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Artificial cell-cell communication as an emerging tool in synthetic biology applications

机译:人工细胞间通信作为合成生物学应用中的新兴工具

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摘要

Cell-cell communication is a widespread phenomenon in nature, ranging from bacterial quorum sensing and fungal pheromone communication to cellular crosstalk in multicellular eukaryotes. These communication modes offer the possibility to control the behavior of an entire community by modifying the performance of individual cells in specific ways. Synthetic biology, i.e., the implementation of artificial functions within biological systems, is a promising approach towards the engineering of sophisticated, autonomous devices based on specifically functionalized cells. With the growing complexity of the functions performed by such systems, both the risk of circuit crosstalk and the metabolic burden resulting from the expression of numerous foreign genes are increasing. Therefore, systems based on a single type of cells are no longer feasible. Synthetic biology approaches with multiple subpopulations of specifically functionalized cells, wired by artificial cell-cell communication systems, provide an attractive and powerful alternative. Here we review recent applications of synthetic cell-cell communication systems with a specific focus on recent advances with fungal hosts.
机译:细胞间通讯是自然界中广泛存在的现象,范围从细菌群体感应和真菌信息素通讯到多细胞真核生物中的细胞串扰。这些通信模式提供了通过以特定方式修改单个小区的性能来控制整个社区的行为的可能性。合成生物学,即在生物系统中实现人工功能,是一种基于特定功能化细胞的,复杂,自主设备工程化的有前途的方法。随着由此类系统执行的功能的复杂性日益增加,电路串扰的风险以及由众多外源基因的表达导致的代谢负担均在增加。因此,基于单一类型单元的系统不再可行。由人工细胞-细胞通信系统连接的具有特定功能化细胞的多个亚群的合成生物学方法提供了一种有吸引力且强大的替代方法。在这里,我们回顾了合成细胞-细胞通信系统的最新应用,特别关注真菌宿主的最新进展。

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