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Towards Elucidating Carnosic Acid Biosynthesis in Lamiaceae: Functional Characterization of the Three First Steps of the Pathway in Salvia fruticosa and Rosmarinus officinalis

Carnosic acid (CA) is a phenolic diterpene with anti-tumour, anti-diabetic, antibacterial and neuroprotective properties that is produced by a number of species from several genera of the Lamiaceae family, including Salvia fruticosa (Cretan sage) and Rosmarinus officinalis (Rosemary). To elucidate C...

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Autores principales: Božić, Dragana, Papaefthimiou, Dimitra, Brückner, Kathleen, de Vos, Ric C. H., Tsoleridis, Constantinos A., Katsarou, Dimitra, Papanikolaou, Antigoni, Pateraki, Irini, Chatzopoulou, Fani M., Dimitriadou, Eleni, Kostas, Stefanos, Manzano, David, Scheler, Ulschan, Ferrer, Albert, Tissier, Alain, Makris, Antonios M., Kampranis, Sotirios C., Kanellis, Angelos K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4447455/
https://www.ncbi.nlm.nih.gov/pubmed/26020634
http://dx.doi.org/10.1371/journal.pone.0124106
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author Božić, Dragana
Papaefthimiou, Dimitra
Brückner, Kathleen
de Vos, Ric C. H.
Tsoleridis, Constantinos A.
Katsarou, Dimitra
Papanikolaou, Antigoni
Pateraki, Irini
Chatzopoulou, Fani M.
Dimitriadou, Eleni
Kostas, Stefanos
Manzano, David
Scheler, Ulschan
Ferrer, Albert
Tissier, Alain
Makris, Antonios M.
Kampranis, Sotirios C.
Kanellis, Angelos K.
author_facet Božić, Dragana
Papaefthimiou, Dimitra
Brückner, Kathleen
de Vos, Ric C. H.
Tsoleridis, Constantinos A.
Katsarou, Dimitra
Papanikolaou, Antigoni
Pateraki, Irini
Chatzopoulou, Fani M.
Dimitriadou, Eleni
Kostas, Stefanos
Manzano, David
Scheler, Ulschan
Ferrer, Albert
Tissier, Alain
Makris, Antonios M.
Kampranis, Sotirios C.
Kanellis, Angelos K.
author_sort Božić, Dragana
collection PubMed
description Carnosic acid (CA) is a phenolic diterpene with anti-tumour, anti-diabetic, antibacterial and neuroprotective properties that is produced by a number of species from several genera of the Lamiaceae family, including Salvia fruticosa (Cretan sage) and Rosmarinus officinalis (Rosemary). To elucidate CA biosynthesis, glandular trichome transcriptome data of S. fruticosa were mined for terpene synthase genes. Two putative diterpene synthase genes, namely SfCPS and SfKSL, showing similarities to copalyl diphosphate synthase and kaurene synthase-like genes, respectively, were isolated and functionally characterized. Recombinant expression in Escherichia coli followed by in vitro enzyme activity assays confirmed that SfCPS is a copalyl diphosphate synthase. Coupling of SfCPS with SfKSL, both in vitro and in yeast, resulted in the synthesis miltiradiene, as confirmed by 1D and 2D NMR analyses ((1)H, (13)C, DEPT, COSY H-H, HMQC and HMBC). Coupled transient in vivo assays of SfCPS and SfKSL in Nicotiana benthamiana further confirmed production of miltiradiene in planta. To elucidate the subsequent biosynthetic step, RNA-Seq data of S. fruticosa and R. officinalis were searched for cytochrome P450 (CYP) encoding genes potentially involved in the synthesis of the first phenolic compound in the CA pathway, ferruginol. Three candidate genes were selected, SfFS, RoFS1 and RoFS2. Using yeast and N. benthamiana expression systems, all three where confirmed to be coding for ferruginol synthases, thus revealing the enzymatic activities responsible for the first three steps leading to CA in two Lamiaceae genera.
