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首页> 外文期刊>Journal of molecular cell biology >The steady-state level of CDK4 protein is regulated by antagonistic actions between PAQR4 and SKP2 and involved in tumorigenesis
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The steady-state level of CDK4 protein is regulated by antagonistic actions between PAQR4 and SKP2 and involved in tumorigenesis

机译:CDK4蛋白的稳态水平受PAQR4和SKP2之间的拮抗作用,并参与肿瘤发生

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CDK4 is crucial for G1-to-S transition of cell cycle. It is well established that ubiquitin-mediated degradations of CDK inhibitors and cyclins are pivotal for the timely and unidirectional progression of cell cycle. However, how CDK4 itself is modulated by ubiquitin-mediated degradation has been elusive. Here we report that the steady-state level of CDK4 is controlled by PAQR4, a member of the progestin and adipoQ receptor family, and SKP2, an E3 ubiquitin ligase. Knockdown of PAQR4 leads to reduction of cell proliferation, accompanied by reduced protein level of CDK4. PAQR4 reduces polyubiquitination and degradation of CDK4. PAQR4 interacts with the C-terminal lobe of CDK4. On the other hand, SKP2 also interacts with the C-terminal lobe of CDK4 and enhances polyubiquitination and degradation of CDK4. Importantly, PAQR4 and SKP2 bind to the same region in CDK4, and PAQR4 competes with SKP2 for the binding, thereby abrogating SKP2-mediated ubiquitination of CDK4. Using a two-stage DMBA/TPA-induced skin cancer model, we find that PAQR4-deleted mice are resistant to chemical carcinogen-induced tumor formation. Collectively, our findings reveal that the steady-state level of CDK4 is controlled by the antagonistic actions between PAQR4 and SKP2, contributing to modulation of cell proliferation and tumorigenesis.
机译:CDK4对于细胞周期的G1到S转变至关重要。很好地确定,泛素介导的CDK抑制剂和细胞周期的降解是用于细胞周期的及时和单向进展的关键。然而,CDK4本身是如何通过泛素介导的降解调节的,这已经难以捉摸。在这里,我们认为CDK4的稳态水平由PAQR4,孕激素和AdipoQ受体家族的成员和SKP2,e3泛素连接酶控制。 PAQR4的敲低导致细胞增殖的降低,伴有CDK4的蛋白质水平降低。 PAQR4减少了CDK4的多聚吡啶化和降解。 PAQR4与CDK4的C末端叶相互作用。另一方面,SKP2也与CDK4的C末端叶片相互作用,增强了CDK4的多聚泛素和降解。重要的是,PAQR4和SKP2在CDK4中的相同区域结合,PAQR4与SKP2竞争结合,从而消除SKP2介导的CDK4的泛素化。使用两级DMBA / TPA诱导的皮肤癌模型,我们发现PAQR4缺失的小鼠对化学致癌肿瘤形成有抵抗力。统称,我们的研究结果表明,CDK4的稳态水平由PAQR4和SKP2之间的拮抗动作控制,有助于调节细胞增殖和肿瘤发生。

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