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泛素信号传导:化学来救援。

Ubiquitin Signaling: Chemistry Comes to the Rescue.

作者信息

Mali Sachitanand M, Singh Sumeet K, Eid Emad, Brik Ashraf

机构信息

Schulich Faculty of Chemistry, Technion-Israel Institute of Technology , 3200008 Haifa, Israel.

出版信息

J Am Chem Soc. 2017 Apr 12;139(14):4971-4986. doi: 10.1021/jacs.7b00089. Epub 2017 Mar 28.

Abstract

Posttranslational modification of proteins by ubiquitin (Ub), i.e., ubiquitination, mediates a variety of cellular processes, including protein homeostasis, cell cycle, DNA repair, and viral infections. Understanding the molecular mechanism of ubiquitination in these events is the basis for unraveling its precise role in health and disease. However, the inherent complexity of Ub signaling due to the high atomic complexity of Ub conjugates, where Ub is attached to other Ub molecules and to protein substrates in various forms, imposes a major challenge for these studies. In this regard, the enzymatic approaches employed for the preparation of important Ub conjugates have severe limitations to deliver them in high homogeneity and in adequate amounts for the desired study. Recent developments in the area of chemical synthesis and semisynthesis of proteins offer great solutions to the enzymatic limitations and enabling the preparation of various Ub conjugates with precise control over the atomic structure. These conjugates significantly contribute to deciphering Ub signaling at the molecular level, and with the synthetic tools in hand, chemical biologists have become key players in efforts toward understanding the complexity of the Ub code. In this Perspective, we highlight the key contributions of these synthetic approaches and how the development of novel Ub-based reagents is greatly assisting in uncovering unknown aspects of Ub signaling. We also discuss future aspirations to address unresolved questions in this exciting area of research.

摘要

蛋白质的泛素(Ub)化修饰,即泛素化,介导多种细胞过程,包括蛋白质稳态、细胞周期、DNA修复和病毒感染。了解这些事件中泛素化的分子机制是阐明其在健康和疾病中确切作用的基础。然而,由于泛素缀合物的高原子复杂性,泛素信号传导具有内在复杂性,其中泛素以各种形式连接到其他泛素分子和蛋白质底物上,这给这些研究带来了重大挑战。在这方面,用于制备重要泛素缀合物的酶促方法在以高均一性和足够量提供它们以用于所需研究方面存在严重局限性。蛋白质化学合成和半合成领域的最新进展为酶促局限性提供了很好的解决方案,并能够精确控制原子结构来制备各种泛素缀合物。这些缀合物在分子水平上对破译泛素信号传导有重大贡献,有了这些合成工具,化学生物学家已成为理解泛素密码复杂性努力中的关键角色。在这篇观点文章中,我们强调了这些合成方法的关键贡献,以及新型泛素基试剂的开发如何极大地帮助揭示泛素信号传导中未知的方面。我们还讨论了在这个令人兴奋的研究领域中解决未解决问题的未来期望。

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