首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >One motif to bind them: A small-XXX-small motif affects transmembrane domain 1 oligomerization, function, localization, and cross-talk between two yeast GPCRs
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One motif to bind them: A small-XXX-small motif affects transmembrane domain 1 oligomerization, function, localization, and cross-talk between two yeast GPCRs

机译:一个主题绑定它们:小XXX-Small MOTIF会影响跨越域结构域1寡聚化,功能,本地化和两种酵母GPCR之间的串扰

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摘要

G protein-coupled receptors (GPCRs) are the largest family of cell-surface receptors in mammals and facilitate a range of physiological responses triggered by a variety of ligands. GPCRs were thought to function as monomers, however it is now accepted that GPCR homo- and hetero-oligomers also exist and influence receptor properties. The Schizosaccharomyces pombe GPCR Mam2 is a pheromone-sensing receptor involved in mating and has previously been shown to form oligomers in vivo. The first transmembrane domain (TMD) of Mam2 contains a small-XXX-small motif, overrepresented in membrane proteins and well-known for promoting helix-helix interactions. An ortholog of Mam2 in Saccharomyces cerevisiae, Ste2, contains an analogous small-XXX-small motif which has been shown to contribute to receptor homo-oligomerization, localization and function. Here we have used experimental and computational techniques to characterize the role of the small-XXX-small motif in function and assembly of Mam2 for the first time. We find that disruption of the motif via mutagenesis leads to reduction of Mam2 TMD1 homo-oligomerization and pheromone-responsive cellular signaling of the full-length protein. It also impairs correct targeting to the plasma membrane. Mutation of the analogous motif in Ste2 yielded similar results, suggesting a conserved mechanism for assembly. Using co-expression of the two fungal receptors in conjunction with computational models, we demonstrate a functional change in G protein specificity and propose that this is brought about through hetero-dimeric interactions of Mam2 with Ste2 via the complementary small-XXX-small motifs. This highlights the potential of these motifs to affect a range of properties that can be investigated in other GPCRs.
机译:G蛋白偶联受体(GPCR)是哺乳动物中最大的细胞表面受体系列,并促进由各种配体引发的一系列生理反应。认为GPCR作为单体起作用,然而现在接受GPCR同源和杂寡寡体也存在并影响受体性质。 Schizosaccharomyces Pombe GPCCRMAM2是涉及配合的信息素感测受体,并已被证明在体内形成低聚物。 MAM2的第一跨膜结构域(TMD)含有小XXX-SMALLID,在膜蛋白中过度持续,众所周知,用于促进螺旋螺旋相互作用。 Saccharomyces酿酒酵母STE2中的MAM2的正直含有类似的小XXX-小基质,其已被证明是有助于受体同源寡聚化,定位和功能。在这里,我们使用实验和计算技术首次在MAM2的功能和组装中表征小XXX-Small Motif的作用。我们发现通过诱变的主题破坏导致MAM2 TMD1同源寡聚化和全长蛋白质的信息素响应性蜂窝信号传导。它还损害了靶向血浆膜。 STE2中类似矩阵的突变产生了类似的结果,表明组装的保守机制。使用两种真菌受体与计算模型的共表达,我们证明了G蛋白质特异性的功能变化,并提出了通过MAM2的杂种二维相互作用,通过互补的小XXX-Smop-MITIF。这突出了这些图案的潜力,影响可以在其他GPCR中调查的一系列性质。

著录项

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  • 作者单位

    Department of Genetics Evolution and Environment University College LondonLondon United Kingdom;

    Division of Biomedical Cell Biology Warwick Medical SchoolCoventry United Kingdom;

    Division of Biomedical Cell Biology Warwick Medical SchoolCoventry United Kingdom;

    Department of Chemistry University of WarwickCoventry United Kingdom;

    School of Biological Sciences University of Essex Wivenhoe ParkColchester United Kingdom;

    School of Biological Sciences University of Essex Wivenhoe ParkColchester United Kingdom;

    Division of Biomedical Cell Biology Warwick Medical SchoolCoventry United Kingdom;

    Department of Chemistry University of WarwickCoventry United Kingdom;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物膜的结构和功能;
  • 关键词

    Cross-talk; GPCR; Oligomerization; Signaling; TOXCAT; Trafficking;

    机译:串扰;GPCR;寡头化;信令;TOXCAT;贩运;

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