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首页> 外文期刊>Molecular pharmacology. >Effective Attenuation of Adenosine A1R Signaling by Neurabin Requires Oligomerization of Neurabin
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Effective Attenuation of Adenosine A1R Signaling by Neurabin Requires Oligomerization of Neurabin

机译:Neurabin的腺苷A1R信号传导的有效衰减需要Neurabin的低聚

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摘要

The adenosine A1 receptor (A1R) is a key mediator of the neuroprotective effect by endogenous adenosine. Yet targeting this receptor for neuroprotection is challenging due to its broad expression throughout the body. A mechanistic understanding of the regulation of A1R signaling is necessary for the future design of therapeutic agents that can selectively enhance A1R-mediated responses in the nervous system. In this study, we demonstrate that A1R activation leads to a sustained localization of regulator of G protein signaling 4 (RGS4) at the plasmamembrane, a process that requires neurabin (a neural tissue-specific protein). A1R and RGS4 interact with the overlapping regions of neurabin. In addition, neurabin domains required for oligomerization are essential for formation of the A1R/neurabin/RGS4 ternary complex, as well as for stable localization of RGS4 at the plasma membrane and attenuation of A1R signaling. Thus, A1R and RGS4 each likely interact with one neurabin molecule in a neurabin homo-oligomer to form a ternary complex, representing a novel mode of regulation of G protein-coupled receptor signaling by scaffolding proteins. Our mechanistic analysis of neurabin-mediated regulation of A1R signaling in this study will be valuable for the future design of therapeutic agents that can selectively enhance A1R-mediated responses in the nervous system.
机译:腺苷A1受体(A1R)是内源性腺苷的神经保护作用的关键介体。然而,由于其在整个身体的广泛表达,靶向该受体是挑战。对A1R信号传导调节的机械理解是为了未来的治疗剂设计,可以选择性地增强神经系统中的A1R介导的反应。在该研究中,我们证明A1R活化导致在Plasmamambrane处的G蛋白信号传导4(RGS4)调节剂的持续定位,该方法需要NuRabin(神经组织特异性蛋白质)。 A1R和RGS4与Neurabin的重叠区域相互作用。此外,寡聚化所需的神经突素结构域对于形成A1R / Neurabin / RGS4三元复合物是必不可少的,以及RGS4在血浆膜上的稳定定位和A1R信号传导的衰减。因此,A1R和RGS4各自可能在神经蛋白均寡聚体中与一个神经蛋白分子相互作用以形成三元复合物,其代表脚手架蛋白质的G蛋白偶联受体信号传导的新调节模式。我们对本研究中的A1R信号传导的神经范围介导的机械分析对于未来的治疗剂设计是有价值的,其可以选择性地增强神经系统中的A1R介导的反应。

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  • 来源
    《Molecular pharmacology.》 |2017年第6期|共10页
  • 作者单位

    Univ Alabama Birmingham Dept Cell Dev &

    Integrat Biol 1918 Univ Blvd 986 MCLM Birmingham AL;

    Univ Calif San Diego Dept Pharmacol San Diego CA 92103 USA;

    Univ Alabama Birmingham Dept Cell Dev &

    Integrat Biol 1918 Univ Blvd 986 MCLM Birmingham AL;

    Univ Alabama Birmingham Dept Cell Dev &

    Integrat Biol 1918 Univ Blvd 986 MCLM Birmingham AL;

    Mt Sinai Sch Med Friedman Brain Inst Dept Neurosci New York NY USA;

    Mt Sinai Sch Med Friedman Brain Inst Dept Neurosci New York NY USA;

    Univ Alabama Birmingham Dept Genet Birmingham AL USA;

    Univ Calif San Diego Dept Pharmacol San Diego CA 92103 USA;

    Univ Alabama Birmingham Dept Cell Dev &

    Integrat Biol 1918 Univ Blvd 986 MCLM Birmingham AL;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学;
  • 关键词

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