首页> 外文期刊>Journal of the American Chemical Society >Bottom-up Creation of an Artificial Cell Covered with the Adhesive Bacterionanofiber Protein AtaA
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Bottom-up Creation of an Artificial Cell Covered with the Adhesive Bacterionanofiber Protein AtaA

机译:自下而上的人工细胞覆盖的细菌细菌纤维蛋白AtaA的创造。

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摘要

The bacterial cell surface structure has important roles for various cellular functions. However, research on reconstituting bacterial cell surface structures is limited. This study aimed to bottom-up create a cell-sized liposome covered with AtaA, the adhesive bacterionanofiber protein localized on the cell surface of Acinetobacter sp. Tol 5, without the use of the protein secretion and assembly machineries. Liposomes containing a benzylguanine derivative-modified phospholipid were decorated with a truncated AtaA protein fused to a SNAP-tag expressed in a soluble fraction in Escherichia coli . The obtained liposome showed a similar surface structure and function to that of native Tol 5 cells and adhered to both hydrophobic and hydrophilic solid surfaces. Furthermore, this artificial cell was able to drive an enzymatic reaction in the adhesive state. The developed artificial cellular system will allow for analysis of not only AtaA, but also other cell surface proteins under a cell-mimicking environment. In addition, AtaA-decorated artificial cells may inspire the development of biotechnological applications that require immobilization of cells onto a variety of solid surfaces, in particular, in environments where the use of genetically modified organisms is prohibited.
机译:细菌细胞表面结构对于各种细胞功能具有重要作用。然而,重建细菌细胞表面结构的研究是有限的。这项研究旨在自下而上创建一个覆盖有AtaA的细胞大小的脂质体,AtaA是一种定位在不动杆菌属(Acinetobacter sp。)细胞表面的粘附性细菌纤维蛋白。第五条,不使用蛋白质分泌和组装机制。用截短的AtaA蛋白修饰含有苄基鸟嘌呤衍生物修饰的磷脂的脂质体,所述AtaA蛋白与在可溶性大肠杆菌中表达的SNAP标签融合。所得脂质体显示出与天然Tol 5细胞相似的表面结构和功能,并粘附在疏水性和亲水性固体表面上。此外,该人造细胞能够在粘附状态下驱动酶促反应。开发的人工细胞系统将不仅可以在模拟细胞的环境下分析AtaA,还可以分析其他细胞表面蛋白。另外,装饰有AtaA的人造细胞可能会激发生物技术应用的发展,这些应用要求将细胞固定在各种固体表面上,特别是在禁止使用转基因生物的环境中。

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