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肽介导的液-液相分离与生物分子凝聚物

Peptide-mediated liquid-liquid phase separation and biomolecular condensates.

作者信息

Li Guangle, Yuan Chengqian, Yan Xuehai

机构信息

State Key Laboratory of Biopharmaceutical Preparation and Delivery, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China.

School of Chemical Engineering, University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Soft Matter. 2025 Mar 5;21(10):1781-1812. doi: 10.1039/d4sm01477d.

Abstract

Liquid-liquid phase separation (LLPS) is a cornerstone of cellular organization, driving the formation of biomolecular condensates that regulate diverse biological processes and inspire innovative applications. This review explores the molecular mechanisms underlying peptide-mediated LLPS, emphasizing the roles of intermolecular interactions such as hydrophobic effects, electrostatic interactions, and π-π stacking in phase separation. The influence of environmental factors, such as pH, temperature, ionic strength, and molecular crowding on the stability and dynamics of peptide coacervates is examined, highlighting their tunable properties. Additionally, the unique physicochemical properties of peptide coacervates, including their viscoelastic behavior, interfacial dynamics, and stimuli-responsiveness, are discussed in the context of their biological relevance and engineering potential. Peptide coacervates are emerging as versatile platforms in biotechnology and medicine, particularly in drug delivery, tissue engineering, and synthetic biology. By integrating fundamental insights with practical applications, this review underscores the potential of peptide-mediated LLPS as a transformative tool for advancing science and healthcare.

摘要

液-液相分离(LLPS)是细胞组织的基石,驱动生物分子凝聚物的形成,这些凝聚物调节着各种生物过程,并激发了创新应用。本综述探讨了肽介导的液-液相分离的分子机制,强调了分子间相互作用如疏水作用、静电相互作用和π-π堆积在相分离中的作用。研究了环境因素如pH、温度、离子强度和分子拥挤对肽凝聚层稳定性和动力学的影响,突出了它们的可调性。此外,在其生物学相关性和工程潜力的背景下,讨论了肽凝聚层独特的物理化学性质,包括它们的粘弹性行为、界面动力学和刺激响应性。肽凝聚层正成为生物技术和医学中的多功能平台,特别是在药物递送、组织工程和合成生物学中。通过将基本见解与实际应用相结合,本综述强调了肽介导的液-液相分离作为推动科学和医疗保健的变革性工具的潜力。

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