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Light-controlled synthetic gene circuits

机译:光控合成基因电路

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摘要

Highly complex synthetic gene circuits have been engineered in living organisms to develop systems with new biological properties. A precise trigger to activate or deactivate these complex systems is desired in order to tightly control different parts of a synthetic or natural network. Light represents an excellent tool to achieve this goal as it can be regulated in timing, location, intensity, and wavelength, which allows for precise spatiotemporal control over genetic circuits. Recently, light has been used as a trigger to control the biological function of small molecules, oligonucleotides, and proteins involved as parts in gene circuits. Light activation has enabled the construction of unique systems in living organisms such as band-pass filters and edge-detectors in bacterial cells. Additionally, light also allows for the regulation of intermediate steps of complex dynamic pathways in mammalian cells such as those involved in kinase networks. Herein we describe recent advancements in the area of light-controlled synthetic networks.
机译:高度复杂的合成基因回路已在生物体内进行工程改造,以开发具有新生物学特性的系统。为了紧密控制合成或自然网络的不同部分,需要精确的触发器来激活或停用这些复杂的系统。光是可以实现此目标的出色工具,因为可以在时间,位置,强度和波长方面进行调节,从而可以对遗传电路进行精确的时空控制。近来,光已被用作触发因素,以控制参与基因回路的小分子,寡核苷酸和蛋白质的生物学功能。光激活使得能够在生物体内构建独特的系统,例如细菌细胞中的带通滤光片和边缘检测器。此外,光还可以调节哺乳动物细胞(如涉及激酶网络的细胞)中复杂动态路径的中间步骤。本文中,我们描述了光控合成网络领域的最新进展。

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