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A synthetic circuit for selectively arresting daughter cells to create aging populations.

机译:一种用于选择性阻滞子细胞以创建衰老群体的合成电路。

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摘要

The ability to engineer genetic programs governing cell fate will permit new safeguards for engineered organisms and will further the biological understanding of differentiation and aging. Here, we have designed, built and implemented a genetic device in the budding yeast Saccharomyces cerevisiae that controls cell-cycle progression selectively in daughter cells. The synthetic device was built in a modular fashion by combining timing elements that are coupled to the cell cycle, i.e. cell-cycle specific promoters and protein degradation domains, and an enzymatic domain which conditionally confers cell arrest. Thus, in the presence of a drug, the device is designed to arrest growth of only newly-divided daughter cells in the population. Indeed, while the engineered cells grow normally in the absence of drug, with the drug the engineered cells display reduced, linear growth on the population level. Fluorescence microscopy of single cells shows that the device induces cell arrest exclusively in daughter cells and radically shifts the age distribution of the resulting population towards older cells. This device, termed the 'daughter arrester', provides a blueprint for more advanced devices that mimic developmental processes by having control over cell growth and death.
机译:工程化控制细胞命运的遗传程序的能力将为工程化生物提供新的保障,并将进一步促进生物学对分化和衰老的理解。在这里,我们已经设计,构建并实现了一种在芽生啤酒酵母中的遗传装置,该遗传装置可选择性控制子细胞中的细胞周期进程。通过组合与细胞周期偶联的定时元件,即细胞周期特异性启动子和蛋白质降解结构域,以及有条件地赋予细胞停滞的酶结构域,以模块化的方式构建了该合成装置。因此,在存在药物的情况下,该装置被设计为仅阻止种群中新近分裂的子细胞的生长。确实,尽管在没有药物的情况下工程细胞可以正常生长,但是在药物作用下,工程细胞在种群水平上显示出减少的线性生长。单个细胞的荧光显微镜检查表明,该装置仅在子细胞中诱导细胞停滞,并从根本上将所得群体的年龄分布移向较老的细胞。这种被称为“女儿避雷器”的装置为控制细胞生长和死亡的模仿发育过程的更先进的装置提供了蓝图。

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