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Exploiting plug-and-play synthetic biology for drug discovery and production in microorganisms.

, , , and . Nature reviews. Microbiology, 9 (2): 131--137 (29 feb 2011)
DOI: 10.1038/nrmicro2478

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antiSMASH 4.0 - improvements in chemistry prediction and gene cluster boundary identification., , , , , , , , , and 8 other author(s). Nucleic Acids Res., 45 (Webserver-Issue): W36-W41 (2017)Exploiting plug-and-play synthetic biology for drug discovery and production in microorganisms., , , and . Nature reviews. Microbiology, 9 (2): 131--137 (29 02 2011)Modeling challenges in the synthetic biology of secondary metabolism., , and . ACS synthetic biology, 2 (7): 373--378 (Jul 19, 2013)Judging synthetic biology risks., , and . Science (New York, N.Y.), (Jan 9, 2015)Design-based re-engineering of biosynthetic gene clusters: plug-and-play in practice., , , and . Current opinion in biotechnology, (Mar 26, 2013)Computational tools for the synthetic design of biochemical pathways, , , and . Nature Reviews Microbiology, 10 (3): 191--202 (Jan 23, 2012)Synthetic biology advances for pharmaceutical production., and . Current opinion in biotechnology, (Mar 2, 2015)Synthetic biology in streptomyces bacteria., , and . Methods in enzymology, (2011)Selenzyme: enzyme selection tool for pathway design., , , , , , , , and . Bioinform., 34 (12): 2153-2154 (2018)