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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Beta 2 -adrenergic receptor homodimers: Role of transmembrane domain 1 and helix 8 in dimerization and cell surface expression
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Beta 2 -adrenergic receptor homodimers: Role of transmembrane domain 1 and helix 8 in dimerization and cell surface expression

机译:β2 - 肾上腺素能受体同源体:跨膜结构域1和螺旋8在二聚化和细胞表面表达中的作用

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摘要

Abstract Even though there are hundreds of reports in the published literature supporting the hypothesis that G protein-coupled receptors (GPCR) form and function as dimers this remains a highly controversial area of research and mechanisms governing homodimer formation are poorly understood. Crystal structures revealing homodimers have been reported for many different GPCR. For adrenergic receptors, a potential dimer interface involving transmembrane domain 1 (TMD1) and helix 8 (H8) was identified in crystal structures of the beta 1 -adrenergic (β 1 -AR) and β 2 -AR. The purpose of this study was to investigate a potential role for TMD1 and H8 in dimerization and plasma membrane expression of functional β 2 -AR. Charged residues at the base of TMD1 and in the distal portion of H8 were replaced, singly and in combination, with non-polar residues or residues of opposite charge. Wild type and mutant β 2 -AR, tagged with YFP and expressed in HEK293 cells, were evaluated for plasma membrane expression and function. Homodimer formation was evaluated using bioluminescence resonance energy transfer, bimolecular fluorescence complementation, and fluorescence correlation spectroscopy. Amino acid substitutions at the base of TMD1 and in the distal portion of H8 disrupted homodimer formation and caused receptors to be retained in the endoplasmic reticulum. Mutations in the proximal region of H8 did not disrupt dimerization but did interfere with plasma membrane expression. This study provides biophysical evidence linking a potential TMD1/H8 interface with ER export and the expression of functional β 2 -AR on the plasma membrane. This article is part of a Special Issue entitled: Interactions between membrane receptors in cellular membranes edited by Kalina Hristova. Graphical abstract Display Omitted Highlights ? Mutations that disrupt β 2 -Adrenergic Receptor (β 2 -AR) homodimerization ? Homodimer formation was evaluated using BRET, BiFC and FCS. ? Transmembrane domain 1 (TMD1) and helix 8 (H8) regulate trafficking & homodimers. ? A TMD1/H8 interface is linked with ER export and expression of functional β 2 -AR. ]]>
机译:摘要即使发表的文献中有数百个报告,支持G蛋白偶联受体(GPCR)形式和用作二聚体的特定作用,这仍然是治疗同源体形成的高度争议的研究和机制。据报道了许多不同的GPCR揭示了偶发同源体的晶体结构。对于肾上腺素能受体,涉及跨膜结构域1(TMD1)和螺旋8(H8)的潜在二聚体界面在β1 - 肾上腺素能(β1-ar)和β2-β2-ar的晶体结构中。本研究的目的是探讨TMD1和H8在功能性β2-AR的二聚化和质膜表达中的TMD1和H8的潜在作用。 TMD1基部和H8的远端部分的带电残基被单独和组合替换,具有相反电荷的非极性残基或残留物。野生型和突变体β2-AR标记为YFP并在HEK293细胞中表达,对质膜表达和功能进行了血浆。使用生物发光共振能量转移,双分子荧光互补和荧光相关光谱评估同源体形成。 TMD1碱基和H8的远端部分的氨基酸取代破坏了同型二聚体的形成,并使受体保持在内质网中。 H8近端区域的突变并未破坏二聚化,但确实干扰了血浆膜表达。本研究提供了将潜在的TMD1 / H8界面与ER导出的潜在TMD1 / H8界面的生物物理证据和在质膜上的功能性β2-AR的表达。本文是标题的特殊问题的一部分:Kalina Hristova编辑细胞膜中膜受体之间的相互作用。图形抽象显示省略了亮点?破坏β2 - 肾上腺素能受体(β2-)均二聚体的突变?使用BRET,BIFC和FCS评估同源体形成。还跨膜结构域1(TMD1)和螺旋8(H8)调节贩运和同型二聚体。还TMD1 / H8接口与ER导出和功能性β2-AR的表达相关联。 ]]>

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