凝聚
原细胞
偶氮苯
寡核苷酸
相(物质)
DNA
膜
生物物理学
化学
冷凝
纳米技术
色谱法
材料科学
聚合物
生物
生物化学
物理
热力学
有机化学
作者
Nicolas Martin,Liangfei Tian,Dan Spencer,Angélique Coutable‐Pennarun,J. L. Ross Anderson,Stephen Mann
标识
DOI:10.1002/anie.201909228
摘要
Abstract Coacervate microdroplets produced by liquid–liquid phase separation have been used as synthetic protocells that mimic the dynamical organization of membrane‐free organelles in living systems. Achieving spatiotemporal control over droplet condensation and disassembly remains challenging. Herein, we describe the formation and photoswitchable behavior of light‐responsive coacervate droplets prepared from mixtures of double‐stranded DNA and an azobenzene cation. The droplets disassemble and reassemble under UV and blue light, respectively, due to azobenzene trans / cis photoisomerisation. Sequestration and release of captured oligonucleotides follow the dynamics of phase separation such that light‐activated transfer, mixing, hybridization, and trafficking of the oligonucleotides can be controlled in binary populations of the droplets. Our results open perspectives for the spatiotemporal control of DNA coacervates and provide a step towards the dynamic regulation of synthetic protocells.
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