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SCF-mediated protein degradation and cell cycle control

机译:SCF介导的蛋白质降解和细胞周期控制

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The regulatory step in ubiquitin (Ub)-mediated protein degradation involves recognition and selection of the target substrate by an E3 Ub-ligase. E3 Ub-ligases evoke sophisticated mechanisms to regulate their activity temporally and spatially, including multiple post-translational modifications, combinatorial E3 Ub-ligase pathways, and subcellular localization. The phosphodegrons of many substrates incorporate the activities of multiple kinases, and ubiquitination only occurs when all necessary phosphorylation signals have been incorporated. In this manner, the precise timing of degradation can be controlled. Another way that the Ub pathway tightly controls the timing of proteolysis is with multiple E3 Ub-ligases acting upon a single target. Lastly, subcellular localization can either promote or prevent degradation by regulating the accessibility of kinases and E3 Ub-ligases. This review highlights recent findings that exemplify these emerging themes in the regulation of E3 Ub-ligase substrate recognition.
机译:泛素(UB)介导的蛋白质降解中的调节步骤涉及通过E3 UB-Cigase识别和选择靶衬底。 E3 UB-Ligase唤起复杂的机制,以在时间和空间上调节它们的活动,包括多次翻译后修饰,组合E3 UB-Cigase途径和亚细胞定位。许多底物的磷脂纳入多个激酶的活性,并且仅在掺入所有必要的磷酸化信号时发生泛素化。以这种方式,可以控制劣化的精确定时。另一种方式使得UB途径紧密地控制蛋白水解的时序是用作用在单个靶标作用的多个E3 UB-连接酶。最后,亚细胞定位可以通过调节激酶和E3 UB-Ligases的可访问性来促进或防止降解。本综述突出了最近调查结果,以举例说明这些新兴主题在调节E3 UB-C连接酶底物识别中。

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