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用于热响应蛋白合成和货物释放的基因编程合成细胞。

Genetically programmed synthetic cells for thermo-responsive protein synthesis and cargo release.

机构信息

Department of Chemical Engineering, Imperial College London, London, UK.

Imperial College Centre for Synthetic Biology, London, UK.

出版信息

Nat Chem Biol. 2024 Oct;20(10):1380-1386. doi: 10.1038/s41589-024-01673-7. Epub 2024 Jul 5.

Abstract

Synthetic cells containing genetic programs and protein expression machinery are increasingly recognized as powerful counterparts to engineered living cells in the context of biotechnology, therapeutics and cellular modelling. So far, genetic regulation of synthetic cell activity has been largely confined to chemical stimuli; to unlock their potential in applied settings, engineering stimuli-responsive synthetic cells under genetic regulation is imperative. Here we report the development of temperature-sensitive synthetic cells that control protein production by exploiting heat-responsive mRNA elements. This is achieved by combining RNA thermometer technology, cell-free protein expression and vesicle-based synthetic cell design to create cell-sized capsules able to initiate synthesis of both soluble proteins and membrane proteins at defined temperatures. We show that the latter allows for temperature-controlled cargo release phenomena with potential implications for biomedicine. Platforms like the one presented here can pave the way for customizable, genetically programmed synthetic cells under thermal control to be used in biotechnology.

摘要

含有遗传程序和蛋白质表达机制的合成细胞,在生物技术、治疗学和细胞建模领域,正逐渐被视为工程化活细胞的有力对应物。到目前为止,合成细胞活性的遗传调控在很大程度上仅限于化学刺激;为了在实际应用中释放它们的潜力,必须对受遗传调控的响应性合成细胞进行工程设计。在这里,我们报告了开发温度敏感型合成细胞的进展,这些细胞通过利用热响应 mRNA 元件来控制蛋白质的产生。这是通过结合 RNA 温度计技术、无细胞蛋白质表达和基于囊泡的合成细胞设计来实现的,从而创建了能够在特定温度下启动可溶性蛋白和膜蛋白合成的细胞大小的胶囊。我们表明,后者允许进行温度控制的货物释放现象,这可能对生物医学有影响。像这里展示的这样的平台可以为可定制的、受遗传编程控制的、在热控制下的合成细胞在生物技术中的应用铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3462/11427347/7a224caef570/41589_2024_1673_Fig1_HTML.jpg

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