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通过基因互补揭示生物分子凝聚物中的功能特异性。

Functional specificity in biomolecular condensates revealed by genetic complementation.

作者信息

Sabari Benjamin R, Hyman Anthony A, Hnisz Denes

机构信息

Laboratory of Nuclear Organization, Cecil H. and Ida Green Center for Reproductive Biology Sciences, University of Texas Southwestern Medical Center, Dallas, TX, USA.

Department of Molecular Biology, University of Texas Southwestern Medical Center, Dallas, TX, USA.

出版信息

Nat Rev Genet. 2025 Apr;26(4):279-290. doi: 10.1038/s41576-024-00780-4. Epub 2024 Oct 21.

Abstract

Biomolecular condensates are thought to create subcellular microenvironments that regulate specific biochemical activities. Extensive in vitro work has helped link condensate formation to a wide range of cellular processes, including gene expression, nuclear transport, signalling and stress responses. However, testing the relationship between condensate formation and function in cells is more challenging. In particular, the extent to which the cellular functions of condensates depend on the nature of the molecular interactions through which the condensates form is a major outstanding question. Here, we review results from recent genetic complementation experiments in cells, and highlight how genetic complementation provides important insights into cellular functions and functional specificity of biomolecular condensates. Combined with observations from human genetic disease, these experiments suggest that diverse condensate-promoting regions within cellular proteins confer different condensate compositions, biophysical properties and functions.

摘要

生物分子凝聚物被认为可创造调节特定生化活动的亚细胞微环境。大量的体外研究工作已有助于将凝聚物形成与广泛的细胞过程联系起来,包括基因表达、核运输、信号传导和应激反应。然而,测试凝聚物形成与细胞内功能之间的关系更具挑战性。特别是,凝聚物的细胞功能在多大程度上依赖于凝聚物形成所通过的分子相互作用的性质,这是一个主要的突出问题。在这里,我们回顾了近期细胞遗传互补实验的结果,并强调了遗传互补如何为生物分子凝聚物的细胞功能和功能特异性提供重要见解。结合人类遗传疾病的观察结果,这些实验表明细胞内蛋白质中不同的凝聚物促进区域赋予了不同的凝聚物组成、生物物理性质和功能。

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