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spelling pubmed-44474552015-06-09 Towards Elucidating Carnosic Acid Biosynthesis in Lamiaceae: Functional Characterization of the Three First Steps of the Pathway in Salvia fruticosa and Rosmarinus officinalis Božić, Dragana Papaefthimiou, Dimitra Brückner, Kathleen de Vos, Ric C. H. Tsoleridis, Constantinos A. Katsarou, Dimitra Papanikolaou, Antigoni Pateraki, Irini Chatzopoulou, Fani M. Dimitriadou, Eleni Kostas, Stefanos Manzano, David Scheler, Ulschan Ferrer, Albert Tissier, Alain Makris, Antonios M. Kampranis, Sotirios C. Kanellis, Angelos K. PLoS One Research Article Carnosic acid (CA) is a phenolic diterpene with anti-tumour, anti-diabetic, antibacterial and neuroprotective properties that is produced by a number of species from several genera of the Lamiaceae family, including Salvia fruticosa (Cretan sage) and Rosmarinus officinalis (Rosemary). To elucidate CA biosynthesis, glandular trichome transcriptome data of S. fruticosa were mined for terpene synthase genes. Two putative diterpene synthase genes, namely SfCPS and SfKSL, showing similarities to copalyl diphosphate synthase and kaurene synthase-like genes, respectively, were isolated and functionally characterized. Recombinant expression in Escherichia coli followed by in vitro enzyme activity assays confirmed that SfCPS is a copalyl diphosphate synthase. Coupling of SfCPS with SfKSL, both in vitro and in yeast, resulted in the synthesis miltiradiene, as confirmed by 1D and 2D NMR analyses ((1)H, (13)C, DEPT, COSY H-H, HMQC and HMBC). Coupled transient in vivo assays of SfCPS and SfKSL in Nicotiana benthamiana further confirmed production of miltiradiene in planta. To elucidate the subsequent biosynthetic step, RNA-Seq data of S. fruticosa and R. officinalis were searched for cytochrome P450 (CYP) encoding genes potentially involved in the synthesis of the first phenolic compound in the CA pathway, ferruginol. Three candidate genes were selected, SfFS, RoFS1 and RoFS2. Using yeast and N. benthamiana expression systems, all three where confirmed to be coding for ferruginol synthases, thus revealing the enzymatic activities responsible for the first three steps leading to CA in two Lamiaceae genera. Public Library of Science 2015-05-28 /pmc/articles/PMC4447455/ /pubmed/26020634 http://dx.doi.org/10.1371/journal.pone.0124106 Text en © 2015 Božić et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Božić, Dragana
Papaefthimiou, Dimitra
Brückner, Kathleen
de Vos, Ric C. H.
Tsoleridis, Constantinos A.
Katsarou, Dimitra
Papanikolaou, Antigoni
Pateraki, Irini
Chatzopoulou, Fani M.
Dimitriadou, Eleni
Kostas, Stefanos
Manzano, David
Scheler, Ulschan
Ferrer, Albert
Tissier, Alain
Makris, Antonios M.
Kampranis, Sotirios C.
Kanellis, Angelos K.
Towards Elucidating Carnosic Acid Biosynthesis in Lamiaceae: Functional Characterization of the Three First Steps of the Pathway in Salvia fruticosa and Rosmarinus officinalis
title Towards Elucidating Carnosic Acid Biosynthesis in Lamiaceae: Functional Characterization of the Three First Steps of the Pathway in Salvia fruticosa and Rosmarinus officinalis
title_full Towards Elucidating Carnosic Acid Biosynthesis in Lamiaceae: Functional Characterization of the Three First Steps of the Pathway in Salvia fruticosa and Rosmarinus officinalis
title_fullStr Towards Elucidating Carnosic Acid Biosynthesis in Lamiaceae: Functional Characterization of the Three First Steps of the Pathway in Salvia fruticosa and Rosmarinus officinalis
title_full_unstemmed Towards Elucidating Carnosic Acid Biosynthesis in Lamiaceae: Functional Characterization of the Three First Steps of the Pathway in Salvia fruticosa and Rosmarinus officinalis
title_short Towards Elucidating Carnosic Acid Biosynthesis in Lamiaceae: Functional Characterization of the Three First Steps of the Pathway in Salvia fruticosa and Rosmarinus officinalis
title_sort towards elucidating carnosic acid biosynthesis in lamiaceae: functional characterization of the three first steps of the pathway in salvia fruticosa and rosmarinus officinalis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4447455/
https://www.ncbi.nlm.nih.gov/pubmed/26020634
http://dx.doi.org/10.1371/journal.pone.0124106
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