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七螺旋舞蹈。谁在指挥旋律?

Heptahelical terpsichory. Who calls the tune?

作者信息

Gesty-Palmer Diane, Luttrell Louis M

机构信息

Department of Medicine Duke University Medical Center, Durham, North Carolina, USA.

出版信息

J Recept Signal Transduct Res. 2008;28(1-2):39-58. doi: 10.1080/10799890801941921.

Abstract

The discovery that arrestins can function as ligand-regulated signaling scaffolds has revealed a previously unappreciated level of complexity in G protein-coupled receptor (GPCR) signal transduction. Because arrestin-bound GPCRs are uncoupled from G proteins, arrestin binding can be viewed as switching receptors between two temporally and spatially distinct signaling modes. Recent work has established two factors that underscore this duality of GPCR signaling and suggest it may ultimately have therapeutic significance. The first is that signaling by receptor-arrestin "signalsomes" does not require heterotrimeric G protein activation. The second is that arrestin-dependent signals can be initiated by pathway-specific "biased agonists," creating the potential for drugs that selectively modulate different aspects of GPCR function. Currently, however, little is known about the physiological relevance of G protein-independent signals at the cellular or whole animal levels, and additional work is needed to determine whether arrestin pathway-selective drugs will find clinical application.

摘要

抑制蛋白可作为配体调节的信号支架发挥作用,这一发现揭示了G蛋白偶联受体(GPCR)信号转导中一个此前未被重视的复杂层面。由于与抑制蛋白结合的GPCR与G蛋白解偶联,抑制蛋白结合可被视为在两种时间和空间上不同的信号模式之间切换受体。最近的研究确定了两个因素,突出了GPCR信号转导的这种双重性,并表明其最终可能具有治疗意义。第一个因素是,受体 - 抑制蛋白“信号体”的信号传导不需要异源三聚体G蛋白激活。第二个因素是,抑制蛋白依赖性信号可由途径特异性“偏向性激动剂”引发,这为选择性调节GPCR功能不同方面的药物创造了潜力。然而,目前对于细胞或整体动物水平上不依赖G蛋白的信号的生理相关性知之甚少,还需要更多研究来确定抑制蛋白途径选择性药物是否会得到临床应用。

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