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首页> 外文期刊>Angewandte Chemie >A DNA-Programmed Liposome Fusion Cascade
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A DNA-Programmed Liposome Fusion Cascade

机译:DNA编程的脂质体融合级联

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Chemically engineered and functionalized nanoscale compartments are used in bottom-up synthetic biology to construct compartmentalized chemical processes. Progressively more complex designs demand spatial and temporal control over entrapped species. Here, we address this demand with a DNA-encoded design for the successive fusion of multiple liposome populations. Three individual stages of fusion are induced by orthogonally hybridizing sets of membrane-anchored oligonucleotides. Each fusion event leads to efficient content mixing and transfer of the recognition unit for the subsequent stage. In contrast to fusion-protein-dependent eukaryotic vesicle processing, this artificial fusion cascade exploits the versatile encoding potential of DNA hybridization and is generally applicable to small and giant unilamellar vesicles. This platform could thus enable numerous applications in artificial cellular systems and liposome-based synthetic pathways.
机译:化学工程化和官能化的纳米级隔室用于自下而上的合成生物学中,以构建分区化化学过程。 逐步更复杂的设计需求对捕获物种的空间和时间控制。 在这里,我们通过针对多种脂质体群体的连续融合的DNA编码设计来解决这种需求。 通过正交杂交的膜锚定寡核苷酸诱导三个单独的融合阶段。 每个融合事件导致识别单元的有效内容混合和转移,以便进行后期阶段。 与融合蛋白依赖性真核囊泡加工相比,这种人工融合级联利用DNA杂交的多功能编码电位,通常适用于小型和巨大的Unilamellar囊泡。 因此,该平台可以使人工细胞系统和基于脂质体的合成途径的许多应用能够实现许多应用。

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