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Identification of novel in vivo Raf-1 phosphorylation sites mediating positive feedback Raf-1 regulation by extracellular signal-regulated kinase

机译:鉴定新的体内Raf-1磷酸化位点介导细胞外信号调节激酶的正反馈Raf-1调节

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摘要

The Ras-Raf-mitogen-activated protein kinase cascade is a key growth-signaling pathway, which uncontrolled activation results in transformation. Although the exact mechanisms underlying Raf-1 regulation remain incompletely understood, phosphorylation has been proposed to play a critical role in this regulation. We report here three novel epidermal growth factor-induced in vivo Raf-1 phosphorylation sites that mediate positive feedback Raf-1 regulation. Using mass spectrometry, we identified Raf-1 phosphorylation on three SP motif sites: S289/S296/S301 and confirmed their identity using two-dimensional-phosphopeptide mapping and phosphospecific antibodies. These sites were phosphorylated by extracellular signal-regulated kinase (ERK)-1 in vitro, and their phosphorylation in vivo was dependent on endogenous ERK activity. Functionally, ERK-1 expression sustains Raf-1 activation in a manner dependent on Raf-1 phosphorylation on the identified sites, and S289/296/301A substitution markedly decreases the in vivo activity of Raf-1 S259A. Importantly, the ERK-phosphorylated Raf-1 pool has 4 times higher specific kinase activity than total Raf-1, and its phosphopeptide composition is similar to that of the general Raf-1 population, suggesting that the preexisting, phosphorylated Raf-1, representing the activatable Raf-1 pool, is the Raf-1 subpopulation targeted by ERK. Our study describes the identification of new in vivo Raf-1 phosphorylation sites targeted by ERK and provides a novel mechanism for a positive feedback Raf-1 regulation.
机译:Ras-Raf-促分裂原活化的蛋白激酶级联反应是关键的生长信号通路,不受控制的活化导致转化。尽管仍未完全了解Raf-1调控的确切机制,但已提出磷酸化在该调控中起关键作用。我们在这里报告了三个新颖的表皮生长因子诱导的体内Raf-1磷酸化位点,介导阳性反馈Raf-1调节。使用质谱法,我们在三个SP基序位点:S289 / S296 / S301上鉴定了Raf-1磷酸化,并使用二维磷酸肽图谱和磷酸特异性抗体确认了它们的身份。这些位点在体外被细胞外信号调节激酶(ERK)-1磷酸化,它们在体内的磷酸化取决于内源性ERK活性。在功能上,ERK-1表达以依赖于鉴定位点上Raf-1磷酸化的方式维持Raf-1活化,并且S289 / 296 / 301A取代显着降低Raf-1 S259A的体内活性。重要的是,ERK磷酸化的Raf-1池比总Raf-1的特异性激酶活性高4倍,并且其磷酸肽组成与一般Raf-1群体相似,这表明先前存在的磷酸化Raf-1代表可激活的Raf-1池是ERK靶向的Raf-1亚群。我们的研究描述了ERK靶向的新的体内Raf-1磷酸化位点的鉴定,并为正反馈Raf-1调节提供了新的机制。

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