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Molecular Cloning and Characterization of a Xanthone Prenyltransferase from Hypericum calycinum Cell Cultures

In plants, prenylation of metabolites is widely distributed to generate compounds with efficient defense potential and distinct pharmacological activities profitable to human health. Prenylated compounds are formed by members of the prenyltransferase (PT) superfamily, which catalyze the addition of...

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Autores principales: Fiesel, Tobias, Gaid, Mariam, Müller, Andreas, Bartels, Joana, El-Awaad, Islam, Beuerle, Till, Ernst, Ludger, Behrends, Sönke, Beerhues, Ludger
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6332024/
https://www.ncbi.nlm.nih.gov/pubmed/26343621
http://dx.doi.org/10.3390/molecules200915616
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author Fiesel, Tobias
Gaid, Mariam
Müller, Andreas
Bartels, Joana
El-Awaad, Islam
Beuerle, Till
Ernst, Ludger
Behrends, Sönke
Beerhues, Ludger
author_facet Fiesel, Tobias
Gaid, Mariam
Müller, Andreas
Bartels, Joana
El-Awaad, Islam
Beuerle, Till
Ernst, Ludger
Behrends, Sönke
Beerhues, Ludger
author_sort Fiesel, Tobias
collection PubMed
description In plants, prenylation of metabolites is widely distributed to generate compounds with efficient defense potential and distinct pharmacological activities profitable to human health. Prenylated compounds are formed by members of the prenyltransferase (PT) superfamily, which catalyze the addition of prenyl moieties to a variety of acceptor molecules. Cell cultures of Hypericum calycinum respond to elicitor treatment with the accumulation of the prenylated xanthone hyperxanthone E. A cDNA encoding a membrane-bound PT (HcPT) was isolated from a subtracted cDNA library and transcript preparations of H. calycinum. An increase in the HcPT transcript level preceded hyperxanthone E accumulation in cell cultures of H. calycinum treated with elicitor. The HcPT cDNA was functionally characterized by expression in baculovirus-infected insect cells. The recombinant enzyme catalyzed biosynthesis of 1,3,6,7-tetrahydroxy-8-prenylxanthone through regiospecific C–8 prenylation of 1,3,6,7-tetrahydroxyxanthone, indicating its involvement in hyperxanthone E formation. The enzymatic product shared significant structural features with the previously reported cholinesterase inhibitor γ-mangostin. Thus, our findings may offer a chance for semisynthesis of new active agents to be involved in the treatment of Alzheimer’s disease.
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spelling pubmed-63320242019-01-24 Molecular Cloning and Characterization of a Xanthone Prenyltransferase from Hypericum calycinum Cell Cultures Fiesel, Tobias Gaid, Mariam Müller, Andreas Bartels, Joana El-Awaad, Islam Beuerle, Till Ernst, Ludger Behrends, Sönke Beerhues, Ludger Molecules Article In plants, prenylation of metabolites is widely distributed to generate compounds with efficient defense potential and distinct pharmacological activities profitable to human health. Prenylated compounds are formed by members of the prenyltransferase (PT) superfamily, which catalyze the addition of prenyl moieties to a variety of acceptor molecules. Cell cultures of Hypericum calycinum respond to elicitor treatment with the accumulation of the prenylated xanthone hyperxanthone E. A cDNA encoding a membrane-bound PT (HcPT) was isolated from a subtracted cDNA library and transcript preparations of H. calycinum. An increase in the HcPT transcript level preceded hyperxanthone E accumulation in cell cultures of H. calycinum treated with elicitor. The HcPT cDNA was functionally characterized by expression in baculovirus-infected insect cells. The recombinant enzyme catalyzed biosynthesis of 1,3,6,7-tetrahydroxy-8-prenylxanthone through regiospecific C–8 prenylation of 1,3,6,7-tetrahydroxyxanthone, indicating its involvement in hyperxanthone E formation. The enzymatic product shared significant structural features with the previously reported cholinesterase inhibitor γ-mangostin. Thus, our findings may offer a chance for semisynthesis of new active agents to be involved in the treatment of Alzheimer’s disease. MDPI 2015-08-27 /pmc/articles/PMC6332024/ /pubmed/26343621 http://dx.doi.org/10.3390/molecules200915616 Text en © 2015 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Fiesel, Tobias
Gaid, Mariam
Müller, Andreas
Bartels, Joana
El-Awaad, Islam
Beuerle, Till
Ernst, Ludger
Behrends, Sönke
Beerhues, Ludger
Molecular Cloning and Characterization of a Xanthone Prenyltransferase from Hypericum calycinum Cell Cultures
title Molecular Cloning and Characterization of a Xanthone Prenyltransferase from Hypericum calycinum Cell Cultures
title_full Molecular Cloning and Characterization of a Xanthone Prenyltransferase from Hypericum calycinum Cell Cultures
title_fullStr Molecular Cloning and Characterization of a Xanthone Prenyltransferase from Hypericum calycinum Cell Cultures
title_full_unstemmed Molecular Cloning and Characterization of a Xanthone Prenyltransferase from Hypericum calycinum Cell Cultures
title_short Molecular Cloning and Characterization of a Xanthone Prenyltransferase from Hypericum calycinum Cell Cultures
title_sort molecular cloning and characterization of a xanthone prenyltransferase from hypericum calycinum cell cultures
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6332024/
https://www.ncbi.nlm.nih.gov/pubmed/26343621
http://dx.doi.org/10.3390/molecules200915616
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