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Research progress in protein post-translational modification

机译:蛋白质翻译后修饰的研究进展

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摘要

Protein post-translational modification plays an important role in organism. It makes the protein obtain more complicated structures, perfect functions, more accurate regulations and more specific operations. The most common protein post-translational modifications include ubiquitylation, phosphorylation, glycosylation, lipodation, methylation, and acetylation and so on. Ubiquitylation plays an essential role in cellular functions such as cellular differentiation, apoptosis, DNA repair, antigen processing, and stress response. Phosphorylation is related to physiological and pathological processes including cellular signal conduction, nervous activity, muscle contraction and proliferation, development and differentiation of cells. Protein glycosylation is of great importance for many cell processes like immunoprotection, virus replication, cell growth, and occurrence of inflammation and so on. Lipodation is vital to signal conduction. Histone methylation and acetylation are responsible for transcription regulation. In vivo, different post-translational modifications do not occur isolatedly, but influence each other's function and cooperate with each other. Understanding what influences the post-translational modifications will help to uncover cellular processes and protein network in molecular level and finally direct more precise drug design targeting molecules. Post-translational modification mimics are set to dominate the next wave of protein therapeutics and become powerful medicinal tools in the 21st century.
机译:蛋白质翻译后修饰在生物体中起重要作用。它使蛋白质获得更复杂的结构,更完善的功能,更准确的法规和更具体的操作。最常见的蛋白质翻译后修饰包括泛素化,磷酸化,糖基化,脂化,甲基化和乙酰化等。泛素化在诸如细胞分化,凋亡,DNA修复,抗原加工和应激反应等细胞功能中起着至关重要的作用。磷酸化与生理和病理过程有关,包括细胞信号传导,神经活动,肌肉收缩和增殖,细胞的发育和分化。蛋白质糖基化对于许多细胞过程(例如免疫保护,病毒复制,细胞生长和炎症的发生等)非常重要。血脂饱和对于信号传导至关重要。组蛋白甲基化和乙酰化负责转录调控。在体内,不同的翻译后修饰不是孤立发生的,而是会影响彼此的功能并相互配合。了解什么会影响翻译后修饰,将有助于揭示分子水平上的细胞过程和蛋白质网络,并最终指导针对分子的更精确的药物设计。翻译后修饰模拟物将主导下一波蛋白质治疗,并在21世纪成为强大的医学工具。

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