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利用嗜铬粒蛋白A基因敲除小鼠的嗜铬细胞揭示嗜铬粒蛋白在储存和胞吐作用中的关键作用。

The crucial role of chromogranins in storage and exocytosis revealed using chromaffin cells from chromogranin A null mouse.

作者信息

Montesinos Monica S, Machado J David, Camacho Marcial, Diaz Jesica, Morales Yezer G, Alvarez de la Rosa Diego, Carmona Emilia, Castañeyra Agustin, Viveros O Humberto, O'Connor Daniel T, Mahata Sushil K, Borges Ricardo

机构信息

Unit of Pharmacology, Medical School, University of La Laguna, 38071 Tenerife, Spain.

出版信息

J Neurosci. 2008 Mar 26;28(13):3350-8. doi: 10.1523/JNEUROSCI.5292-07.2008.

Abstract

Chromogranins (Cgs) are the major soluble proteins of dense-core secretory vesicles. Chromaffin cells from Chga null mice [chromogranin A knock-out (CgA-KO)] exhibited approximately 30% reduction in the content and in the release of catecholamines compared with wild type. This was because of a lower secretion per single exocytotic event, rather than to a lower frequency of exocytotic events. Cell incubation with L-DOPA produced an increase in the vesicular amine content of wild-type, but not CgA-KO vesicles. In contrast, intracellular electrochemistry showed that L-DOPA produced a significantly larger increase in cytosolic amines in CgA-KO cells than in the wild type. These data indicate that the mechanisms for vesicular accumulation in CgA-KO cells were fully saturated. Patch-amperometry recordings showed a delayed initiation of the amperometric signal after vesicle fusion, whereas no changes were observed in vesicle size or fusion pore kinetics despite the smaller amine content. We conclude that intravesicular proteins are highly efficient systems directly implicated in transmitter accumulation and in the control of neurosecretion.

摘要

嗜铬粒蛋白(Cgs)是致密核心分泌囊泡的主要可溶性蛋白质。与野生型相比,来自Chga基因敲除小鼠[嗜铬粒蛋白A基因敲除(CgA-KO)]的嗜铬细胞中儿茶酚胺的含量和释放量减少了约30%。这是由于单个胞吐事件的分泌量较低,而不是胞吐事件的频率较低。用左旋多巴孵育细胞会使野生型囊泡胺含量增加,但不会使CgA-KO囊泡胺含量增加。相反,细胞内电化学显示,左旋多巴使CgA-KO细胞胞质胺的增加幅度明显大于野生型细胞。这些数据表明,CgA-KO细胞中囊泡积累的机制已完全饱和。膜片钳安培法记录显示,囊泡融合后安培信号的起始延迟,尽管胺含量较少,但囊泡大小或融合孔动力学没有变化。我们得出结论,囊泡内蛋白质是直接参与递质积累和神经分泌控制的高效系统。

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