Carnero A, Lacal J C
Instituto de Investigaciones Biomédicas, Consejo Superior de Investigaciones Científicas, Madrid, Spain.
Mol Cell Biol. 1995 Feb;15(2):1094-101. doi: 10.1128/MCB.15.2.1094.
Signal transduction induced by generations of second messengers from membrane phospholipids is a major regulatory mechanism in the control of cell proliferation. Indeed, oncogenic p21ras alters the intracellular levels of phospholipid metabolites in both mammalian cells and Xenopus oocytes. However, it is still controversial whether this alteration it is biologically significant. We have analyzed the ras-induced signal transduction pathway in Xenopus oocytes and have correlated its mechanism of activation with that of the three most relevant phospholipases (PLs). After microinjection, ras-p21 induces a rapid PLD activation followed by a late PLA2 activation. By contrast, phosphatidylcholine-specific PLC was not activated under similar conditions. When each of these PLs was studied for its ability to activate intracellular signalling kinases, all of them were found to activate maturation-promoting factor efficiently. However, only PLD was able to activate MAP kinase and S6 kinase II, a similar pattern to that induced by p21ras proteins. Thus, the comparison of activated enzymes after microinjection of p21ras or PLs indicated that only PLD microinjection mimetized p21ras signalling. Finally, inhibition of the endogenous PLD activity by neomycin substantially reduced the biological activity of p21ras. All these results suggest that PLD activation may constitute a relevant step in ras-induced germinal vesicle breakdown in Xenopus oocytes.
由膜磷脂产生的第二信使所诱导的信号转导是控制细胞增殖的一种主要调节机制。事实上,致癌性p21ras会改变哺乳动物细胞和非洲爪蟾卵母细胞中磷脂代谢物的细胞内水平。然而,这种改变是否具有生物学意义仍存在争议。我们分析了非洲爪蟾卵母细胞中ras诱导的信号转导途径,并将其激活机制与三种最相关的磷脂酶(PLs)的激活机制进行了关联。显微注射后,ras-p21诱导快速的PLD激活,随后是晚期的PLA2激活。相比之下,磷脂酰胆碱特异性PLC在类似条件下未被激活。当研究这些PLs各自激活细胞内信号激酶的能力时,发现它们都能有效地激活促成熟因子。然而,只有PLD能够激活MAP激酶和S6激酶II,这与p21ras蛋白诱导的模式相似。因此,显微注射p21ras或PLs后对激活酶的比较表明,只有显微注射PLD能模拟p21ras信号传导。最后,新霉素对内源性PLD活性的抑制显著降低了p21ras的生物学活性。所有这些结果表明,PLD激活可能是非洲爪蟾卵母细胞中ras诱导的生发泡破裂的一个相关步骤。