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首页> 外文期刊>Angewandte Chemie >Division and Regrowth of Phase-Separated Giant Unilamellar Vesicles**
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Division and Regrowth of Phase-Separated Giant Unilamellar Vesicles**

机译:分区和再生的相位分离的巨大Unilamellar囊泡**

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摘要

Success in the bottom-up assembly of synthetic cells will depend on strategies for the division of protocellular compartments. Here, we describe the controlled division of phase-separated giant unilamellar lipid vesicles (GUVs). We derive an analytical model based on the vesicle geometry, which makes four quantitative predictions that we verify experimentally. We find that the osmolarity ratio required for division is 2 , independent of the GUV size, while asymmetric division happens at lower osmolarity ratios. Remarkably, we show that a suitable osmolarity change can be triggered by water evaporation, enzymatic decomposition of sucrose or light-triggered uncaging of CMNB-fluorescein. The latter provides full spatiotemporal control, such that a target GUV undergoes division whereas the surrounding GUVs remain unaffected. Finally, we grow phase-separated vesicles from single-phased vesicles by targeted fusion of the opposite lipid type with programmable DNA tags to enable subsequent division cycles.
机译:合成细胞自下而上组装的成功将取决于原细胞区室的划分策略。在这里,我们描述了相分离的巨大单层脂质小泡(GUV)的受控分裂。我们推导了一个基于囊泡几何形状的分析模型,该模型做出了四个定量预测,并通过实验进行了验证。我们发现,分裂所需的渗透压比为2,与GUV大小无关,而不对称分裂发生在渗透压比较低的情况下。值得注意的是,我们发现适当的渗透压变化可以通过水蒸发、蔗糖的酶分解或CMNB荧光素的光触发解老化来触发。后者提供完全的时空控制,使目标GUV进行分割,而周围的GUV不受影响。最后,我们通过将相反的脂质类型与可编程的DNA标签靶向融合,从单相囊泡中生长相分离的囊泡,以实现后续的分裂周期。

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