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A caspase-dependent cleavage of CDC25A generates an active fragment activating cyclin-dependent kinase 2 during apoptosis.

机译:CDC25A的半胱天冬酶依赖性切割产生凋亡过程中激活细胞周期蛋白依赖性激酶2的活性片段。

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摘要

The cellular level of the CDC25A phosphatase is tightly regulated during both the normal and genotoxic-perturbed cell cycle. Here, we describe a caspase-dependent cleavage of this protein at residue D223 in non-genotoxic apoptotic conditions. This specific proteolysis generates a catalytically active C-terminal fragment that localizes to the nuclear compartment. Accumulation of this active CDC25A fragment leads to reduced inhibitory phosphorylation of the CDC25A substrate cyclin-dependent kinase 2 (CDK2) on Tyr15. Moreover, CDK2 was found stably associated with this fragment, as well as with an ectopically expressed CDC25A224-525 truncation mutant that mimicks the cleavage product. Ectopic expression of this mutant induced CDK2 Tyr15 dephosphorylation, whereas its catalytically inactive version did not. Finally, this 224-525 mutant initiated apoptosis when transfected into HeLa cells, whereas its catalytic inactive form did not. Altogether, this study demonstrates for the first time that caspase-dependent cleavage of CDC25A is a central step linking CDK2 activation with non-genotoxic apoptotic induction.
机译:CDC25A磷酸酶的细胞水平在正常和遗传毒性扰动的细胞周期中均受到严格调节。在这里,我们描述了在非遗传毒性的细胞凋亡条件下,在残基D223处该蛋白的半胱天冬酶依赖性切割。这种特定的蛋白水解产生定位于核区室的具有催化活性的C端片段。此活性CDC25A片段的积累导致Tyr15上CDC25A底物细胞周期蛋白依赖性激酶2(CDK2)的抑制性磷酸化降低。而且,发现CDK2稳定地与该片段以及与模仿切割产物的异位表达的CDC25A224-525截短突变体相关。该突变体的异位表达诱导了CDK2 Tyr15的去磷酸化作用,而其催化非活性形式则没有。最后,该224-525突变体在转染到HeLa细胞中后启动了凋亡,而其催化失活形式则没有。总之,这项研究首次证明了依赖caspase的CDC25A裂解是将CDK2激活与非遗传毒性凋亡诱导联系起来的关键步骤。

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