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单个嗜铬细胞中的胞吐作用:由分泌颗粒相关的Go蛋白调控。

Exocytosis in single chromaffin cells: regulation by a secretory granule-associated Go protein.

作者信息

Vitale N, Gonon F, Thiersé D, Aunis D, Bader M F

机构信息

Institut National de la Santé et de la Recherche Médicale, Strasbourg, France.

出版信息

Cell Mol Neurobiol. 1997 Feb;17(1):71-87. doi: 10.1023/a:1026329121099.

Abstract
  1. Besides having a role in signal transduction, trimeric G proteins may also be involved in membrane trafficking events. In chromaffin cells, G alpha o has been found associated with the membrane of secretory granules. Here we examined the role of Go in regulated exocytosis using pressure microinjection combined with amperometric measurement of catecholamine secretion from individual chromaffin cells. 2. Microinjection of GTP gamma S and mastoparan strongly inhibits the amperometric response to either nicotine or high K+. 3. The presence of mastoparan in the cell incubation medium had no effect on K(+)-evoked secretion, suggesting that mastoparan blocks the exocytotic machinery through an intracellular target protein not located just beneath the plasma membrane. 4. Microinjection of anti-G alpha o antibodies potentiates by more than 50% the K(+)-evoked secretion, whereas anti-G alpha i1/2 antibodies have no effect. 5. Thus an inhibitory Go protein, probably associated with secretory granules, controls exocytosis in chromaffin cells. The intracellular proteins controlling organelle-associated G proteins are currently unknown. The neuronal cytosolic protein GAP-43 stimulates G alpha o in purified chromaffin granule membranes and inhibits exocytosis in permeabilized cells. We show here that microinjection of a synthetic peptide corresponding to the domain of GAP-43 that interacts with Go inhibits secretion. We suggest that GAP-43 or a related cytosolic protein controls the exocytotic priming step in chromaffin, cells by stimulating a granule-associated Go protein.
摘要
  1. 三聚体G蛋白除了在信号转导中发挥作用外,还可能参与膜运输事件。在嗜铬细胞中,已发现Gαo与分泌颗粒的膜相关。在此,我们使用压力显微注射结合对单个嗜铬细胞儿茶酚胺分泌的安培测量,研究了G o在调节性胞吐作用中的作用。2. 显微注射GTPγS和蜂毒素强烈抑制对尼古丁或高钾的安培反应。3. 细胞孵育培养基中存在蜂毒素对钾离子诱发的分泌没有影响,这表明蜂毒素通过一个不位于质膜下方的细胞内靶蛋白阻断胞吐机制。4. 显微注射抗Gαo抗体可使钾离子诱发的分泌增强50%以上,而抗Gαi1/2抗体则没有作用。5. 因此,一种可能与分泌颗粒相关的抑制性G o蛋白控制着嗜铬细胞中的胞吐作用。目前尚不清楚控制细胞器相关G蛋白的细胞内蛋白。神经元胞质蛋白GAP - 43在纯化的嗜铬颗粒膜中刺激Gαo并抑制通透细胞中的胞吐作用。我们在此表明,显微注射与GAP - 43中与G o相互作用的结构域对应的合成肽可抑制分泌。我们认为GAP - 43或一种相关的胞质蛋白通过刺激颗粒相关的G o蛋白来控制嗜铬细胞中的胞吐引发步骤。

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本文引用的文献

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Exocytosis from a single rat chromaffin cell by cholinergic and peptidergic neurotransmitters.
Neuroscience. 1994 Mar;59(1):1-5. doi: 10.1016/0306-4522(94)90092-2.

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