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Transfer of the cytochrome P450-dependent dhurrin pathway from Sorghum bicolor into Nicotiana tabacum chloroplasts for light-driven synthesis

Plant chloroplasts are light-driven cell factories that have great potential to act as a chassis for metabolic engineering applications. Using plant chloroplasts, we demonstrate how photosynthetic reducing power can drive a metabolic pathway to synthesise a bio-active natural product. For this purpo...

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Autores principales: Gnanasekaran, Thiyagarajan, Karcher, Daniel, Nielsen, Agnieszka Zygadlo, Martens, Helle Juel, Ruf, Stephanie, Kroop, Xenia, Olsen, Carl Erik, Motawie, Mohammed Saddik, Pribil, Mathias, Møller, Birger Lindberg, Bock, Ralph, Jensen, Poul Erik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4809297/
https://www.ncbi.nlm.nih.gov/pubmed/26969746
http://dx.doi.org/10.1093/jxb/erw067
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author Gnanasekaran, Thiyagarajan
Karcher, Daniel
Nielsen, Agnieszka Zygadlo
Martens, Helle Juel
Ruf, Stephanie
Kroop, Xenia
Olsen, Carl Erik
Motawie, Mohammed Saddik
Pribil, Mathias
Møller, Birger Lindberg
Bock, Ralph
Jensen, Poul Erik
author_facet Gnanasekaran, Thiyagarajan
Karcher, Daniel
Nielsen, Agnieszka Zygadlo
Martens, Helle Juel
Ruf, Stephanie
Kroop, Xenia
Olsen, Carl Erik
Motawie, Mohammed Saddik
Pribil, Mathias
Møller, Birger Lindberg
Bock, Ralph
Jensen, Poul Erik
author_sort Gnanasekaran, Thiyagarajan
collection PubMed
description Plant chloroplasts are light-driven cell factories that have great potential to act as a chassis for metabolic engineering applications. Using plant chloroplasts, we demonstrate how photosynthetic reducing power can drive a metabolic pathway to synthesise a bio-active natural product. For this purpose, we stably engineered the dhurrin pathway from Sorghum bicolor into the chloroplasts of Nicotiana tabacum (tobacco). Dhurrin is a cyanogenic glucoside and its synthesis from the amino acid tyrosine is catalysed by two membrane-bound cytochrome P450 enzymes (CYP79A1 and CYP71E1) and a soluble glucosyltransferase (UGT85B1), and is dependent on electron transfer from a P450 oxidoreductase. The entire pathway was introduced into the chloroplast by integrating CYP79A1, CYP71E1, and UGT85B1 into a neutral site of the N. tabacum chloroplast genome. The two P450s and the UGT85B1 were functional when expressed in the chloroplasts and converted endogenous tyrosine into dhurrin using electrons derived directly from the photosynthetic electron transport chain, without the need for the presence of an NADPH-dependent P450 oxidoreductase. The dhurrin produced in the engineered plants amounted to 0.1–0.2% of leaf dry weight compared to 6% in sorghum. The results obtained pave the way for plant P450s involved in the synthesis of economically important compounds to be engineered into the thylakoid membrane of chloroplasts, and demonstrate that their full catalytic cycle can be driven directly by photosynthesis-derived electrons.
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spelling pubmed-48092972016-03-29 Transfer of the cytochrome P450-dependent dhurrin pathway from Sorghum bicolor into Nicotiana tabacum chloroplasts for light-driven synthesis Gnanasekaran, Thiyagarajan Karcher, Daniel Nielsen, Agnieszka Zygadlo Martens, Helle Juel Ruf, Stephanie Kroop, Xenia Olsen, Carl Erik Motawie, Mohammed Saddik Pribil, Mathias Møller, Birger Lindberg Bock, Ralph Jensen, Poul Erik J Exp Bot Research Paper Plant chloroplasts are light-driven cell factories that have great potential to act as a chassis for metabolic engineering applications. Using plant chloroplasts, we demonstrate how photosynthetic reducing power can drive a metabolic pathway to synthesise a bio-active natural product. For this purpose, we stably engineered the dhurrin pathway from Sorghum bicolor into the chloroplasts of Nicotiana tabacum (tobacco). Dhurrin is a cyanogenic glucoside and its synthesis from the amino acid tyrosine is catalysed by two membrane-bound cytochrome P450 enzymes (CYP79A1 and CYP71E1) and a soluble glucosyltransferase (UGT85B1), and is dependent on electron transfer from a P450 oxidoreductase. The entire pathway was introduced into the chloroplast by integrating CYP79A1, CYP71E1, and UGT85B1 into a neutral site of the N. tabacum chloroplast genome. The two P450s and the UGT85B1 were functional when expressed in the chloroplasts and converted endogenous tyrosine into dhurrin using electrons derived directly from the photosynthetic electron transport chain, without the need for the presence of an NADPH-dependent P450 oxidoreductase. The dhurrin produced in the engineered plants amounted to 0.1–0.2% of leaf dry weight compared to 6% in sorghum. The results obtained pave the way for plant P450s involved in the synthesis of economically important compounds to be engineered into the thylakoid membrane of chloroplasts, and demonstrate that their full catalytic cycle can be driven directly by photosynthesis-derived electrons. Oxford University Press 2016-04 2016-03-11 /pmc/articles/PMC4809297/ /pubmed/26969746 http://dx.doi.org/10.1093/jxb/erw067 Text en © The Author 2016. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Gnanasekaran, Thiyagarajan
Karcher, Daniel
Nielsen, Agnieszka Zygadlo
Martens, Helle Juel
Ruf, Stephanie
Kroop, Xenia
Olsen, Carl Erik
Motawie, Mohammed Saddik
Pribil, Mathias
Møller, Birger Lindberg
Bock, Ralph
Jensen, Poul Erik
Transfer of the cytochrome P450-dependent dhurrin pathway from Sorghum bicolor into Nicotiana tabacum chloroplasts for light-driven synthesis
title Transfer of the cytochrome P450-dependent dhurrin pathway from Sorghum bicolor into Nicotiana tabacum chloroplasts for light-driven synthesis
title_full Transfer of the cytochrome P450-dependent dhurrin pathway from Sorghum bicolor into Nicotiana tabacum chloroplasts for light-driven synthesis
title_fullStr Transfer of the cytochrome P450-dependent dhurrin pathway from Sorghum bicolor into Nicotiana tabacum chloroplasts for light-driven synthesis
title_full_unstemmed Transfer of the cytochrome P450-dependent dhurrin pathway from Sorghum bicolor into Nicotiana tabacum chloroplasts for light-driven synthesis
title_short Transfer of the cytochrome P450-dependent dhurrin pathway from Sorghum bicolor into Nicotiana tabacum chloroplasts for light-driven synthesis
title_sort transfer of the cytochrome p450-dependent dhurrin pathway from sorghum bicolor into nicotiana tabacum chloroplasts for light-driven synthesis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4809297/
https://www.ncbi.nlm.nih.gov/pubmed/26969746
http://dx.doi.org/10.1093/jxb/erw067
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