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Regulation of raf-1 by direct feedback phosphorylation

机译:通过直接反馈磷酸化调节raf-1

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摘要

The Raf-1 kinase is an important signaling molecule, functioning in the Ras pathway to transmit mitogenic, differentiative, and oncogenic signals to the downstream kinases MEK and ERK. Because of its integral role in cell signaling, Raf-1 activity must be precisely controlled. Previous studies have shown that phosphorylation is required for Raf-1 activation, and here, we identify six phosphorylation sites that contribute to the downregulation of Raf-1 after mitogen stimulation. Five of the identified sites are proline-directed targets of activated ERK, and phosphorylation of all six sites requires MEK signaling, indicating a negative feedback mechanism. Hyperphosphorylation of these six sites inhibits the Ras/Raf-1 interaction and desensitizes Raf-1 to additional stimuli. The hyperphosphorylated/desensitized Raf-1 is subsequently dephosphorylated and returned to a signaling-competent state through interactions with the protein phosphatase PP2A and the prolyl isomerase Pin1. These findings elucidate a critical Raf-1 regulatory mechanism that contributes to the sensitive, temporal modulation of Ras signaling.
机译:Raf-1激酶是重要的信号分子,在Ras途径中发挥功能,将有丝分裂,分化和致癌信号传递至下游激酶MEK和ERK。由于其在细胞信号传导中的重要作用,因此必须精确控制Raf-1的活性。以前的研究表明,Raf-1激活需要磷酸化,在这里,我们确定了六个有丝分裂原,这两个有丝分裂原在促有丝分裂原刺激后能下调Raf-1。已识别的位点中有五个是激活的ERK的脯氨酸定向靶标,所有六个位点的磷酸化都需要MEK信号传导,这表明存在负反馈机制。这六个位点的过度磷酸化抑制了Ras / Raf-1相互作用,并使Raf-1对其他刺激不敏感。随后,通过与蛋白质磷酸酶PP2A和脯氨酰异构酶Pin1的相互作用,使高磷酸化/脱敏的Raf-1脱磷酸并返回到信号传递状态。这些发现阐明了关键的Raf-1调节机制,有助于Ras信号转导的敏感,暂时的调制。

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