Nguyen Lan K
Brief Bioinform. 2016 May;17(3):479-93. doi: 10.1093/bib/bbv052. Epub 2015 Jul 25.
Post-translational modification of cellular proteins by ubiquitin is a pivotal regulatory event that controls not only protein degradation, but also a variety of non-proteolytic functions. Ubiquitination is involved in a broad array of physiological processes, and its dysregulation has been associated with many human diseases, including neuronal disorders and cancers. Ubiquitin-mediated signalling has thus come to the forefront of biomedical research. It is increasingly apparent that ubiquitination is a highly complex and dynamic process, evidenced by a myriad of ways of ubiquitin chain formation, tightly regulatory mechanisms involving E3 ligases and deubiquitinating enzymes and extensive crosstalk with other post-translational modifications. To unravel the complexity of ubiquitination and understand the dynamic properties of ubiquitin-mediated signalling are challenging, but critical topics in ubiquitin research, which will undoubtedly benefit our effort in developing strategies that could target ubiquitin signalling for therapeutics. Computational modelling and model-based approaches are emerging as promising tools that help tackle the complexity and provide useful frameworks for quantitative and dynamical analysis of ubiquitin signalling. In this article, I will discuss recent advances in our understanding of the dynamic behaviour of ubiquitination from both theoretical and experimental studies, and aspects of ubiquitin signalling that may have major dynamical consequences. It is expected the discussed issues will be of relevant interest to both the ubiquitin and systems biology fields.
泛素对细胞蛋白质进行的翻译后修饰是一个关键的调控事件,它不仅控制蛋白质降解,还涉及多种非蛋白水解功能。泛素化参与了广泛的生理过程,其失调与许多人类疾病相关,包括神经紊乱和癌症。因此,泛素介导的信号传导已成为生物医学研究的前沿领域。越来越明显的是,泛素化是一个高度复杂且动态的过程,这体现在泛素链形成的多种方式、涉及E3连接酶和去泛素化酶的严格调控机制以及与其他翻译后修饰的广泛相互作用上。揭示泛素化的复杂性并理解泛素介导信号传导的动态特性具有挑战性,但却是泛素研究中的关键课题,这无疑将有助于我们开发针对泛素信号传导的治疗策略。计算建模和基于模型的方法正在成为有前景的工具,有助于应对这种复杂性,并为泛素信号传导的定量和动态分析提供有用的框架。在本文中,我将讨论从理论和实验研究中我们对泛素化动态行为的最新理解进展,以及泛素信号传导中可能产生重大动态影响的方面。预计所讨论的问题将对泛素和系统生物学领域都具有相关的研究价值。