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G Protein-Coupled Receptor-Associated Sorting Protein 1 Regulates the Postendocytic Sorting of Seven-Transmembrane-Spanning G Protein-Coupled Receptors

机译:G蛋白偶联受体相关的排序蛋白1规管七跨膜G蛋白偶联受体的内吞后排序。

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摘要

The largest superfamily of membrane proteins that translate extracellular signals into intracellular messages are the 7-transmembrane-spanning (7TM) G protein-coupled receptors (GPCR). One of the ways in which their activity is controlled is by the process of desensitization and endocytosis, whereby agonist-activated receptors are rapidly and often reversibly silenced through removal from the cell surface. Indeed, following endocytosis, individual receptors can be sorted differentially between recycling endosomes and lysosomes, which controls the reversibility of the silencing. Thus, endocytosis can either serve as a mechanism for receptor resensitization by delivering receptors back to the plasma membrane or facilitate receptor downregulation by serving as the first step towards targeting the receptors to lysosomes for degradation. The sorting of receptors to the lysosomal pathway can be facilitated by interaction with an array of accessory proteins. One of these proteins is the GPCR-associated sorting protein 1 (GASP-1), which specifically targets several 7TM-GPCR to the lysosomal pathway after endocytosis. Furthermore, GASP-1 was recently found to directly affect the signaling capacity of a 7TM-GPCR. Importantly, the in vivo relevance of GASP-1-dependent receptor sorting has also begun to be verified in animal models. Here, we summarize the recent advances in elucidating GASP-1-dependent receptor sorting functions and their potential implications in vivo.
机译:将细胞外信号转化为细胞内信息的最大膜蛋白超家族是7跨膜(7TM)G蛋白偶联受体(GPCR)。控制其活性的方法之一是脱敏和内吞作用,通过从细胞表面去除,激动剂激活的受体迅速且通常可逆地沉默。确实,在胞吞作用之后,可以在回收的内体和溶酶体之间区分不同的受体,从而控制沉默的可逆性。因此,胞吞作用可以通过将受体传递回质膜而用作受体重新敏化的机制,或者可以通过将受体靶向溶酶体进行降解的第一步来促进受体下调。通过与一系列辅助蛋白相互作用,可以促进溶酶体途径的受体分类。这些蛋白之一是GPCR相关分选蛋白1(GASP-1),它在胞吞后特异性地将几种7TM-GPCR靶向溶酶体途径。此外,最近发现GASP-1直接影响7TM-GPCR的信号传导能力。重要的是,GASP-1依赖性受体分选的体内相关性也已在动物模型中得到验证。在这里,我们总结阐明GASP-1依赖受体分选功能及其在体内的潜在影响的最新进展。

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