Alec A. K. Nielsen,Bryan S. Der,Jonghyeon Shin,Prashant Vaidyanathan,Vanya Paralanov,Elizabeth A. Strychalski,David Ross,Douglas Densmore,Christopher A. Voigt
出处
期刊:Science [American Association for the Advancement of Science (AAAS)] 日期:2016-03-31卷期号:352 (6281)被引量:963
Programming circuitry for synthetic biology As synthetic biology techniques become more powerful, researchers are anticipating a future in which the design of biological circuits will be similar to the design of integrated circuits in electronics. Nielsen et al. describe what is essentially a programming language to design computational circuits in living cells. The circuits generated on plasmids expressed in Escherichia coli required careful insulation from their genetic context, but primarily functioned as specified. The circuits could, for example, regulate cellular functions in response to multiple environmental signals. Such a strategy can facilitate the development of more complex circuits by genetic engineering. Science , this issue p. 10.1126/science.aac7341