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Hybrid cell reactor system from Escherichia coli protoplast cells and arrayed lipid bilayer chamber device

机译:大肠杆菌原生质体细胞的杂交细胞反应器系统和脂质双分子层室设备

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摘要

We developed a novel hybrid cell reactor system via functional fusion of single Escherichia coli protoplast cells, that are deficient in cell wall and expose plasma membrane, with arrayed lipid bilayer chambers on a device in order to incorporate the full set of cytosolic and membrane constituents into the artificial chambers. We investigated gene expression activity to represent the viability of the hybrid cell reactors: over 20% of hybrid cells showed gene expression activity from plasmid or mRNA. This suggests that the hybrid cell reactors retained fundamental activity of genetic information transduction. To expand the applicability of the hybrid cell reactors, we also developed the E. coli-in-E. coli cytoplasm system as an artificial parasitism system. Over 30% of encapsulated E. coli cells exhibited normal cell division, showing that hybrid cells can accommodate and cultivate living cells. This novel artificial cell reactor technology would enable unique approaches for synthetic cell researches such as reconstruction of living cell, artificial parasitism/symbiosis system, or physical simulation to test functionality of synthetic genome.
机译:我们通过功能融合单个大肠杆菌原生质体细胞开发了一种新型的杂化细胞反应器系统,该细胞在细胞壁上缺乏并且暴露了质膜,在设备上具有排列的脂质双层腔室,以便将全套胞浆和膜成分整合到其中人工室。我们调查了基因表达活性来代表杂交细胞反应器的生存力:超过20%的杂交细胞显示了来自质粒或mRNA的基因表达活性。这表明杂交细胞反应器保留了遗传信息转导的基本活性。为了扩大混合细胞反应器的适用性,我们还开发了E. coli-in-E。大肠杆菌的细胞质系统是一种人工寄生系统。超过30%的封装大肠杆菌细胞表现出正常的细胞分裂,表明杂种细胞可以容纳和培养活细胞。这种新颖的人工细胞反应器技术将为合成细胞研究提供独特的方法,例如重建活细胞,人工寄生/共生系统或物理模拟以测试合成基因组的功能。

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