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首页> 外文期刊>The Journal of biological chemistry >Reciprocal Negative Regulation of PDK1 and ASK1 Signaling by Direct Interaction and Phosphorylation
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Reciprocal Negative Regulation of PDK1 and ASK1 Signaling by Direct Interaction and Phosphorylation

机译:通过直接相互作用和磷酸化的PDK1和Ask1信号传导的相互负调节

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Cell survival and death-inducing signals are tightly associated with each other, and the decision as to whether a cell survives or dies is determined by controlling the relationship between these signals. However, the mechanism underlying the reciprocal regulation of such signals remains unclear. In this study, we reveal a functional association between PDK1 (3-phosphoinositide-dependent protein kinase 1), a critical mediator of cell survival, and ASK1 (apoptosis signal-regulating kinase 1), an apoptotic stress-activated MAPKKK. The physical association between PDK1 and ASK1 is mediated through the pleckstrin homology domain of PDK1 and the C-terminal regulatory domain of ASK1 and is decreased by ASK1-activating stimuli, such as H2O2, tumor necrosis factor α, thapsigargin, and ionomycin, as well as insulin, a PDK1 stimulator. Wild-type PDK1, but not kinase-dead PDK1, negatively regulates ASK1 activity by phosphorylating Ser967, a binding site for 14-3-3 protein, on ASK1. PDK1 functionally suppresses ASK1-mediated AP-1 transactivation and H2O2-mediated apoptosis in a kinase-dependent manner. On the other hand, ASK1 has been shown to inhibit PDK1 functions, including PDK1-mediated regulation of apoptosis and cell growth, by phosphorylating PDK1 at Ser394 and Ser398, indicating that these putative phosphorylation sites are involved in the negative regulation of PDK1 activity. These results provide evidence that PDK1 and ASK1 directly interact and phosphorylate each other and act as negative regulators of their respective kinases in resting cells.
机译:细胞存活和死亡诱导信号彼此紧密地相关,并且通过控制这些信号之间的关系来确定细胞存活或模具的决定。然而,这种信号的相互调节的机制仍然尚不清楚。在该研究中,我们揭示了PDK1(3-磷酸膦酰基依赖性蛋白激酶1),细胞存活的临界介质之间的功能关系,以及Ask1(凋亡信号调节激酶1),凋亡应激激活的MAPKKK。 PDK1和Ask1之间的物理关联通过PDK1的PLECKSTRIN同源结构域和ASK1的C末端调节结构域介导,并且通过ASK1激活刺激减少,例如H2O2,肿瘤坏死因子α,尾剂和离子霉素作为胰岛素,PDK1刺激器。野生型PDK1,但不是激酶死亡PDK1,通过磷酸化Ser967负调节Ask1活性,ZHS1的14-3-3蛋白的结合位点。 PDK1用激酶依赖性方式在功能上抑制Ask1介导的AP-1转移激活和H2O2介导的细胞凋亡。另一方面,已经证明ASK1抑制PDK1功能,包括通过SER394和SER398的PDK1磷酸化PDK1的PDK1介导的凋亡和细胞生长调节,表明这些推定的磷酸化位点参与PDK1活性的负调节。这些结果提供了PDK1和Ask1的证据,并且彼此直接相互作用和磷酸化,并作为其各自激酶在静息细胞中的负调节剂。

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