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Phosphorylation by p38 MAPK as an Alternative Pathway for GSK3β Inactivation

机译:p38 MAPK磷酸化作为GSK3β失活的替代途径

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Glycogen synthase kinase 3p (GSK3p) is involved in metabolism, neurodegeneration, and cancer. Inhibition of GSK3P activity is the primary mechanism that regulates this widely expressed active kinase. Although the protein kinase Akt inhibits GSK3p by phosphorylation at the N terminus, preventing Akt-mediated phosphorylation does not affect the cell-survival pathway activated through the GSK3P substrate p-catenin. Here, we show that p38 mitogen-activated protein kinase (MAPK) also inactivates GSK3P by direct phosphorylation at its C terminus, and this inactivation can lead to an accumulation of p-catenin. p38 MAPK-mediated phosphorylation of GSK3P occurs primarily in the brain and thymocytes. Activation of p-catenin-mediated signaling through GSK3P inhibition provides a potential mechanism for p38 MAPK-mediated survival in specific tissues.
机译:糖原合酶激酶3p(GSK3p)参与代谢,神经变性和癌症。 GSK3P活性的抑制是调节这种广泛表达的活性激酶的主要机制。尽管蛋白激酶Akt通过N端的磷酸化抑制GSK3p,但阻止Akt介导的磷酸化并不影响通过GSK3P底物对联蛋白激活的细胞存活途径。在这里,我们显示p38丝裂原激活的蛋白激酶(MAPK)还通过在其C端进行直接磷酸化来使GSK3P失活,这种失活会导致p-catenin的积累。 p38 MAPK介导的GSK3P磷酸化主要发生在大脑和胸腺细胞中。通过GSK3P抑制激活p-catenin介导的信号提供了p38 MAPK介导的特定组织中存活的潜在机制。

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