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VpStyA1/VpStyA2B of Variovorax paradoxus EPS: An Aryl Alkyl Sulfoxidase Rather than a Styrene Epoxidizing Monooxygenase

Herein we describe the first representative of an E2-type two-component styrene monooxygenase of proteobacteria. It comprises a single epoxidase protein (VpStyA1) and a two domain protein (VpStyA2B) harboring an epoxidase (A2) and a FAD-reductase (B) domain. It was annotated as VpStyA1/VpStyA2B of V...

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Autores principales: Tischler, Dirk, Schwabe, Ringo, Siegel, Lucas, Joffroy, Kristin, Kaschabek, Stefan R., Scholtissek, Anika, Heine, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6017014/
https://www.ncbi.nlm.nih.gov/pubmed/29614810
http://dx.doi.org/10.3390/molecules23040809
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author Tischler, Dirk
Schwabe, Ringo
Siegel, Lucas
Joffroy, Kristin
Kaschabek, Stefan R.
Scholtissek, Anika
Heine, Thomas
author_facet Tischler, Dirk
Schwabe, Ringo
Siegel, Lucas
Joffroy, Kristin
Kaschabek, Stefan R.
Scholtissek, Anika
Heine, Thomas
author_sort Tischler, Dirk
collection PubMed
description Herein we describe the first representative of an E2-type two-component styrene monooxygenase of proteobacteria. It comprises a single epoxidase protein (VpStyA1) and a two domain protein (VpStyA2B) harboring an epoxidase (A2) and a FAD-reductase (B) domain. It was annotated as VpStyA1/VpStyA2B of Variovorax paradoxus EPS. VpStyA2B serves mainly as NADH:FAD-oxidoreductase. A K(m) of 33.6 ± 4.0 µM for FAD and a k(cat) of 22.3 ± 1.1 s(−1) were determined and resulted in a catalytic efficiency (k(cat) K(m)(−1)) of 0.64 s(−1) μM(−1). To investigate its NADH:FAD-oxidoreductase function the linker between A2- and B-domain (AREAV) was mutated. One mutant (AAAAA) showed 18.7-fold higher affinity for FAD (k(cat) K(m)(−1) of 5.21 s(−1) μM(−1)) while keeping wildtype NADH-affinity and -oxidation activity. Both components, VpStyA2B and VpStyA1, showed monooxygenase activity on styrene of 0.14 U mg(−1) and 0.46 U mg(−1), as well as on benzyl methyl sulfide of 1.62 U mg(−1) and 3.11 U mg(−1), respectively. The high sulfoxidase activity was the reason to test several thioanisole-like substrates in biotransformations. VpStyA1 showed high substrate conversions (up to 95% in 2 h) and produced dominantly (S)-enantiomeric sulfoxides of all tested substrates. The AAAAA-mutant showed a 1.6-fold increased monooxygenase activity. In comparison, the GQWCSQY-mutant did neither show monooxygenase nor efficient FAD-reductase activity. Hence, the linker between the two domains of VpStyA2B has effects on the reductase as well as on the monooxygenase performance. Overall, this monooxygenase represents a promising candidate for biocatalyst development and studying natural fusion proteins.
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spelling pubmed-60170142018-11-13 VpStyA1/VpStyA2B of Variovorax paradoxus EPS: An Aryl Alkyl Sulfoxidase Rather than a Styrene Epoxidizing Monooxygenase Tischler, Dirk Schwabe, Ringo Siegel, Lucas Joffroy, Kristin Kaschabek, Stefan R. Scholtissek, Anika Heine, Thomas Molecules Article Herein we describe the first representative of an E2-type two-component styrene monooxygenase of proteobacteria. It comprises a single epoxidase protein (VpStyA1) and a two domain protein (VpStyA2B) harboring an epoxidase (A2) and a FAD-reductase (B) domain. It was annotated as VpStyA1/VpStyA2B of Variovorax paradoxus EPS. VpStyA2B serves mainly as NADH:FAD-oxidoreductase. A K(m) of 33.6 ± 4.0 µM for FAD and a k(cat) of 22.3 ± 1.1 s(−1) were determined and resulted in a catalytic efficiency (k(cat) K(m)(−1)) of 0.64 s(−1) μM(−1). To investigate its NADH:FAD-oxidoreductase function the linker between A2- and B-domain (AREAV) was mutated. One mutant (AAAAA) showed 18.7-fold higher affinity for FAD (k(cat) K(m)(−1) of 5.21 s(−1) μM(−1)) while keeping wildtype NADH-affinity and -oxidation activity. Both components, VpStyA2B and VpStyA1, showed monooxygenase activity on styrene of 0.14 U mg(−1) and 0.46 U mg(−1), as well as on benzyl methyl sulfide of 1.62 U mg(−1) and 3.11 U mg(−1), respectively. The high sulfoxidase activity was the reason to test several thioanisole-like substrates in biotransformations. VpStyA1 showed high substrate conversions (up to 95% in 2 h) and produced dominantly (S)-enantiomeric sulfoxides of all tested substrates. The AAAAA-mutant showed a 1.6-fold increased monooxygenase activity. In comparison, the GQWCSQY-mutant did neither show monooxygenase nor efficient FAD-reductase activity. Hence, the linker between the two domains of VpStyA2B has effects on the reductase as well as on the monooxygenase performance. Overall, this monooxygenase represents a promising candidate for biocatalyst development and studying natural fusion proteins. MDPI 2018-04-02 /pmc/articles/PMC6017014/ /pubmed/29614810 http://dx.doi.org/10.3390/molecules23040809 Text en © 2018 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
Tischler, Dirk
Schwabe, Ringo
Siegel, Lucas
Joffroy, Kristin
Kaschabek, Stefan R.
Scholtissek, Anika
Heine, Thomas
VpStyA1/VpStyA2B of Variovorax paradoxus EPS: An Aryl Alkyl Sulfoxidase Rather than a Styrene Epoxidizing Monooxygenase
title VpStyA1/VpStyA2B of Variovorax paradoxus EPS: An Aryl Alkyl Sulfoxidase Rather than a Styrene Epoxidizing Monooxygenase
title_full VpStyA1/VpStyA2B of Variovorax paradoxus EPS: An Aryl Alkyl Sulfoxidase Rather than a Styrene Epoxidizing Monooxygenase
title_fullStr VpStyA1/VpStyA2B of Variovorax paradoxus EPS: An Aryl Alkyl Sulfoxidase Rather than a Styrene Epoxidizing Monooxygenase
title_full_unstemmed VpStyA1/VpStyA2B of Variovorax paradoxus EPS: An Aryl Alkyl Sulfoxidase Rather than a Styrene Epoxidizing Monooxygenase
title_short VpStyA1/VpStyA2B of Variovorax paradoxus EPS: An Aryl Alkyl Sulfoxidase Rather than a Styrene Epoxidizing Monooxygenase
title_sort vpstya1/vpstya2b of variovorax paradoxus eps: an aryl alkyl sulfoxidase rather than a styrene epoxidizing monooxygenase
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6017014/
https://www.ncbi.nlm.nih.gov/pubmed/29614810
http://dx.doi.org/10.3390/molecules23040809
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