Cargando…

Selective allylic hydroxylation of acyclic terpenoids by CYP154E1 from Thermobifida fusca YX

Allylic alcohols are valuable precursors in the synthesis of pharmaceutical intermediates, agrochemicals and natural products. Regioselective oxidation of parental alkenes is a challenging task for chemical catalysts and requires several steps including protection and deprotection. Many cytochrome P...

Descripción completa

Detalles Bibliográficos
Autores principales: Bogazkaya, Anna M, von Bühler, Clemens J, Kriening, Sebastian, Busch, Alexandrine, Seifert, Alexander, Pleiss, Jürgen, Laschat, Sabine, Urlacher, Vlada B
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Beilstein-Institut 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4077532/
https://www.ncbi.nlm.nih.gov/pubmed/24991288
http://dx.doi.org/10.3762/bjoc.10.137
_version_ 1782323609689128960
author Bogazkaya, Anna M
von Bühler, Clemens J
Kriening, Sebastian
Busch, Alexandrine
Seifert, Alexander
Pleiss, Jürgen
Laschat, Sabine
Urlacher, Vlada B
author_facet Bogazkaya, Anna M
von Bühler, Clemens J
Kriening, Sebastian
Busch, Alexandrine
Seifert, Alexander
Pleiss, Jürgen
Laschat, Sabine
Urlacher, Vlada B
author_sort Bogazkaya, Anna M
collection PubMed
description Allylic alcohols are valuable precursors in the synthesis of pharmaceutical intermediates, agrochemicals and natural products. Regioselective oxidation of parental alkenes is a challenging task for chemical catalysts and requires several steps including protection and deprotection. Many cytochrome P450 enzymes are known to catalyse selective allylic hydroxylation under mild conditions. Here, we describe CYP154E1 from Thermobifida fusca YX that enables this type of oxidation. Several acyclic terpenoids were tested as possible substrates for CYP154E1, and the regio- and chemoselectivity of their oxidation was investigated. Using a previously established bioinformatics approach we identified position 286 in the active site of CYP154E1 which is putatively involved in substrate binding and thereby might have an effect on enzyme selectivity. To tune regio- and chemoselectivity of the enzyme three mutants at position 286 were constructed and used for substrate oxidation. All formed products were analysed with GC–MS and identified using chemically synthesised authentic samples and known compounds as references. Best regioselectivity towards geraniol and nerol was observed with the wild type enzyme mainly leading to 8-hydroxy derivatives (8-hydroxygeraniol or 8-hydroxynerol) with high selectivity (100% and 96% respectively). Highest selectivities during the oxidation of geranylacetone and nerylacetone were observed with the following variants: V286F led mainly to 7-hydroxygeranylacetone (60% of the total product) and V286A produced predominantly 12-hydroxynerylacetone (75% of total product). Thus, CYP154E1 and its mutants expand the tool-box for allylic hydroxylation in synthetic chemistry.
format Online
Article
Text
id pubmed-4077532
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Beilstein-Institut
record_format MEDLINE/PubMed
spelling pubmed-40775322014-07-02 Selective allylic hydroxylation of acyclic terpenoids by CYP154E1 from Thermobifida fusca YX Bogazkaya, Anna M von Bühler, Clemens J Kriening, Sebastian Busch, Alexandrine Seifert, Alexander Pleiss, Jürgen Laschat, Sabine Urlacher, Vlada B Beilstein J Org Chem Full Research Paper Allylic alcohols are valuable precursors in the synthesis of pharmaceutical intermediates, agrochemicals and natural products. Regioselective oxidation of parental alkenes is a challenging task for chemical catalysts and requires several steps including protection and deprotection. Many cytochrome P450 enzymes are known to catalyse selective allylic hydroxylation under mild conditions. Here, we describe CYP154E1 from Thermobifida fusca YX that enables this type of oxidation. Several acyclic terpenoids were tested as possible substrates for CYP154E1, and the regio- and chemoselectivity of their oxidation was investigated. Using a previously established bioinformatics approach we identified position 286 in the active site of CYP154E1 which is putatively involved in substrate binding and thereby might have an effect on enzyme selectivity. To tune regio- and chemoselectivity of the enzyme three mutants at position 286 were constructed and used for substrate oxidation. All formed products were analysed with GC–MS and identified using chemically synthesised authentic samples and known compounds as references. Best regioselectivity towards geraniol and nerol was observed with the wild type enzyme mainly leading to 8-hydroxy derivatives (8-hydroxygeraniol or 8-hydroxynerol) with high selectivity (100% and 96% respectively). Highest selectivities during the oxidation of geranylacetone and nerylacetone were observed with the following variants: V286F led mainly to 7-hydroxygeranylacetone (60% of the total product) and V286A produced predominantly 12-hydroxynerylacetone (75% of total product). Thus, CYP154E1 and its mutants expand the tool-box for allylic hydroxylation in synthetic chemistry. Beilstein-Institut 2014-06-13 /pmc/articles/PMC4077532/ /pubmed/24991288 http://dx.doi.org/10.3762/bjoc.10.137 Text en Copyright © 2014, Bogazkaya et al. https://creativecommons.org/licenses/by/2.0https://www.beilstein-journals.org/bjoc/termsThis is an Open Access article under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. The license is subject to the Beilstein Journal of Organic Chemistry terms and conditions: (https://www.beilstein-journals.org/bjoc/terms)
spellingShingle Full Research Paper
Bogazkaya, Anna M
von Bühler, Clemens J
Kriening, Sebastian
Busch, Alexandrine
Seifert, Alexander
Pleiss, Jürgen
Laschat, Sabine
Urlacher, Vlada B
Selective allylic hydroxylation of acyclic terpenoids by CYP154E1 from Thermobifida fusca YX
title Selective allylic hydroxylation of acyclic terpenoids by CYP154E1 from Thermobifida fusca YX
title_full Selective allylic hydroxylation of acyclic terpenoids by CYP154E1 from Thermobifida fusca YX
title_fullStr Selective allylic hydroxylation of acyclic terpenoids by CYP154E1 from Thermobifida fusca YX
title_full_unstemmed Selective allylic hydroxylation of acyclic terpenoids by CYP154E1 from Thermobifida fusca YX
title_short Selective allylic hydroxylation of acyclic terpenoids by CYP154E1 from Thermobifida fusca YX
title_sort selective allylic hydroxylation of acyclic terpenoids by cyp154e1 from thermobifida fusca yx
topic Full Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4077532/
https://www.ncbi.nlm.nih.gov/pubmed/24991288
http://dx.doi.org/10.3762/bjoc.10.137
work_keys_str_mv AT bogazkayaannam selectiveallylichydroxylationofacyclicterpenoidsbycyp154e1fromthermobifidafuscayx
AT vonbuhlerclemensj selectiveallylichydroxylationofacyclicterpenoidsbycyp154e1fromthermobifidafuscayx
AT krieningsebastian selectiveallylichydroxylationofacyclicterpenoidsbycyp154e1fromthermobifidafuscayx
AT buschalexandrine selectiveallylichydroxylationofacyclicterpenoidsbycyp154e1fromthermobifidafuscayx
AT seifertalexander selectiveallylichydroxylationofacyclicterpenoidsbycyp154e1fromthermobifidafuscayx
AT pleissjurgen selectiveallylichydroxylationofacyclicterpenoidsbycyp154e1fromthermobifidafuscayx
AT laschatsabine selectiveallylichydroxylationofacyclicterpenoidsbycyp154e1fromthermobifidafuscayx
AT urlachervladab selectiveallylichydroxylationofacyclicterpenoidsbycyp154e1fromthermobifidafuscayx