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The bacterial nanorecorder: Engineering E. coli to function as a chemical recording device

机译:细菌纳米记录仪:工程化的大肠杆菌,可充当化学记录设备

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摘要

Synthetic biology is an emerging branch of molecular biology that uses synthetic genetic constructs to create man-made cells or organisms that are capable of performing novel and/or useful applications. Using a synthetic chemically sensitive genetic toggle switch to activate appropriate fluorescent protein indicators (GFP, RFP) and a cell division inhibitor (minC), we have created a novel E. coli strain that can be used as a highly specific, yet simple and inexpensive chemical recording device. This biological "nanorecorder" can be used to determine both the type and the time at which a brief chemical exposure event has occurred. In particular, we show that the short-term exposure (15-30 min) of cells harboring this synthetic genetic circuit to small molecule signals (anhydrotetracycline or IPTG) triggered long-term and uniform cell elongation, with cell length being directly proportional to the time elapsed following a brief chemical exposure. This work demonstrates that facile modification of an existing genetic toggle switch can be exploited to generate a robust, biologically-based "nanorecorder" that could potentially be adapted to detect, respond and record a wide range of chemical stimuli that may vary over time and space. \ua9 2011 Bhomkar et al.
机译:合成生物学是分子生物学的一个新兴分支,它使用合成的遗传构建体来创建能够执行新颖和/或有用应用的人造细胞或生物。使用合成化学敏感的遗传拨动开关来激活适当的荧光蛋白指示剂(GFP,RFP)和细胞分裂抑制剂(minC),我们创建了一种新型的大肠杆菌菌株,可以用作高度特异性,简单且廉价的菌株化学记录装置。这种生物学的“纳米记录仪”可用于确定发生短暂化学暴露事件的类型和时间。特别是,我们表明,带有这种合成遗传回路的细胞短期暴露(15-30分钟)会暴露于小分子信号(脱水四环素或IPTG)会触发长期且均匀的细胞伸长,而细胞长度与短暂的化学接触后经过一段时间。这项工作表明,可以利用对现有基因拨动开关的轻松修饰来生成健壮的,基于生物学的“纳米记录器”,该纳米记录器可能适于检测,响应和记录可能随时间和空间变化的多种化学刺激物。 。 \ ua9 2011 Bhomkar等。

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