Dai Yifan, You Lingchong, Chilkoti Ashutosh
Department of Biomedical Engineering, Duke University, Durham, NC USA.
Nat Rev Bioeng. 2023 Apr 17:1-15. doi: 10.1038/s44222-023-00052-6.
The concept of phase-separation-mediated formation of biomolecular condensates provides a new framework to understand cellular organization and cooperativity-dependent cellular functions. With growing understanding of how biological systems drive phase separation and how cellular functions are encoded by biomolecular condensates, opportunities have emerged for cellular control through engineering of synthetic biomolecular condensates. In this Review, we discuss how to construct synthetic biomolecular condensates and how they can regulate cellular functions. We first describe the fundamental principles by which biomolecular components can drive phase separation. Next, we discuss the relationship between the properties of condensates and their cellular functions, which informs the design of components to create programmable synthetic condensates. Finally, we describe recent applications of synthetic biomolecular condensates for cellular control and discuss some of the design considerations and prospective applications.
相分离介导的生物分子凝聚物形成的概念为理解细胞组织和依赖协同作用的细胞功能提供了一个新框架。随着对生物系统如何驱动相分离以及生物分子凝聚物如何编码细胞功能的理解不断加深,通过工程化合成生物分子凝聚物进行细胞控制的机会已经出现。在本综述中,我们讨论了如何构建合成生物分子凝聚物以及它们如何调节细胞功能。我们首先描述生物分子成分驱动相分离的基本原理。接下来,我们讨论凝聚物特性与其细胞功能之间的关系,这为设计创建可编程合成凝聚物的成分提供了依据。最后,我们描述了合成生物分子凝聚物在细胞控制方面的最新应用,并讨论了一些设计考虑因素和潜在应用。