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Deubiquitylation and stabilization of p21 by USP11 is critical for cell-cycle progression and DNA damage responses

机译:USP11对p21的去泛素化和稳定作用对于细胞周期进程和DNA损伤反应至关重要

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摘要

p21WAF1/CIP1 is a broad-acting cyclin-dependent kinase inhibitor. Its stability is essential for proper cell-cycle progression and cell fate decision. Ubiquitylation by the multiple E3 ubiquitin ligase complexes is the major regulatory mechanism of p21, which induces p21 degradation. However, it is unclear whether ubiquitylated p21 can be recycled. In this study, we report USP11 as a deubiquitylase of p21. In the nucleus, USP11 binds to p21, catalyzes the removal of polyubiquitin chains conjugated onto p21, and stabilizes p21 protein. As a result, USP11 reverses p21 polyubiquitylation and degradation mediated by SCFSKP2, CRL4CDT2, and APC/CCDC20 in a cell-cycle–independent manner. Loss of USP11 causes the destabilization of p21 and induces the G1/S transition in unperturbed cells. Furthermore, p21 accumulation mediated by DNA damage is completely abolished in cells depleted of USP11, which results in abrogation of the G2 checkpoint and induction of apoptosis. Functionally, USP11-mediated stabilization of p21 inhibits cell proliferation and tumorigenesis in vivo. These findings reveal an important mechanism by which p21 can be stabilized by direct deubiquitylation, and they pinpoint a crucial role of the USP11-p21 axis in regulating cell-cycle progression and DNA damage responses.
机译:p21 WAF1 / CIP1 是一种作用广泛的细胞周期蛋白依赖性激酶抑制剂。其稳定性对于正确的细胞周期进程和决定细胞命运至关重要。多个E3泛素连接酶复合物的泛素化是p21的主要调控机制,可诱导p21降解。但是,尚不清楚泛素化的p21是否可以回收。在这项研究中,我们将USP11报告为p21的去泛素化酶。在细胞核中,USP11与p21结合,催化结合在p21上的聚泛素链的去除,并稳定p21蛋白。结果,USP11在细胞周期中逆转了SCF SKP2 ,CRL4 CDT2 和APC / C CDC20 介导的p21多泛素化和降解,独立的方式。 USP11的丢失会导致p21不稳定,并在不受干扰的细胞中诱导G1 / S过渡。此外,DNA介导的p21积累在消耗USP11的细胞中被完全消除,这导致G2检查点的废止和细胞凋亡的诱导。在功能上,USP11介导的p21稳定在体内抑制细胞增殖和肿瘤发生。这些发现揭示了通过直接去泛素化作用可以稳定p21的重要机制,并且它们指出了USP11-p21轴在调节细胞周期进程和DNA损伤反应中的关键作用。

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