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Ras activation in response to phorbol ester proceeds independently of the EGFR via an unconventional nucleotide-exchange factor system in COS-7 cells

机译:响应佛波酯的Ras激活通过COS-7细胞中的非常规核苷酸交换因子系统独立于EGFR进行

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摘要

Ras is a major mediator of PE (phorbol ester) effects in mammalian cells. Various mechanisms for PE activation of Ras have been reported [Downward, Graves, Warne, Rayter and Cantrell (1990) Nature (London) >346, 719–723; Shu, Wu, Mosteller and Broek (2002) Mol. Cell. Biol. >22, 7758–7768; Roose, Mollenauer, Gupta, Stone and Weiss (2005) Mol. Cell. Biol. >25, 4426–4441; Grosse, Roelle, Herrlich, Höhn and Gudermann (2000) J. Biol. Chem. >275, 12251–12260], including pathways that target GAPs (GTPase-activating proteins) for inactivation and those that result in activation of GEFs (guanine nucleotide-exchange factors) Sos (son of sevenless homologue) or RasGRP (RAS guanyl releasing protein). However, a biochemical link between PE and GAP inactivation is missing and GEF stimulation is hard to reconcile with the observation that dominant-negative S17N-Ras does not compromise Ras-dependent ERK (extracellular-signal-regulated kinase) activation by PE. We have addressed this controversy and carried out an in-depth biochemical study of PE-induced Ras activation in COS-7 cells. Using a cell-permeabilization approach to monitor nucleotide exchange on Ras, we demonstrate that PE-induced Ras-GTP accumulation results from GEF stimulation. Nucleotide exchange stimulation by PE is prevented by PKC (protein kinase C) inhibition but not by EGFR [EGF (epidermal growth factor) receptor] blockade, despite the fact that EGFR inhibition aborts basal and PE-induced Shc (Src homology and collagen homology) phosphorylation and Shc–Grb2 (growth-factor-receptor-bound protein 2) association. In fact, EGFR inhibition ablates basal nucleotide exchange on Ras in growth-arrested COS-7 cells. These data disclose the existence of two separate GEF systems that operate independently from each other to accomplish PE-dependent formation of Ras-GTP and to maintain resting Ras-GTP levels respectively. We document that COS-7 cells do not express RasGRP and present evidence that the PE-responsive GEF system may involve PKC-dependent phosphorylation of Sos. More fundamentally, these observations shed new light on enigmatic issues such as the inefficacy of S17N-Ras in blocking PE action or the role of the EGFR in heterologous agonist activation of the Ras/ERK pathway.
机译:Ras是哺乳动物细胞中PE(佛波酯)作用的主要介质。已经报道了多种PEs激活Ras的机制[Downward,Graves,Warne,Rayter and Cantrell(1990)Nature(London)> 346 ,719-723; Shu,Wu,Mosteller and Broek(2002)分子。细胞。生物学> 22 ,7758–7768; Roose,Mollenauer,Gupta,Stone和Weiss(2005)Mol。细胞。生物学> 25 ,4426–4441; Grosse,Roelle,Herrlich,Höhn和Gudermann(2000)J.化学> 275 ,12251–12260],包括针对失活的靶向GAP(GTPase活化蛋白)的通路以及导致GEF(鸟嘌呤核苷酸交换因子)Sos(无七种同源物的儿子)活化的通路或RasGRP(RAS鸟嘌呤释放蛋白)。然而,PE和GAP失活之间缺乏生化联系,GEF刺激很难与显性阴性S17N-Ras不会损害PE激活的Ras依赖性ERK(细胞外信号调节激酶)激活相一致。我们已经解决了这个争议,并对PE诱导的COS-7细胞中Ras活化进行了深入的生化研究。使用细胞通透性方法来监测Ras上的核苷酸交换,我们证明了PE诱导的Ras-GTP积累是由GEF刺激引起的。尽管EGFR抑制会中止基础和PE诱导的Shc(Src同源性和胶原同源性),但通过PKC(蛋白激酶C)抑制可阻止PE进行的核苷酸交换刺激,但可通过EGFR [EGF(表皮生长因子)受体]阻滞来阻止PE的核苷酸交换刺激。磷酸化和Shc–Grb2(生长因子受体结合蛋白2)缔合。实际上,EGFR抑制抑制了生长停滞的COS-7细胞中Ras的基础核苷酸交换。这些数据揭示了两个独立的GEF系统的存在,它们彼此独立运行以完成PE依赖性的Ras-GTP形成并分别维持静止的Ras-GTP水平。我们记录到COS-7细胞不表达RasGRP,并提供证据表明PE反应性GEF系统可能涉及Sos的PKC依赖性磷酸化。从根本上讲,这些观察为诸如S17N-Ras在阻止PE作用中无效或EGFR在Ras / ERK途径的异源激动剂激活中的作用之类的神秘问题提供了新的思路。

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