Optogenetic control of the lac operon for bacterial chemical and protein production
Control of the lac operon with isopropyl β- d -1-thiogalactopyranoside (IPTG) has been used to regulate gene expression in Escherichia coli for countless applications, including metabolic engineering and recombinant protein production. However, optogenetics offers unique capabilities, such as easy t...
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Veröffentlicht in: | Nature chemical biology 2021-01, Vol.17 (1), p.71-79 |
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Sprache: | eng |
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Zusammenfassung: | Control of the
lac
operon with isopropyl β-
d
-1-thiogalactopyranoside (IPTG) has been used to regulate gene expression in
Escherichia coli
for countless applications, including metabolic engineering and recombinant protein production. However, optogenetics offers unique capabilities, such as easy tunability, reversibility, dynamic induction strength and spatial control, that are difficult to obtain with chemical inducers. We have developed a series of circuits for optogenetic regulation of the
lac
operon, which we call OptoLAC, to control gene expression from various IPTG-inducible promoters using only blue light. Applying them to metabolic engineering improves mevalonate and isobutanol production by 24% and 27% respectively, compared to IPTG induction, in light-controlled fermentations scalable to at least two-litre bioreactors. Furthermore, OptoLAC circuits enable control of recombinant protein production, reaching yields comparable to IPTG induction but with easier tunability of expression. OptoLAC circuits are potentially useful to confer light control over other cell functions originally designed to be IPTG-inducible.
Reengineering of the
lac
operon in
E. coli
from a ligand-inducible to a blue-light-regulated gene expression system facilitates optogenetic control of biotechnological applications including metabolic engineering and protein expression. |
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ISSN: | 1552-4450 1552-4469 |
DOI: | 10.1038/s41589-020-0639-1 |