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首页> 外文期刊>The Biochemical Journal >Ubiquitin links to cytoskeletal dynamics, cell adhesion and migration. [Review]
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Ubiquitin links to cytoskeletal dynamics, cell adhesion and migration. [Review]

机译:泛素与细胞骨架动力学,细胞粘附和迁移有关。 [评论]

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摘要

Post-translational modifications are used by cells to link additional information to proteins. Most modifications are subtle and concern small moieties such as a phosphate group or a lipid. In contrast, protein ubiquitylation entails the covalent attachment of a full-length protein such as ubiquitin. The protein ubiquitylation machinery is remarkably complex, comprising more than 15 Ubls (ubiquitin-like proteins) and several hundreds of ubiquitin-conjugating enzymes. Ubiquitin is best known for its role as a tag that induces protein destruction either by the proteasome or through targeting to lysosomes. However, addition of one or more Ubls also affects vesicular traffic, protein-protein interactions and signal transduction. It is by now well established that ubiquitylation is a component of most, if not all, cellular signalling pathways. Owing to its abundance in controlling cellular functions, ubiquitylation is also of key relevance to human pathologies, including cancer and inflammation. In the present review, we focus on its role in the control of cell adhesion, polarity and directional migration. It will become clear that protein modification by Ubls occurs at every level from the receptors at the plasma membrane down to cytoskeletal components such as actin, with differential consequences for the pathway's final output. Since ubiquitylation is fast as well as reversible, it represents a bona fide signalling event, which is used to fine-tune a cell's responses to receptor agonists.
机译:细胞使用翻译后修饰将其他信息链接到蛋白质。大多数修饰是微妙的,并且涉及小部分,例如磷酸基团或脂质。相反,蛋白质泛素化需要全长蛋白质(例如泛素)的共价连接。蛋白质泛素化机制非常复杂,包含超过15种Ubls(类泛素蛋白)和数百种泛素结合酶。泛素最著名的是其作为标签的作用,该标签通过蛋白酶体或靶向溶酶体来诱导蛋白质破坏。但是,添加一种或多种Ubls也会影响囊泡运输,蛋白质-蛋白质相互作用和信号转导。到现在为止,众所周知,泛素化是大多数(如果不是全部)细胞信号通路的组成部分。由于其在控制细胞功能方面的丰富性,泛素化作用也与人类病理学(包括癌症和炎症)具有重要关系。在当前的审查中,我们专注于其在控制细胞粘附,极性和方向迁移中的作用。显而易见的是,Ubls对蛋白质的修饰发生在从质膜受体到细胞骨架成分(例如肌动蛋白)的各个水平,对信号通路的最终输出产生不同的影响。由于泛素化既快速又可逆,因此代表了真正的信号转导事件,可用于微调细胞对受体激动剂的反应。

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