Cargando…

Chemical Synthesis of Trans 8-Methyl-6-Nonenoyl-CoA and Functional Expression Unravel Capsaicin Synthase Activity Encoded by the Pun1 Locus

Capsaicin, produced by diverse Capsicum species, is among the world’s most popular spices and of considerable pharmaceutical relevance. Although the capsaicinoid biosynthetic pathway has been investigated for decades, several biosynthetic steps have remained partly hypothetical. Genetic evidence sug...

Descripción completa

Detalles Bibliográficos
Autores principales: Milde, Raika, Schnabel, Arianne, Ditfe, Toni, Hoehenwarter, Wolfgang, Proksch, Carsten, Westermann, Bernhard, Vogt, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9606859/
https://www.ncbi.nlm.nih.gov/pubmed/36296471
http://dx.doi.org/10.3390/molecules27206878
_version_ 1784818394862714880
author Milde, Raika
Schnabel, Arianne
Ditfe, Toni
Hoehenwarter, Wolfgang
Proksch, Carsten
Westermann, Bernhard
Vogt, Thomas
author_facet Milde, Raika
Schnabel, Arianne
Ditfe, Toni
Hoehenwarter, Wolfgang
Proksch, Carsten
Westermann, Bernhard
Vogt, Thomas
author_sort Milde, Raika
collection PubMed
description Capsaicin, produced by diverse Capsicum species, is among the world’s most popular spices and of considerable pharmaceutical relevance. Although the capsaicinoid biosynthetic pathway has been investigated for decades, several biosynthetic steps have remained partly hypothetical. Genetic evidence suggested that the decisive capsaicin synthase is encoded by the Pun1 locus. Yet, the genetic evidence of the Pun1 locus was never corroborated by functionally active capsaicin synthase that presumably catalyzes an amide bond formation between trans 8-methyl-6-nonenoyl-CoA derived from branched-chain amino acid biosynthesis and vanilloylamine derived from the phenylpropanoid pathway. In this report, we demonstrate the enzymatic activity of a recombinant capsaicin synthase encoded by Pun1, functionally expressed in Escherichia coli, and provide information on its substrate specificity and catalytic properties. Recombinant capsaicin synthase is specific for selected aliphatic CoA-esters and highly specific for vanilloylamine. Partly purified from E. coli, the recombinant active enzyme is a monomeric protein of 51 kDa that is independent of additional co-factors or associated proteins, as previously proposed. These data can now be used to design capsaicin synthase variants with different properties and alternative substrate preferences.
format Online
Article
Text
id pubmed-9606859
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-96068592022-10-28 Chemical Synthesis of Trans 8-Methyl-6-Nonenoyl-CoA and Functional Expression Unravel Capsaicin Synthase Activity Encoded by the Pun1 Locus Milde, Raika Schnabel, Arianne Ditfe, Toni Hoehenwarter, Wolfgang Proksch, Carsten Westermann, Bernhard Vogt, Thomas Molecules Article Capsaicin, produced by diverse Capsicum species, is among the world’s most popular spices and of considerable pharmaceutical relevance. Although the capsaicinoid biosynthetic pathway has been investigated for decades, several biosynthetic steps have remained partly hypothetical. Genetic evidence suggested that the decisive capsaicin synthase is encoded by the Pun1 locus. Yet, the genetic evidence of the Pun1 locus was never corroborated by functionally active capsaicin synthase that presumably catalyzes an amide bond formation between trans 8-methyl-6-nonenoyl-CoA derived from branched-chain amino acid biosynthesis and vanilloylamine derived from the phenylpropanoid pathway. In this report, we demonstrate the enzymatic activity of a recombinant capsaicin synthase encoded by Pun1, functionally expressed in Escherichia coli, and provide information on its substrate specificity and catalytic properties. Recombinant capsaicin synthase is specific for selected aliphatic CoA-esters and highly specific for vanilloylamine. Partly purified from E. coli, the recombinant active enzyme is a monomeric protein of 51 kDa that is independent of additional co-factors or associated proteins, as previously proposed. These data can now be used to design capsaicin synthase variants with different properties and alternative substrate preferences. MDPI 2022-10-13 /pmc/articles/PMC9606859/ /pubmed/36296471 http://dx.doi.org/10.3390/molecules27206878 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Milde, Raika
Schnabel, Arianne
Ditfe, Toni
Hoehenwarter, Wolfgang
Proksch, Carsten
Westermann, Bernhard
Vogt, Thomas
Chemical Synthesis of Trans 8-Methyl-6-Nonenoyl-CoA and Functional Expression Unravel Capsaicin Synthase Activity Encoded by the Pun1 Locus
title Chemical Synthesis of Trans 8-Methyl-6-Nonenoyl-CoA and Functional Expression Unravel Capsaicin Synthase Activity Encoded by the Pun1 Locus
title_full Chemical Synthesis of Trans 8-Methyl-6-Nonenoyl-CoA and Functional Expression Unravel Capsaicin Synthase Activity Encoded by the Pun1 Locus
title_fullStr Chemical Synthesis of Trans 8-Methyl-6-Nonenoyl-CoA and Functional Expression Unravel Capsaicin Synthase Activity Encoded by the Pun1 Locus
title_full_unstemmed Chemical Synthesis of Trans 8-Methyl-6-Nonenoyl-CoA and Functional Expression Unravel Capsaicin Synthase Activity Encoded by the Pun1 Locus
title_short Chemical Synthesis of Trans 8-Methyl-6-Nonenoyl-CoA and Functional Expression Unravel Capsaicin Synthase Activity Encoded by the Pun1 Locus
title_sort chemical synthesis of trans 8-methyl-6-nonenoyl-coa and functional expression unravel capsaicin synthase activity encoded by the pun1 locus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9606859/
https://www.ncbi.nlm.nih.gov/pubmed/36296471
http://dx.doi.org/10.3390/molecules27206878
work_keys_str_mv AT milderaika chemicalsynthesisoftrans8methyl6nonenoylcoaandfunctionalexpressionunravelcapsaicinsynthaseactivityencodedbythepun1locus
AT schnabelarianne chemicalsynthesisoftrans8methyl6nonenoylcoaandfunctionalexpressionunravelcapsaicinsynthaseactivityencodedbythepun1locus
AT ditfetoni chemicalsynthesisoftrans8methyl6nonenoylcoaandfunctionalexpressionunravelcapsaicinsynthaseactivityencodedbythepun1locus
AT hoehenwarterwolfgang chemicalsynthesisoftrans8methyl6nonenoylcoaandfunctionalexpressionunravelcapsaicinsynthaseactivityencodedbythepun1locus
AT prokschcarsten chemicalsynthesisoftrans8methyl6nonenoylcoaandfunctionalexpressionunravelcapsaicinsynthaseactivityencodedbythepun1locus
AT westermannbernhard chemicalsynthesisoftrans8methyl6nonenoylcoaandfunctionalexpressionunravelcapsaicinsynthaseactivityencodedbythepun1locus
AT vogtthomas chemicalsynthesisoftrans8methyl6nonenoylcoaandfunctionalexpressionunravelcapsaicinsynthaseactivityencodedbythepun1locus