的多序列比对。我们在GPCR中鉴定了几个与偶联选择性相关的功能性残基位点,这些位点主要位于细胞内环,并发现特征性残基带正电/负电氨基酸的发生随G蛋白偶联选择性的不同而不同。尤其是,与G(S)家族偶联的受体中带正电荷的氨基酸的发生少于与G(i / o)和G(q / 11)家族偶联的受体中带正电荷的氨基酸的发生。有趣的是,一些特征性残基位于跨膜螺旋的细胞外末端附近,该末端远离GPCR / G-蛋白结合界面。在大多数与G(S)家族偶联的受体中,脯氨酸在视紫红质上第170个残基的位置上很少发生脯氨酸。这些发现对增进我们对G蛋白偶联选择性机制的理解至关重要。

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