可扩展性
原细胞
计算机科学
合成生物学
DNA
DNA运算
分子通讯
电子线路
纳米技术
分布式计算
生物
计算生物学
材料科学
工程类
遗传学
计算机网络
膜
电气工程
发射机
频道(广播)
数据库
作者
Alex Joesaar,Shuo Yang,Bas W. A. Bögels,Ardjan J. van der Linden,Pascal A. Pieters,B. V. V. S. Pavan Kumar,Neil Dalchau,Andrew Phillips,Stephen Mann,Tom F. A. de Greef
标识
DOI:10.1038/s41565-019-0399-9
摘要
Developing molecular communication platforms based on orthogonal communication channels is a crucial step towards engineering artificial multicellular systems. Here, we present a general and scalable platform entitled ‘biomolecular implementation of protocellular communication’ (BIO-PC) to engineer distributed multichannel molecular communication between populations of non-lipid semipermeable microcapsules. Our method leverages the modularity and scalability of enzyme-free DNA strand-displacement circuits to develop protocellular consortia that can sense, process and respond to DNA-based messages. We engineer a rich variety of biochemical communication devices capable of cascaded amplification, bidirectional communication and distributed computational operations. Encapsulating DNA strand-displacement circuits further allows their use in concentrated serum where non-compartmentalized DNA circuits cannot operate. BIO-PC enables reliable execution of distributed DNA-based molecular programs in biologically relevant environments and opens new directions in DNA computing and minimal cell technology. Semipermeable proteinosome membranes allow complex DNA message communication through compartmentalization and protect the DNA circuits from degradation in a biological environment.
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