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Rac1小G蛋白促进牛嗜铬细胞中依赖钙离子的胞吐作用

Facilitation of Ca(2+)-dependent exocytosis by Rac1-GTPase in bovine chromaffin cells.

作者信息

Li Quanwen, Ho Chi S, Marinescu Vlad, Bhatti Humaa, Bokoch Gary M, Ernst Stephen A, Holz Ronald W, Stuenkel Edward L

机构信息

Department of Physiology, University of Michigan, Ann Arbor 48109, USA.

出版信息

J Physiol. 2003 Jul 15;550(Pt 2):431-45. doi: 10.1113/jphysiol.2003.039073. Epub 2003 May 16.

Abstract

Rho family GTPases are primary mediators of cytoskeletal reorganization, although they have also been reported to regulate cell secretion. Yet, the extent to which Rho family GTPases are activated by secretory stimuli in neural and neuroendocrine cells remains unknown. In bovine adrenal chromaffin cells, we found Rac1, but not Cdc42, to be rapidly and selectively activated by secretory stimuli using an assay selective for the activated GTPases. To examine effects of activated Rac1 on secretion, constitutively active mutants of Rac1 (Rac1-V12, Rac1-L61) were transiently expressed in adrenal chromaffin cells. These mutants facilitated secretory responses elicited from populations of intact and digitonin-permeabilized cells as well as from cells under whole cell patch clamp. A dominant negative Rac1 mutant (Rac1-N17) produced no effect on secretion. Expression of RhoGDI, a negative regulator of Rac1, inhibited secretory responses while overexpression of effectors of Rac1, notably, p21-activated kinase (Pak1) and actin depolymerization factor (ADF) promoted evoked secretion. In addition, expression of effector domain mutants of Rac1-V12 that exhibit reduced activation of the cytoskeletal regulators Pak1 and Partner of Rac1 (POR1) resulted in a loss of Rac1-V12-mediated enhancement of evoked secretion. These findings suggest that Rac1, in part, functions to modulate secretion through actions on the cytoskeleton. Consistent with this hypothesis, the actin modifying drugs phalloidin and jasplakinolide enhanced secretion, while latrunculin-A inhibited secretion and eliminated the secretory effects of Rac1-V12. In summary, Rac1 was activated by secretory stimuli and modulated the secretory pathway downstream of Ca2+ influx, partly through regulation of cytoskeletal organization.

摘要

Rho家族GTP酶是细胞骨架重组的主要介质,尽管也有报道称它们可调节细胞分泌。然而,在神经和神经内分泌细胞中,分泌刺激激活Rho家族GTP酶的程度仍不清楚。在牛肾上腺嗜铬细胞中,我们使用一种对活化GTP酶具有选择性的检测方法发现,分泌刺激可快速、选择性地激活Rac1,而非Cdc42。为了研究活化的Rac1对分泌的影响,我们在肾上腺嗜铬细胞中瞬时表达了Rac1的组成型活性突变体(Rac1-V12、Rac1-L61)。这些突变体促进了完整细胞群以及经洋地黄皂苷通透处理的细胞群以及全细胞膜片钳下细胞引发的分泌反应。显性负性Rac1突变体(Rac1-N17)对分泌没有影响。Rac1的负调节因子RhoGDI的表达抑制了分泌反应,而Rac1效应器的过表达,特别是p21活化激酶(Pak1)和肌动蛋白解聚因子(ADF)则促进了诱发分泌。此外,Rac1-V12效应器结构域突变体的表达导致细胞骨架调节因子Pak1和Rac1结合蛋白(POR1)的激活减少,从而导致Rac1-V12介导的诱发分泌增强作用丧失。这些发现表明,Rac1部分通过对细胞骨架的作用来调节分泌。与这一假设一致,肌动蛋白修饰药物鬼笔环肽和茉莉酸内酯增强了分泌,而拉特罗毒素A抑制了分泌并消除了Rac1-V12的分泌效应。总之,Rac1被分泌刺激激活,并部分通过调节细胞骨架组织来调节Ca2+内流下游的分泌途径。

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