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Engineering Escherichia coli towards de novo production of gatekeeper (2S)-flavanones: naringenin, pinocembrin, eriodictyol and homoeriodictyol

Natural plant-based flavonoids have drawn significant attention as dietary supplements due to their potential health benefits, including anti-cancer, anti-oxidant and anti-asthmatic activities. Naringenin, pinocembrin, eriodictyol and homoeriodictyol are classified as (2S)-flavanones, an important s...

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Autores principales: Dunstan, Mark S, Robinson, Christopher J, Jervis, Adrian J, Yan, Cunyu, Carbonell, Pablo, Hollywood, Katherine A, Currin, Andrew, Swainston, Neil, Feuvre, Rosalind Le, Micklefield, Jason, Faulon, Jean-Loup, Breitling, Rainer, Turner, Nicholas, Takano, Eriko, Scrutton, Nigel S
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7644443/
https://www.ncbi.nlm.nih.gov/pubmed/33195815
http://dx.doi.org/10.1093/synbio/ysaa012
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author Dunstan, Mark S
Robinson, Christopher J
Jervis, Adrian J
Yan, Cunyu
Carbonell, Pablo
Hollywood, Katherine A
Currin, Andrew
Swainston, Neil
Feuvre, Rosalind Le
Micklefield, Jason
Faulon, Jean-Loup
Breitling, Rainer
Turner, Nicholas
Takano, Eriko
Scrutton, Nigel S
author_facet Dunstan, Mark S
Robinson, Christopher J
Jervis, Adrian J
Yan, Cunyu
Carbonell, Pablo
Hollywood, Katherine A
Currin, Andrew
Swainston, Neil
Feuvre, Rosalind Le
Micklefield, Jason
Faulon, Jean-Loup
Breitling, Rainer
Turner, Nicholas
Takano, Eriko
Scrutton, Nigel S
author_sort Dunstan, Mark S
collection PubMed
description Natural plant-based flavonoids have drawn significant attention as dietary supplements due to their potential health benefits, including anti-cancer, anti-oxidant and anti-asthmatic activities. Naringenin, pinocembrin, eriodictyol and homoeriodictyol are classified as (2S)-flavanones, an important sub-group of naturally occurring flavonoids, with wide-reaching applications in human health and nutrition. These four compounds occupy a central position as branch point intermediates towards a broad spectrum of naturally occurring flavonoids. Here, we report the development of Escherichia coli production chassis for each of these key gatekeeper flavonoids. Selection of key enzymes, genetic construct design and the optimization of process conditions resulted in the highest reported titers for naringenin (484 mg/l), improved production of pinocembrin (198 mg/l) and eriodictyol (55 mg/l from caffeic acid), and provided the first example of in vivo production of homoeriodictyol directly from glycerol (17 mg/l). This work provides a springboard for future production of diverse downstream natural and non-natural flavonoid targets.
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spelling pubmed-76444432020-11-12 Engineering Escherichia coli towards de novo production of gatekeeper (2S)-flavanones: naringenin, pinocembrin, eriodictyol and homoeriodictyol Dunstan, Mark S Robinson, Christopher J Jervis, Adrian J Yan, Cunyu Carbonell, Pablo Hollywood, Katherine A Currin, Andrew Swainston, Neil Feuvre, Rosalind Le Micklefield, Jason Faulon, Jean-Loup Breitling, Rainer Turner, Nicholas Takano, Eriko Scrutton, Nigel S Synth Biol (Oxf) Research Article Natural plant-based flavonoids have drawn significant attention as dietary supplements due to their potential health benefits, including anti-cancer, anti-oxidant and anti-asthmatic activities. Naringenin, pinocembrin, eriodictyol and homoeriodictyol are classified as (2S)-flavanones, an important sub-group of naturally occurring flavonoids, with wide-reaching applications in human health and nutrition. These four compounds occupy a central position as branch point intermediates towards a broad spectrum of naturally occurring flavonoids. Here, we report the development of Escherichia coli production chassis for each of these key gatekeeper flavonoids. Selection of key enzymes, genetic construct design and the optimization of process conditions resulted in the highest reported titers for naringenin (484 mg/l), improved production of pinocembrin (198 mg/l) and eriodictyol (55 mg/l from caffeic acid), and provided the first example of in vivo production of homoeriodictyol directly from glycerol (17 mg/l). This work provides a springboard for future production of diverse downstream natural and non-natural flavonoid targets. Oxford University Press 2020-08-06 /pmc/articles/PMC7644443/ /pubmed/33195815 http://dx.doi.org/10.1093/synbio/ysaa012 Text en © The Author(s) 2020. Published by Oxford University Press. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Dunstan, Mark S
Robinson, Christopher J
Jervis, Adrian J
Yan, Cunyu
Carbonell, Pablo
Hollywood, Katherine A
Currin, Andrew
Swainston, Neil
Feuvre, Rosalind Le
Micklefield, Jason
Faulon, Jean-Loup
Breitling, Rainer
Turner, Nicholas
Takano, Eriko
Scrutton, Nigel S
Engineering Escherichia coli towards de novo production of gatekeeper (2S)-flavanones: naringenin, pinocembrin, eriodictyol and homoeriodictyol
title Engineering Escherichia coli towards de novo production of gatekeeper (2S)-flavanones: naringenin, pinocembrin, eriodictyol and homoeriodictyol
title_full Engineering Escherichia coli towards de novo production of gatekeeper (2S)-flavanones: naringenin, pinocembrin, eriodictyol and homoeriodictyol
title_fullStr Engineering Escherichia coli towards de novo production of gatekeeper (2S)-flavanones: naringenin, pinocembrin, eriodictyol and homoeriodictyol
title_full_unstemmed Engineering Escherichia coli towards de novo production of gatekeeper (2S)-flavanones: naringenin, pinocembrin, eriodictyol and homoeriodictyol
title_short Engineering Escherichia coli towards de novo production of gatekeeper (2S)-flavanones: naringenin, pinocembrin, eriodictyol and homoeriodictyol
title_sort engineering escherichia coli towards de novo production of gatekeeper (2s)-flavanones: naringenin, pinocembrin, eriodictyol and homoeriodictyol
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7644443/
https://www.ncbi.nlm.nih.gov/pubmed/33195815
http://dx.doi.org/10.1093/synbio/ysaa012
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