Li Jingxian, Zhang Mengdi, Ma Weirui, Yang Bing, Lu Huasong, Zhou Fangfang, Zhang Long
MOE Laboratory of Biosystems Homeostasis & Protection and Innovation Center for Cell Signaling Network, Life Sciences Institute, Zhejiang University, Hangzhou, 310058, China.
School of Medicine, Zhejiang University City College, Hangzhou, 310015, Zhejiang, China.
Mol Biomed. 2022 May 11;3(1):13. doi: 10.1186/s43556-022-00075-2.
Liquid-liquid phase separation (LLPS) has received significant attention in recent biological studies. It refers to a phenomenon that biomolecule exceeds the solubility, condensates and separates itself from solution in liquid like droplets formation. Our understanding of it has also changed from memebraneless organelles to compartmentalization, muti-functional crucibles, and reaction regulators. Although this phenomenon has been employed for a variety of biological processes, recent studies mainly focus on its physiological significance, and the comprehensive research of the underlying physical mechanism is limited. The characteristics of side chains of amino acids and the interaction tendency of proteins function importantly in regulating LLPS thus should be pay more attention on. In addition, the importance of post-translational modifications (PTMs) has been underestimated, despite their abundance and crucial functions in maintaining the electrostatic balance. In this review, we first introduce the driving forces and protein secondary structures involved in LLPS and their different physical functions in cell life processes. Subsequently, we summarize the existing reports on PTM regulation related to LLPS and analyze the underlying basic principles, hoping to find some common relations between LLPS and PTM. Finally, we speculate several unreported PTMs that may have a significant impact on phase separation basing on the findings.
液-液相分离(LLPS)在最近的生物学研究中受到了广泛关注。它指的是生物分子超过其溶解度,凝聚并从溶液中分离出来形成液滴状的现象。我们对它的理解也从无膜细胞器转变为区室化、多功能坩埚和反应调节剂。尽管这种现象已被应用于多种生物学过程,但最近的研究主要集中在其生理意义上,而对其潜在物理机制的全面研究有限。氨基酸侧链的特性和蛋白质的相互作用倾向在调节液-液相分离中起着重要作用,因此应给予更多关注。此外,尽管翻译后修饰(PTM)在维持静电平衡方面具有丰富性和关键功能,但其重要性一直被低估。在这篇综述中,我们首先介绍了液-液相分离所涉及的驱动力和蛋白质二级结构,以及它们在细胞生命过程中的不同物理功能。随后,我们总结了与液-液相分离相关的翻译后修饰调控的现有报道,并分析其潜在的基本原理,希望找到液-液相分离与翻译后修饰之间的一些共同关系。最后,我们根据这些发现推测了几种可能对相分离有重大影响的未报道的翻译后修饰。