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Optical Control over Liquid-Liquid Phase Separation

delete2024-03-26
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PRE
AI
J
Jia, Liyan
G
Gao, Shan
Y
Yan Qiao *
DOI:10.1002/smtd.202301724delete
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Abstract

Abstract

En 中文
Liquid-liquid phase separation (LLPS) is responsible for the emergence of intracellular membrane-less organelles and the development of coacervate protocells. Benefitting from the advantages of simplicity, precision, programmability, and noninvasiveness, light has become an effective tool to regulate the assembly dynamics of LLPS, and mediate various biochemical processes associated with LLPS. In this review, recent advances in optically controlling membrane-less organelles within living organisms are summarized, thereby modulating a series of biological processes including irreversible protein aggregation pathologies, transcription activation, metabolic flux, genomic rearrangements, and enzymatic reactions. Among these, the intracellular systems (i.e., optoDroplet, Corelet, PixELL, CasDrop, and other optogenetic systems) that enable the photo-mediated control over biomolecular condensation are highlighted. The design of photoactive complex coacervate protocells in laboratory settings by utilizing photochromic molecules such as azobenzene and diarylethene is further discussed. This review is expected to provide in-depth insights into phase separation-associated biochemical processes, bio-metabolism, and diseases.
Keywords:
coacervates
liquid-liquid phase separation
membrane-less organelles
optical regulation
optogenetics
protocells

Journal

Small Methods cover
Small Methods
IF:
9.1
Papers:
4.3K
Citations:
2.2W

Organization

C
chinese academy of sciences
Scholars:
56.5W
Papers: 44.9W
Citations: 704