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Protein kinase CK2 phosphorylates and activates p21-activated kinase 1

机译:蛋白激酶CK2磷酸化并激活p21激活的激酶1

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Activation of the p21-activated kinase 1 (PAK1) is achieved through a conformational change that converts an inactive PAK1 dimer to an active monomer. In this paper, we show that this change is necessary but not sufficient to activate PAK1 and that it is, rather, required for CK2-dependent PAK1S223 phosphorylation that converts a monomeric PAK1 into a catalytically active form. This phosphorylation appears to be essential for autophosphorylation at specific residues and overall activity of PAK1. A phosphomimetic mutation (S223E) bypasses the requirement for GTPases in PAK1 activation, whereas the constitutive activity of the PAK1 mutant (PAK1H83,86L), postulated to mimic GTPase-induced structural changes, is abolished by inhibition of S223 phosphorylation. Thus, S223 is likely accessible to CK2 upon conformational changes of PAK1 induced by GTPase-dependent and GTPase-independent stimuli, suggesting that S223 phosphorylation may play a key role in the final step of the PAK1 activation process. The physiological significance of this phosphorylation is reinforced by the observations that CK2 is responsible for epidermal growth factor–induced PAK1 activation and that inhibition of S223 phosphorylation abrogates PAK1-mediated malignant transformation of prostate epithelial cells. Taken together, these findings identify CK2 as an upstream activating kinase of PAK1, providing a novel mechanism for PAK1 activation.
机译:p21激活的激酶1(PAK1)的激活是通过构象变化实现的,该构象变化将非活性的PAK1二聚体转化为活性单体。在本文中,我们表明这种改变是激活PAK1所必需的,但不足以激活CK2依赖的PAK1 S223 磷酸化反应,该反应将单体PAK1转化为催化活性形式。这种磷酸化似乎对于在特定残基的自磷酸化和PAK1的整体活性至关重要。磷酸化模拟突变(S223E)绕过了PAPa激活中对GTPases的要求,而假定可以模拟GTPase诱导的结构变化的PAK1突变体(PAK1 H83,86L )的组成性活性则被抑制所废除S223的磷酸化。因此,在由GTPase依赖性和GTPase依赖性刺激引起的PAK1构象变化时,CK2可能对CK2具有S223的可及性,这表明S223磷酸化可能在PAK1激活过程的最终步骤中起关键作用。 CK2负责表皮生长因子诱导的PAK1活化,并且S223磷酸化的抑制消除了PAK1介导的前列腺上皮细胞恶性转化,从而增强了这种磷酸化的生理意义。综上所述,这些发现确定CK2为PAK1的上游激活激酶,为PAK1激活提供了新的机制。

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