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Exploring Castellaniella defragrans Linalool (De)hydratase-Isomerase for Enzymatic Hydration of Alkenes

Acyclic monoterpenes constitute a large and highly abundant class of secondary plant metabolites and are, therefore, attractive low-cost raw materials for the chemical industry. To date, numerous biocatalysts for their transformation are known, giving access to highly sought-after monoterpenoids. In...

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Autores principales: Engleder, Matthias, Müller, Monika, Kaluzna, Iwona, Mink, Daniel, Schürmann, Martin, Leitner, Erich, Pichler, Harald, Emmerstorfer-Augustin, Anita
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6600392/
https://www.ncbi.nlm.nih.gov/pubmed/31159367
http://dx.doi.org/10.3390/molecules24112092
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author Engleder, Matthias
Müller, Monika
Kaluzna, Iwona
Mink, Daniel
Schürmann, Martin
Leitner, Erich
Pichler, Harald
Emmerstorfer-Augustin, Anita
author_facet Engleder, Matthias
Müller, Monika
Kaluzna, Iwona
Mink, Daniel
Schürmann, Martin
Leitner, Erich
Pichler, Harald
Emmerstorfer-Augustin, Anita
author_sort Engleder, Matthias
collection PubMed
description Acyclic monoterpenes constitute a large and highly abundant class of secondary plant metabolites and are, therefore, attractive low-cost raw materials for the chemical industry. To date, numerous biocatalysts for their transformation are known, giving access to highly sought-after monoterpenoids. In view of the high selectivity associated with many of these reactions, the demand for enzymes generating commercially important target molecules is unabated. Here, linalool (de)hydratase-isomerase (Ldi, EC 4.2.1.127) from Castellaniella defragrans was examined for the regio- and stereoselective hydration of the acyclic monoterpene β-myrcene to (S)-(+)-linalool. Expression of the native enzyme in Escherichia coli allowed for identification of bottlenecks limiting enzyme activity, which were investigated by mutating selected residues implied in enzyme assembly and function. Combining these analyses with the recently published 3D structures of Ldi highlighted the precisely coordinated reduction–oxidation state of two cysteine pairs in correct oligomeric assembly and the catalytic mechanism, respectively. Subcellular targeting studies upon fusion of Ldi to different signal sequences revealed the significance of periplasmic localization of the mature enzyme in the heterologous expression host. This study provides biochemical and mechanistic insight into the hydration of β-myrcene, a nonfunctionalized terpene, and emphasizes its potential for access to scarcely available but commercially interesting tertiary alcohols.
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spelling pubmed-66003922019-07-16 Exploring Castellaniella defragrans Linalool (De)hydratase-Isomerase for Enzymatic Hydration of Alkenes Engleder, Matthias Müller, Monika Kaluzna, Iwona Mink, Daniel Schürmann, Martin Leitner, Erich Pichler, Harald Emmerstorfer-Augustin, Anita Molecules Article Acyclic monoterpenes constitute a large and highly abundant class of secondary plant metabolites and are, therefore, attractive low-cost raw materials for the chemical industry. To date, numerous biocatalysts for their transformation are known, giving access to highly sought-after monoterpenoids. In view of the high selectivity associated with many of these reactions, the demand for enzymes generating commercially important target molecules is unabated. Here, linalool (de)hydratase-isomerase (Ldi, EC 4.2.1.127) from Castellaniella defragrans was examined for the regio- and stereoselective hydration of the acyclic monoterpene β-myrcene to (S)-(+)-linalool. Expression of the native enzyme in Escherichia coli allowed for identification of bottlenecks limiting enzyme activity, which were investigated by mutating selected residues implied in enzyme assembly and function. Combining these analyses with the recently published 3D structures of Ldi highlighted the precisely coordinated reduction–oxidation state of two cysteine pairs in correct oligomeric assembly and the catalytic mechanism, respectively. Subcellular targeting studies upon fusion of Ldi to different signal sequences revealed the significance of periplasmic localization of the mature enzyme in the heterologous expression host. This study provides biochemical and mechanistic insight into the hydration of β-myrcene, a nonfunctionalized terpene, and emphasizes its potential for access to scarcely available but commercially interesting tertiary alcohols. MDPI 2019-06-01 /pmc/articles/PMC6600392/ /pubmed/31159367 http://dx.doi.org/10.3390/molecules24112092 Text en © 2019 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 (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Engleder, Matthias
Müller, Monika
Kaluzna, Iwona
Mink, Daniel
Schürmann, Martin
Leitner, Erich
Pichler, Harald
Emmerstorfer-Augustin, Anita
Exploring Castellaniella defragrans Linalool (De)hydratase-Isomerase for Enzymatic Hydration of Alkenes
title Exploring Castellaniella defragrans Linalool (De)hydratase-Isomerase for Enzymatic Hydration of Alkenes
title_full Exploring Castellaniella defragrans Linalool (De)hydratase-Isomerase for Enzymatic Hydration of Alkenes
title_fullStr Exploring Castellaniella defragrans Linalool (De)hydratase-Isomerase for Enzymatic Hydration of Alkenes
title_full_unstemmed Exploring Castellaniella defragrans Linalool (De)hydratase-Isomerase for Enzymatic Hydration of Alkenes
title_short Exploring Castellaniella defragrans Linalool (De)hydratase-Isomerase for Enzymatic Hydration of Alkenes
title_sort exploring castellaniella defragrans linalool (de)hydratase-isomerase for enzymatic hydration of alkenes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6600392/
https://www.ncbi.nlm.nih.gov/pubmed/31159367
http://dx.doi.org/10.3390/molecules24112092
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