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A Man-Made ATP-Binding Protein Evolved Independent of Nature Causes Abnormal Growth in Bacterial Cells

机译:一种独立于自然界发展的人造ATP结合蛋白导致细菌细胞异常生长。

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摘要

Recent advances in de novo protein evolution have made it possible to create synthetic proteins from unbiased libraries that fold into stable tertiary structures with predefined functions. However, it is not known whether such proteins will be functional when expressed inside living cells or how a host organism would respond to an encounter with a non-biological protein. Here, we examine the physiology and morphology of Escherichia coli cells engineered to express a synthetic ATP-binding protein evolved entirely from non-biological origins. We show that this man-made protein disrupts the normal energetic balance of the cell by altering the levels of intracellular ATP. This disruption cascades into a series of events that ultimately limit reproductive competency by inhibiting cell division. We now describe a detailed investigation into the synthetic biology of this man-made protein in a living bacterial organism, and the effect that this protein has on normal cell physiology.
机译:从头蛋白质进化的最新进展使得从无偏文库创建合成蛋白质成为可能,该文库可折叠成具有预定功能的稳定三级结构。但是,尚不知道这些蛋白质在活细胞内表达时是否会起作用,或者宿主生物体如何应对非生物蛋白质的反应。在这里,我们检查了被设计为表达完全从非生物学起源进化而来的合成ATP结合蛋白的大肠杆菌细胞的生理和形态。我们表明,这种人造蛋白通过改变细胞内ATP的水平来破坏细胞的正常能量平衡。这种破坏级联成为一系列事件,这些事件最终通过抑制细胞分裂而限制了繁殖能力。现在我们描述对这种人造蛋白质在活细菌有机体中的合成生物学的详细研究,以及该蛋白质对正常细胞生理的影响。

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