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Long-lived protein expression in hydrogel particles: towards artificial cells

机译:蛋白在水凝胶颗粒中的长寿命表达:对人造细胞

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摘要

Herein we report a new type of cell-mimic particle capable of long-lived protein expression. We constructed the cell-mimic particles by immobilizing the proteinaceous factors of the cell-free transcription and translation system on the polymer backbone of hydrogel particles and encapsulating the plasmid template and ribosome inside the hydrogel. With the continuous supply of nutrients and energy, the protein expression in the cell-mimic particles remained stable for at least 11 days. We achieved the regulation of protein expression in the cell-mimic particles by the usage of lac operon. The cell-mimic particles quickly responded to the concentration change of isopropyl β-d-1-thiogalactopyranoside (IPTG) in the feeding buffer to regulate the mCherry expression level. We also constructed an in vitro genetic oscillator in the cell-mimic particles. Protein LacI provided a negative feedback to the expression of both LacI itself and eGFP, and the expression level change of eGFP presented an oscillation. We expect the cell-mimic particles to be a useful platform for gene circuit engineering, metabolic engineering, and biosensors.
机译:在本文中,我们报告了一种新型的能够长时间表达蛋白质的细胞模拟颗粒。我们通过将无细胞转录和翻译系统的蛋白质因子固定在水凝胶颗粒的聚合物骨架上,并将质粒模板和核糖体封装在水凝胶中,构建了细胞模拟颗粒。随着营养和能量的不断供应,细胞模拟颗粒中的蛋白质表达保持稳定至少11天。我们通过使用lac操纵子实现了对细胞模拟颗粒中蛋白质表达的调节。细胞模拟颗粒快速响应进料缓冲液中异丙基β-d-1-硫代半乳糖吡喃糖苷(IPTG)的浓​​度变化,从而调节mCherry表达水平。我们还在细胞模拟颗粒中构建了一个体外遗传振荡器。蛋白LacI为LacI本身和eGFP的表达提供了负反馈,并且eGFP的表达水平变化呈现出振荡。我们希望细胞模拟颗粒将成为基因电路工程,代谢工程和生物传感器的有用平台。

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