首页> 外文期刊>Molecular and Cellular Biology >Ral-Specific Guanine Nucleotide Exchange Factor Activity Opposes Other Ras Effectors in PC12 Cells by Inhibiting Neurite Outgrowth
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Ral-Specific Guanine Nucleotide Exchange Factor Activity Opposes Other Ras Effectors in PC12 Cells by Inhibiting Neurite Outgrowth

机译:Ral特异性鸟嘌呤核苷酸交换因子活性通过抑制神经突的生长与PC12细胞中的其他Ras效应子相反。

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Ras proteins can activate at least three classes of downstream target proteins: Raf kinases, phosphatidylinositol-3 phosphate (PI3) kinase, and Ral-specific guanine nucleotide exchange factors (Ral-GEFs). In NIH 3T3 cells, activated Ral-GEFs contribute to Ras-induced cell proliferation and oncogenic transformation by complementing the activities of Raf and PI3 kinases. In PC12 cells, activated Raf and PI3 kinases mediate Ras-induced cell cycle arrest and differentiation into a neuronal phenotype. Here, we show that in PC12 cells, Ral-GEF activity acts opposite to other Ras effectors. Elevation of Ral-GEF activity induced by transfection of a mutant Ras protein that preferentially activates Ral-GEFs, or by transfection of the catalytic domain of the Ral-GEF Rgr, suppressed cell cycle arrest and neurite outgrowth induced by nerve growth factor (NGF) treatment. In addition, Rgr reduced neurite outgrowth induced by a mutant Ras protein that preferentially activates Raf kinases. Furthermore, inhibition of Ral-GEF activity by expression of a dominant negative Ral mutant accelerated cell cycle arrest and enhanced neurite outgrowth in response to NGF treatment. Ral-GEF activity may function, at least in part, through inhibition of the Rho family GTPases, CDC42 and Rac. In contrast to Ras, which was activated for hours by NGF treatment, Ral was activated for only ~20 min. These findings suggest that one function of Ral-GEF signaling induced by NGF is to delay the onset of cell cycle arrest and neurite outgrowth induced by other Ras effectors. They also demonstrate that Ras has the potential to promote both antidifferentiation and prodifferentiation signaling pathways through activation of distinct effector proteins. Thus, in some cell types the ratio of activities among Ras effectors and their temporal regulation may be important determinants for cell fate decisions between proliferation and differentiation.
机译:Ras蛋白可以激活至少三类下游目标蛋白:Raf激酶,磷脂酰肌醇3磷酸(PI3)激酶和Ral特异性鸟嘌呤核苷酸交换因子(Ral-GEF)。在NIH 3T3细胞中,活化的Ral-GEF通过补充Raf和PI3激酶的活性来促进Ras诱导的细胞增殖和致癌转化。在PC12细胞中,活化的Raf和PI3激酶介导Ras诱导的细胞周期停滞并分化为神经元表型。在这里,我们显示在PC12细胞中,Ral-GEF活性与其他Ras效应子相反。通过优先激活Ral-GEF的突变Ras蛋白的转染或通过转染Ral-GEF Rgr的催化域,抑制细胞周期阻滞和神经生长因子(NGF)诱导的神经突生长引起的Ral-GEF活性升高治疗。此外,Rgr减少了由优先激活Raf激酶的突变型Ras蛋白诱导的神经突向外生长。此外,响应于NGF处理,通过表达显性负性Ral突变体来抑制Ral-GEF活性可加速细胞周期停滞并增强神经突向外生长。 Ral-GEF活性可能至少部分通过抑制Rho家族GTPases,CDC42和Rac起作用。与NGF处理可激活数小时的Ras相比,Ral仅可激活约20分钟。这些发现表明,由NGF诱导的Ral-GEF信号传导的一种功能是延迟由其他Ras效应子诱导的细胞周期停滞和神经突向外生长。他们还证明Ras可能通过激活不同的效应蛋白来促进抗分化和前分化信号通路。因此,在某些细胞类型中,Ras效应子之间的活性比率及其时间调控可能是决定细胞增殖和分化之间命运的重要决定因素。

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