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首页> 外文期刊>Chemistry: A European journal >Propagation of the Allosteric Modulation Induced by Sodium in the δ-Opioid Receptor
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Propagation of the Allosteric Modulation Induced by Sodium in the δ-Opioid Receptor

机译:δ-阿片受体中钠诱导的变构调节的繁殖

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摘要

Allosteric sodium in the helix bundle of a G protein- coupled receptor (GPCR) can modulate the receptor activation on the intracellular side. This phenomenon has confounded the GPCR community for decades. In this work, we present a theoretical model that reveals the mechanism of the allosteric modulation induced by sodium in the d-opioid receptor. We found that the allosteric sodium ion exploits a distinct conformation of the key residue Trp274~(6.48) to propagate the modulation to helices 5 and 6, which further transmits along the helices and regulates their positions on the intracellular side. This mechanism is supported by subsequent functional assays. Remarkably, our results highlight the contrast between the allosteric effects towards two GPCR partners, the G protein and b-arrestin, as indicated by the fact that the allosteric modulation initiated by the sodium ion significantly affects the b-arrestin recruitment, while it alters the G protein signaling only moderately. We believe that the mechanism revealed in this work can be used to explain allosteric effects initiated by sodium in other GPCRs since the allosteric sodium is highly conserved across GPCRs.
机译:G蛋白偶联受体(GPCR)的螺旋束中的颠膜钠可以调节细胞内侧的受体活化。这一现象已经混淆了GPCR社区数十年。在这项工作中,我们提出了一种理论模型,揭示了D-阿片受体中钠诱导的变构调制的机制。我们发现颠振钠离子利用关键残留物TRP274〜(6.48)的不同构象,将调制传播到螺旋5和6,这沿着螺旋进一步透射并调节其对细胞内侧的位置。这种机制得到后续功能测定的支持。值得注意的是,我们的结果突出了两个GPCR合作伙伴,G蛋白和B-Arcket的变构效应之间的对比,如钠离子引发的变构调制显着影响B-Alctionin招募的事实所示,而它改变了G蛋白仅适度信号。我们认为,本作作品中显示的机制可用于解释其他GPCR中由其他GPCR引发的渐变效果,因为颠覆钠在GPCR中高度保守。

著录项

  • 来源
    《Chemistry: A European journal 》 |2017年第19期| 共10页
  • 作者单位

    Pharmaceutical Research Center School of Pharmacy Guangzhou Medical University 195 Dongfengxi Rd Guangzhou 510182 (China);

    Department of Biochemistry Microbiology and Immunology University of Ottawa 451 Smyth Rd Ottawa ON (Canada);

    Division of Theoretical Chemistry and Biology School of Biotechnology KTH Royal Institute of Technology 106 91 Stockholm (Sweden);

    Division of Theoretical Chemistry and Biology School of Biotechnology KTH Royal Institute of Technology 106 91 Stockholm (Sweden);

    Department of Biochemistry and Molecular Biophysics Washington University School of Medicine St. Louis Missouri 63110 (USA);

    Department of Biochemistry Microbiology and Immunology University of Ottawa 451 Smyth Rd Ottawa ON (Canada);

    Division of Theoretical Chemistry and Biology School of Biotechnology KTH Royal Institute of Technology 106 91 Stockholm (Sweden);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用化学 ;
  • 关键词

    G protein-coupled receptor; opioid receptors; molecular dynamics; allosteric effects; GPCR activation;

    机译:G蛋白偶联受体;阿片受体;分子动力学;变构效应;GPCR活化;

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