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Dual pathways of internalization of the cholecystokinin receptor

机译:胆囊收缩素受体内在化的双重途径

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摘要

Receptor molecules play a major role in the desensitization of agonist- stimulated cellular responses. For G protein-coupled receptors, rapid desensitization occurs via receptor phosphorylation, sequestration, and internalization, yet the cellular compartments in which these events occur and their interrelationships are unclear. In this work, we focus on the cholecystokinin (CCK) receptor, which has been well characterized with respect to phosphorylation. We have used novel fluorescent and electron-dense CCK receptor ligands and an antibody to probe receptor localization in a CCK receptor-bearing CHO cell line. In the unstimulated state, receptors were diffusely distributed over the plasmalemma. Agonist occupation stimulated endocytosis via both clathrin-dependent and independent pathways. The former was predominant, leading to endosomal and lysosomal compartments, as well as recycling to the plasmalemma. The clathrin-independent processes led to a smooth vesicular compartment adjacent to the plasmalemma resembling caveolae, which did not transport ligand deeper within the cell. Potassium depletion largely eliminated clathrin-dependent endocytosis, while not interfering with agonist-stimulated receptor movement into subplasmalemmal smooth vesicle compartments. These cellular endocytic events can be related to the established cycle of CCK receptor phosphorylation and dephosphorylation, which we have previously described (Klueppelberg, U. G., L. K. Gates, F. S. Gorelick, and L. J. Miller. 1991. J. Biol. Chem. 266:2403-2408; Lutz, M. P., D. I. Pinon, L. K. Gates, S. Shenolikar, and L. J. Miller. 1993. J. Biol. Chem. 268:12136-12142). The rapid onset and peak of receptor phosphorylation after agonist occupation correlates best with a plasmalemmal localization, while stimulated receptor phosphatase activity correlates best with receptor residence in intracellular compartments. We postulate that the smooth vesicular compartment adjacent to the plasmalemma functions for the rapid resensitization of the receptor, while the classical clathrin-mediated endocytotic pathway is key for receptor downregulation via lysosomal degradation, as well as less rapid resensitization.
机译:受体分子在激动剂刺激的细胞反应的脱敏中起主要作用。对于G蛋白偶联的受体,通过受体的磷酸化,螯合和内在化作用迅速发生脱敏作用,但尚不清楚发生这些事件的细胞间及其相互关系。在这项工作中,我们专注于胆囊收缩素(CCK)受体,该受体在磷酸化方面已被很好地表征。我们已经使用新型荧光和电子致密CCK受体配体和抗体来探测带有CCK受体的CHO细胞系中的受体定位。在未刺激状态下,受体在血浆膜上分散分布。激动剂的职业通过网格蛋白依赖性和非依赖性途径刺激内吞作用。前者占主导地位,导致内体和溶酶体区室,并再循环至血浆。不依赖网格蛋白的过程导致类似于质膜的质膜附近的一个光滑的囊泡区室,该区不能在细胞内更深地转运配体。钾的消耗在很大程度上消除了网格蛋白依赖性的内吞作用,同时不干扰激动剂刺激的受体向浆膜下平滑小泡区室的移动。这些细胞内吞事件可能与CCK受体磷酸化和去磷酸化的既定周期有关,我们先前已经描述过这些周期(Klueppelberg,UG,LK Gates,FS Gorelick和LJ Miller。1991. J. Biol。Chem。266:2403- 2408; Lutz,MP,DI Pinon,LK Gates,S.Shenolikar和LJ Miller.1993.J.Biol.Chem.268:12136-12142)。激动剂占领后受体磷酸化的迅速发生和高峰与质膜定位最相关,而受激受体磷酸酶活性与受体在细胞内区室中的停留最相关。我们假设邻近血浆膜的光滑囊泡区对受体的快速重新敏化起作用,而经典的网格蛋白介导的内吞途径是通过溶酶体降解以及较不快速的敏化而受体下调的关键。

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