Cargando…

MYC2 Transcription Factors TwMYC2a and TwMYC2b Negatively Regulate Triptolide Biosynthesis in Tripterygium wilfordii Hairy Roots

Triptolide, an important bioactive diterpenoid extracted from the plant Tripterygium wilfordii, exhibits many pharmacological activities. MYC2 transcription factor (TF) plays an important role in the regulation of various secondary metabolites in plants. However, whether MYC2 TF could regulate the b...

Descripción completa

Detalles Bibliográficos
Autores principales: Huo, Yanbo, Zhang, Jing, Zhang, Bin, Chen, Ling, Zhang, Xing, Zhu, Chuanshu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8067133/
https://www.ncbi.nlm.nih.gov/pubmed/33916111
http://dx.doi.org/10.3390/plants10040679
_version_ 1783682730270130176
author Huo, Yanbo
Zhang, Jing
Zhang, Bin
Chen, Ling
Zhang, Xing
Zhu, Chuanshu
author_facet Huo, Yanbo
Zhang, Jing
Zhang, Bin
Chen, Ling
Zhang, Xing
Zhu, Chuanshu
author_sort Huo, Yanbo
collection PubMed
description Triptolide, an important bioactive diterpenoid extracted from the plant Tripterygium wilfordii, exhibits many pharmacological activities. MYC2 transcription factor (TF) plays an important role in the regulation of various secondary metabolites in plants. However, whether MYC2 TF could regulate the biosynthesis of triptolide in T. wilfordii is still unknown. In this study, two homologous MYC2 TF genes, TwMYC2a and TwMYC2b, were isolated from T. wilfordii hairy roots and functionally characterized. The analyses of the phylogenetic tree and subcellular localization showed that they were grouped into the IIIe clade of the bHLH superfamily with other functional MYC2 proteins and localized in the nucleus. Furthermore, yeast one-hybrid and GUS transactivation assays suggested that TwMYC2a and TwMYC2b inhibited the promoter activity of the miltiradiene synthase genes, TwTPS27a and TwTPS27b, by binding to the E-box (CACATG) and T/G-box (CACGTT) motifs in their promoters. Transgenic results revealed that RNA interference of TwMYC2a/b significantly enhanced the triptolide accumulation in hairy roots and liquid medium by upregulating the expression of several key biosynthetic genes, including TwMS (TwTPS27a/b), TwCPS (TwTPS7/9), TwDXR, and TwHMGR1. In summary, our findings show that TwMYC2a and TwMYC2b act as two negative regulators of triptolide biosynthesis in T. wilfordii hairy roots and also provide new insights on metabolic engineering of triptolide in the future.
format Online
Article
Text
id pubmed-8067133
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-80671332021-04-25 MYC2 Transcription Factors TwMYC2a and TwMYC2b Negatively Regulate Triptolide Biosynthesis in Tripterygium wilfordii Hairy Roots Huo, Yanbo Zhang, Jing Zhang, Bin Chen, Ling Zhang, Xing Zhu, Chuanshu Plants (Basel) Article Triptolide, an important bioactive diterpenoid extracted from the plant Tripterygium wilfordii, exhibits many pharmacological activities. MYC2 transcription factor (TF) plays an important role in the regulation of various secondary metabolites in plants. However, whether MYC2 TF could regulate the biosynthesis of triptolide in T. wilfordii is still unknown. In this study, two homologous MYC2 TF genes, TwMYC2a and TwMYC2b, were isolated from T. wilfordii hairy roots and functionally characterized. The analyses of the phylogenetic tree and subcellular localization showed that they were grouped into the IIIe clade of the bHLH superfamily with other functional MYC2 proteins and localized in the nucleus. Furthermore, yeast one-hybrid and GUS transactivation assays suggested that TwMYC2a and TwMYC2b inhibited the promoter activity of the miltiradiene synthase genes, TwTPS27a and TwTPS27b, by binding to the E-box (CACATG) and T/G-box (CACGTT) motifs in their promoters. Transgenic results revealed that RNA interference of TwMYC2a/b significantly enhanced the triptolide accumulation in hairy roots and liquid medium by upregulating the expression of several key biosynthetic genes, including TwMS (TwTPS27a/b), TwCPS (TwTPS7/9), TwDXR, and TwHMGR1. In summary, our findings show that TwMYC2a and TwMYC2b act as two negative regulators of triptolide biosynthesis in T. wilfordii hairy roots and also provide new insights on metabolic engineering of triptolide in the future. MDPI 2021-04-01 /pmc/articles/PMC8067133/ /pubmed/33916111 http://dx.doi.org/10.3390/plants10040679 Text en © 2021 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
Huo, Yanbo
Zhang, Jing
Zhang, Bin
Chen, Ling
Zhang, Xing
Zhu, Chuanshu
MYC2 Transcription Factors TwMYC2a and TwMYC2b Negatively Regulate Triptolide Biosynthesis in Tripterygium wilfordii Hairy Roots
title MYC2 Transcription Factors TwMYC2a and TwMYC2b Negatively Regulate Triptolide Biosynthesis in Tripterygium wilfordii Hairy Roots
title_full MYC2 Transcription Factors TwMYC2a and TwMYC2b Negatively Regulate Triptolide Biosynthesis in Tripterygium wilfordii Hairy Roots
title_fullStr MYC2 Transcription Factors TwMYC2a and TwMYC2b Negatively Regulate Triptolide Biosynthesis in Tripterygium wilfordii Hairy Roots
title_full_unstemmed MYC2 Transcription Factors TwMYC2a and TwMYC2b Negatively Regulate Triptolide Biosynthesis in Tripterygium wilfordii Hairy Roots
title_short MYC2 Transcription Factors TwMYC2a and TwMYC2b Negatively Regulate Triptolide Biosynthesis in Tripterygium wilfordii Hairy Roots
title_sort myc2 transcription factors twmyc2a and twmyc2b negatively regulate triptolide biosynthesis in tripterygium wilfordii hairy roots
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8067133/
https://www.ncbi.nlm.nih.gov/pubmed/33916111
http://dx.doi.org/10.3390/plants10040679
work_keys_str_mv AT huoyanbo myc2transcriptionfactorstwmyc2aandtwmyc2bnegativelyregulatetriptolidebiosynthesisintripterygiumwilfordiihairyroots
AT zhangjing myc2transcriptionfactorstwmyc2aandtwmyc2bnegativelyregulatetriptolidebiosynthesisintripterygiumwilfordiihairyroots
AT zhangbin myc2transcriptionfactorstwmyc2aandtwmyc2bnegativelyregulatetriptolidebiosynthesisintripterygiumwilfordiihairyroots
AT chenling myc2transcriptionfactorstwmyc2aandtwmyc2bnegativelyregulatetriptolidebiosynthesisintripterygiumwilfordiihairyroots
AT zhangxing myc2transcriptionfactorstwmyc2aandtwmyc2bnegativelyregulatetriptolidebiosynthesisintripterygiumwilfordiihairyroots
AT zhuchuanshu myc2transcriptionfactorstwmyc2aandtwmyc2bnegativelyregulatetriptolidebiosynthesisintripterygiumwilfordiihairyroots