Shil Sumit, Tsuruta Mitsuki, Kawauchi Keiko, Miyoshi Daisuke
Faculty of Frontiers of Innovative Research in Science and Technology (FIRST), Konan University, 7-1-20 Minatojima-minamimachi, Chuo-ku, Kobe 650-0047, Hyogo, Japan.
BioTech (Basel). 2023 Apr 1;12(2):26. doi: 10.3390/biotech12020026.
The liquid-liquid phase separation (LLPS) of biomolecules induces condensed assemblies called liquid droplets or membrane-less organelles. In contrast to organelles with lipid membrane barriers, the liquid droplets induced by LLPS do not have distinct barriers (lipid bilayer). Biomolecular LLPS in cells has attracted considerable attention in broad research fields from cellular biology to soft matter physics. The physical and chemical properties of LLPS exert a variety of functions in living cells: activating and deactivating biomolecules involving enzymes; controlling the localization, condensation, and concentration of biomolecules; the filtration and purification of biomolecules; and sensing environmental factors for fast, adaptive, and reversible responses. The versatility of LLPS plays an essential role in various biological processes, such as controlling the central dogma and the onset mechanism of pathological diseases. Moreover, biomolecular LLPS could be critical for developing new biotechnologies such as the condensation, purification, and activation of a series of biomolecules. In this review article, we introduce some fundamental aspects and recent progress of biomolecular LLPS in living cells and test tubes. Then, we discuss applications of biomolecular LLPS toward biotechnologies.
生物分子的液-液相分离(LLPS)会诱导形成称为液滴或无膜细胞器的凝聚组装体。与具有脂质膜屏障的细胞器不同,由LLPS诱导形成的液滴没有明显的屏障(脂质双层)。细胞中的生物分子LLPS在从细胞生物学到软物质物理学等广泛的研究领域中引起了相当大的关注。LLPS的物理和化学性质在活细胞中发挥着多种功能:激活和失活涉及酶的生物分子;控制生物分子的定位、凝聚和浓度;生物分子的过滤和纯化;以及感知环境因素以实现快速、适应性和可逆的反应。LLPS的多功能性在各种生物过程中起着至关重要的作用,例如控制中心法则和病理疾病的发病机制。此外,生物分子LLPS对于开发一系列生物分子的凝聚、纯化和激活等新生物技术可能至关重要。在这篇综述文章中,我们介绍了活细胞和试管中生物分子LLPS的一些基本方面和最新进展。然后,我们讨论了生物分子LLPS在生物技术方面的应用。