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一段位于质膜近端、C 端的α螺旋对于 G 蛋白偶联受体(GPCR)TGR5 的质膜定位和功能是必需的。

A membrane-proximal, C-terminal α-helix is required for plasma membrane localization and function of the G Protein-coupled receptor (GPCR) TGR5.

机构信息

From the Clinic for Gastroenterology, Hepatology, and Infectious Diseases and.

出版信息

J Biol Chem. 2014 Feb 7;289(6):3689-702. doi: 10.1074/jbc.M113.502344. Epub 2013 Dec 13.

Abstract

The C terminus of G protein-coupled receptors (GPCRs) is important for G protein-coupling and activation; in addition, sorting motifs have been identified in the C termini of several GPCRs that facilitate correct trafficking from the endoplasmic reticulum to the plasma membrane. The C terminus of the GPCR TGR5 lacks any known sorting motif such that other factors must determine its trafficking. Here, we investigate deletion and substitution variants of the membrane-proximal C terminus of TGR5 with respect to plasma membrane localization and function using immunofluorescence staining, flow cytometry, and luciferase assays. Peptides of the membrane-proximal C-terminal variants are subjected to molecular dynamics simulations and analyzed with respect to their secondary structure. Our results reveal that TGR5 plasma membrane localization and responsiveness to extracellular ligands is fostered by a long (≥ 9 residues) α-helical stretch at the C terminus, whereas the presence of β-strands or only a short α-helical stretch leads to retention in the endoplasmic reticulum and a loss of function. As a proof-of-principle, chimeras of TGR5 containing the membrane-proximal amino acids of the β2 adrenergic receptor (β2AR), the sphingosine 1-phosphate receptor-1 (S1P1), or the κ-type opioid receptor (κOR) were generated. These TGR5β2AR, TGR5S1P1, or TGR5κOR chimeras were correctly sorted to the plasma membrane. As the exchanged amino acids of the β2AR, the S1P1, or the κOR form α-helices in crystal structures but lack significant sequence identity to the respective TGR5 sequence, we conclude that the secondary structure of the TGR5 membrane-proximal C terminus is the determining factor for plasma membrane localization and responsiveness towards extracellular ligands.

摘要

G 蛋白偶联受体 (GPCR) 的 C 末端对于 G 蛋白偶联和激活很重要;此外,已经在几种 GPCR 的 C 末端鉴定出了分选基序,这些基序有助于从内质网正确转运到质膜。GPCR TGR5 的 C 末端缺乏任何已知的分选基序,因此其他因素必须决定其转运。在这里,我们使用免疫荧光染色、流式细胞术和荧光素酶测定法,研究了 TGR5 膜近端 C 末端的缺失和替代变体与质膜定位和功能的关系。膜近端 C 末端变体的肽进行分子动力学模拟,并分析其二级结构。我们的结果表明,TGR5 质膜定位和对细胞外配体的反应性是由 C 末端的长(≥9 个残基)α-螺旋伸展促进的,而β-折叠或只有短的α-螺旋伸展会导致内质网滞留和功能丧失。作为原理验证,生成了包含β2 肾上腺素能受体 (β2AR)、鞘氨醇 1-磷酸受体 1 (S1P1) 或 κ 型阿片受体 (κOR) 的膜近端氨基酸的 TGR5 嵌合体。这些 TGR5β2AR、TGR5S1P1 或 TGR5κOR 嵌合体被正确分拣到质膜。由于β2AR、S1P1 或 κOR 的交换氨基酸在晶体结构中形成α-螺旋,但与相应的 TGR5 序列缺乏显著的序列同一性,我们得出结论,TGR5 膜近端 C 末端的二级结构是决定其质膜定位和对细胞外配体反应性的决定因素。

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