首页> 外文OA文献 >The Extracellular Signal-regulated Kinase–Mitogen-activated Protein Kinase Pathway Phosphorylates and Targets Cdc25A for SCFβ-TrCP-dependent Degradation for Cell Cycle Arrest
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The Extracellular Signal-regulated Kinase–Mitogen-activated Protein Kinase Pathway Phosphorylates and Targets Cdc25A for SCFβ-TrCP-dependent Degradation for Cell Cycle Arrest

机译:细胞外信号调节激酶-促分裂原活化的蛋白激酶途径磷酸化和目标Cdc25ASCFβ-TrCP依赖降解的细胞周期阻滞。

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摘要

The extracellular signal-regulated kinase (ERK) pathway is generally mitogenic, but, upon strong activation, it causes cell cycle arrest by a not-yet fully understood mechanism. In response to genotoxic stress, Chk1 hyperphosphorylates Cdc25A, a positive cell cycle regulator, and targets it for Skp1/Cullin1/F-box protein (SCF)β-TrCP ubiquitin ligase-dependent degradation, thereby leading to cell cycle arrest. Here, we show that strong ERK activation can also phosphorylate and target Cdc25A for SCFβ-TrCP-dependent degradation. When strongly activated in Xenopus eggs, the ERK pathway induces prominent phosphorylation and SCFβ-TrCP-dependent degradation of Cdc25A. p90rsk, the kinase downstream of ERK, directly phosphorylates Cdc25A on multiple sites, which, interestingly, overlap with Chk1 phosphorylation sites. Furthermore, ERK itself phosphorylates Cdc25A on multiple sites, a major site of which apparently is phosphorylated by cyclin-dependent kinase (Cdk) in Chk1-induced degradation. p90rsk phosphorylation and ERK phosphorylation contribute, roughly equally and additively, to the degradation of Cdc25A, and such Cdc25A degradation occurs during oocyte maturation in which the endogenous ERK pathway is fully activated. Finally, and importantly, ERK-induced Cdc25A degradation can elicit cell cycle arrest in early embryos. These results suggest that strong ERK activation can target Cdc25A for degradation in a manner similar to, but independent of, Chk1 for cell cycle arrest.
机译:细胞外信号调节激酶(ERK)途径通常是有丝分裂的,但是在强烈激活后,它通过尚未完全了解的机制引起细胞周期停滞。响应遗传毒性胁迫,Chk1使磷酸化Cdc25A(一种细胞周期调节剂)高磷酸化,并将其靶向Skp1 / Cullin1 / F-box蛋白(SCF)β-TrCP泛素连接酶依赖性降解,从而导致细胞周期停滞。在这里,我们表明强大的ERK激活也可以磷酸化和靶向Sdcβ-TrCP依赖性降解的Cdc25A。当在非洲爪蟾卵中被强烈激活时,ERK途径会诱导Cdc25A的显着磷酸化和SCFβ-TrCP依赖性降解。 ERK下游的激酶p90rsk直接将多个位点上的Cdc25A磷酸化,有趣的是,它与Chk1磷酸化位点重叠。此外,ERK本身会在多个位点上使Cdc25A磷酸化,在Chk1诱导的降解中,其主要位点显然被细胞周期蛋白依赖性激酶(Cdk)磷酸化。 p90rsk磷酸化和ERK磷酸化大致相等地和累加地促进了Cdc25A的降解,并且这种Cdc25A降解发生在卵母细胞成熟过程中,其中内源性ERK途径被完全激活。最后,重要的是,ERK诱导的Cdc25A降解可引起早期胚胎的细胞周期停滞。这些结果表明强大的ERK激活可以靶向Cdc25A进行降解,其方式类似于但不依赖于Chk1进行细胞周期停滞。

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