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群体感应通讯:分子连接细胞、其邻近细胞,甚至是器件。

Quorum Sensing Communication: Molecularly Connecting Cells, Their Neighbors, and Even Devices.

机构信息

Fischell Department of Bioengineering, University of Maryland, College Park, Maryland 20742, USA; email:

Institute for Bioscience and Biotechnology Research, University of Maryland, Rockville, Maryland 20850, USA.

出版信息

Annu Rev Chem Biomol Eng. 2020 Jun 7;11:447-468. doi: 10.1146/annurev-chembioeng-101519-124728. Epub 2020 Mar 13.

Abstract

Quorum sensing (QS) is a molecular signaling modality that mediates molecular-based cell-cell communication. Prevalent in nature, QS networks provide bacteria with a method to gather information from the environment and make decisions based on the intel. With its ability to autonomously facilitate both inter- and intraspecies gene regulation, this process can be rewired to enable autonomously actuated, but molecularly programmed, genetic control. On the one hand, novel QS-based genetic circuits endow cells with smart functions that can be used in many fields of engineering, and on the other, repurposed QS circuitry promotes communication and aids in the development of synthetic microbial consortia. Furthermore, engineered QS systems can probe and intervene in interkingdom signaling between bacteria and their hosts. Lastly, QS is demonstrated to establish conversation with abiotic materials, especially by taking advantage of biological and even electronically induced assembly processes; such QS-incorporated biohybrid devices offer innovative ways to program cell behavior and biological function.

摘要

群体感应 (QS) 是一种介导分子水平细胞间通讯的分子信号转导模式。QS 网络在自然界中普遍存在,为细菌提供了一种从环境中收集信息并根据情报做出决策的方法。通过自主促进种间和种内基因调控的能力,这个过程可以被重新布线,以实现自主激活但分子编程的遗传控制。一方面,基于 QS 的新型遗传电路赋予细胞智能功能,可用于工程学的多个领域;另一方面,重新设计的 QS 电路促进了交流并有助于合成微生物群落的发展。此外,工程化的 QS 系统可以探测和干预细菌与其宿主之间的种间信号转导。最后,QS 被证明可以与非生物材料进行对话,特别是利用生物甚至电子诱导的组装过程;这种结合了 QS 的生物杂交设备为编程细胞行为和生物功能提供了创新的方法。

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