A high-throughput colorimetric screening assay for terpene synthase activity based on substrate consumption.

Terpene synthases catalyze the formation of a variety of terpene chemical structures. Systematic mutagenesis studies have been effective in providing insights into the characteristic and complex mechanisms of C-C bond formations and in exploring the enzymatic potential for inventing new chemical str...

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Main Authors: Maiko Furubayashi, Mayu Ikezumi, Jun Kajiwara, Miki Iwasaki, Akira Fujii, Ling Li, Kyoichi Saito, Daisuke Umeno
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3969365?pdf=render
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spelling doaj-67df3da6120549faabd3a1e971c4f0492020-11-25T02:15:31ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0193e9331710.1371/journal.pone.0093317A high-throughput colorimetric screening assay for terpene synthase activity based on substrate consumption.Maiko FurubayashiMayu IkezumiJun KajiwaraMiki IwasakiAkira FujiiLing LiKyoichi SaitoDaisuke UmenoTerpene synthases catalyze the formation of a variety of terpene chemical structures. Systematic mutagenesis studies have been effective in providing insights into the characteristic and complex mechanisms of C-C bond formations and in exploring the enzymatic potential for inventing new chemical structures. In addition, there is growing demand to increase terpene synthase activity in heterologous hosts, given the maturation of metabolic engineering and host breeding for terpenoid synthesis. We have developed a simple screening method for the cellular activities of terpene synthases by scoring their substrate consumption based on the color loss of the cell harboring carotenoid pathways. We demonstrate that this method can be used to detect activities of various terpene synthase or prenyltransferase genes in a high-throughput manner, irrespective of the product type, enabling the mutation analysis and directed evolution of terpene synthases. We also report the possibility for substrate-specific screening system of terpene synthases by taking advantage of the substrate-size specificity of C30 and C40 carotenoid pathways.http://europepmc.org/articles/PMC3969365?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Maiko Furubayashi
Mayu Ikezumi
Jun Kajiwara
Miki Iwasaki
Akira Fujii
Ling Li
Kyoichi Saito
Daisuke Umeno
spellingShingle Maiko Furubayashi
Mayu Ikezumi
Jun Kajiwara
Miki Iwasaki
Akira Fujii
Ling Li
Kyoichi Saito
Daisuke Umeno
A high-throughput colorimetric screening assay for terpene synthase activity based on substrate consumption.
PLoS ONE
author_facet Maiko Furubayashi
Mayu Ikezumi
Jun Kajiwara
Miki Iwasaki
Akira Fujii
Ling Li
Kyoichi Saito
Daisuke Umeno
author_sort Maiko Furubayashi
title A high-throughput colorimetric screening assay for terpene synthase activity based on substrate consumption.
title_short A high-throughput colorimetric screening assay for terpene synthase activity based on substrate consumption.
title_full A high-throughput colorimetric screening assay for terpene synthase activity based on substrate consumption.
title_fullStr A high-throughput colorimetric screening assay for terpene synthase activity based on substrate consumption.
title_full_unstemmed A high-throughput colorimetric screening assay for terpene synthase activity based on substrate consumption.
title_sort high-throughput colorimetric screening assay for terpene synthase activity based on substrate consumption.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Terpene synthases catalyze the formation of a variety of terpene chemical structures. Systematic mutagenesis studies have been effective in providing insights into the characteristic and complex mechanisms of C-C bond formations and in exploring the enzymatic potential for inventing new chemical structures. In addition, there is growing demand to increase terpene synthase activity in heterologous hosts, given the maturation of metabolic engineering and host breeding for terpenoid synthesis. We have developed a simple screening method for the cellular activities of terpene synthases by scoring their substrate consumption based on the color loss of the cell harboring carotenoid pathways. We demonstrate that this method can be used to detect activities of various terpene synthase or prenyltransferase genes in a high-throughput manner, irrespective of the product type, enabling the mutation analysis and directed evolution of terpene synthases. We also report the possibility for substrate-specific screening system of terpene synthases by taking advantage of the substrate-size specificity of C30 and C40 carotenoid pathways.
url http://europepmc.org/articles/PMC3969365?pdf=render
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