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Notch1 modulates timing of G1-S progression by inducing SKP2 transcription and p27Kip1 degradation

机译:Notch1通过诱导SKP2转录和p27Kip1降解来调节G1-S进程的时机。

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摘要

Cyclin-dependent kinase inhibitors (CKIs) and Notch receptor activation have been shown to influence adult stem cells and progenitors by altering stem cell self-renewal and proliferation. Yet, no interaction between these molecular pathways has been defined. Here we show that ligand-independent and ligand-dependent activation of Notch1 induces transcription of the S phase kinase–associated protein 2 (SKP2), the F-box subunit of the ubiquitin-ligase complex SCFSKP2 that targets proteins for degradation. Up-regulation of SKP2 by Notch signaling enhances proteasome-mediated degradation of the CKIs, p27Kip1 and p21Cip1, and causes premature entry into S phase. Silencing of SKP2 by RNA interference in G1 stabilizes p27Kip1 and p21Cip1 and abolishes Notch effect on G1-S progression. Thus, SKP2 serves to link Notch1 activation with the cell cycle machinery. This novel pathway involving Notch/SKP2/CKIs connects a cell surface receptor with proximate mediators of cell cycle activity, and suggests a mechanism by which a known physiologic mediator of cell fate determination interfaces with cell cycle control.
机译:细胞周期蛋白依赖性激酶抑制剂(CKIs)和Notch受体激活已显示通过改变干细胞的自我更新和增殖影响成年干细胞和祖细胞。然而,尚未定义这些分子途径之间的相互作用。在这里,我们显示Notch1的不依赖配体和依赖配体的激活诱导S期激酶相关蛋白2(SKP2)的转录,这是泛素-连接酶复合物SCFSKP2的F-box亚基,其靶向蛋白质进行降解。 Notch信号上调SKP2会增强蛋白酶体介导的CKI,p27Kip1和p21Cip1的降解,并导致过早进入S期。 RNA干扰在G1中沉默SKP2使p27Kip1和p21Cip1稳定,并消除了Notch对G1-S进程的影响。因此,SKP2用于将Notch1激活与细胞周期机制联系起来。这种涉及Notch / SKP2 / CKI的新途径将细胞表面受体与细胞周期活性的邻近介质连接起来,并提出了一种机制,通过该机制,细胞命运决定的已知生理介质可与细胞周期控制相互作用。

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