Cargando…

The CYP51F1 Gene of Leptographium qinlingensis: Sequence Characteristic, Phylogeny and Transcript Levels

Leptographium qinlingensis is a fungal associate of the Chinese white pine beetle (Dendroctonus armandi) and a pathogen of the Chinese white pine (Pinus armandi) that must overcome the terpenoid oleoresin defenses of host trees. L. qinlingensis responds to monoterpene flow with abundant mechanisms t...

Descripción completa

Detalles Bibliográficos
Autores principales: Dai, Lulu, Li, Zhumei, Yu, Jiamin, Ma, Mingyuan, Zhang, Ranran, Chen, Hui, Pham, Thanh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4490426/
https://www.ncbi.nlm.nih.gov/pubmed/26016505
http://dx.doi.org/10.3390/ijms160612014
_version_ 1782379500901761024
author Dai, Lulu
Li, Zhumei
Yu, Jiamin
Ma, Mingyuan
Zhang, Ranran
Chen, Hui
Pham, Thanh
author_facet Dai, Lulu
Li, Zhumei
Yu, Jiamin
Ma, Mingyuan
Zhang, Ranran
Chen, Hui
Pham, Thanh
author_sort Dai, Lulu
collection PubMed
description Leptographium qinlingensis is a fungal associate of the Chinese white pine beetle (Dendroctonus armandi) and a pathogen of the Chinese white pine (Pinus armandi) that must overcome the terpenoid oleoresin defenses of host trees. L. qinlingensis responds to monoterpene flow with abundant mechanisms that include export and the use of these compounds as a carbon source. As one of the fungal cytochrome P450 proteins (CYPs), which play important roles in general metabolism, CYP51 (lanosterol 14-α demethylase) can catalyze the biosynthesis of ergosterol and is a target for antifungal drug. We have identified an L. qinlingensis CYP51F1 gene, and the phylogenetic analysis shows the highest homology with the 14-α-demethylase sequence from Grosmannia clavigera (a fungal associate of Dendroctonus ponderosae). The transcription level of CYP51F1 following treatment with terpenes and pine phloem extracts was upregulated, while using monoterpenes as the only carbon source led to the downregulation of CYP5F1 expression. The homology modeling structure of CYP51F1 is similar to the structure of the lanosterol 14-α demethylase protein of Saccharomyces cerevisiae YJM789, which has an N-terminal membrane helix 1 (MH1) and transmembrane helix 1 (TMH1). The minimal inhibitory concentrations (MIC) of terpenoid and azole fungicides (itraconazole (ITC)) and the docking of terpenoid molecules, lanosterol and ITC in the protein structure suggested that CYP51F1 may be inhibited by terpenoid molecules by competitive binding with azole fungicides.
format Online
Article
Text
id pubmed-4490426
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-44904262015-07-07 The CYP51F1 Gene of Leptographium qinlingensis: Sequence Characteristic, Phylogeny and Transcript Levels Dai, Lulu Li, Zhumei Yu, Jiamin Ma, Mingyuan Zhang, Ranran Chen, Hui Pham, Thanh Int J Mol Sci Article Leptographium qinlingensis is a fungal associate of the Chinese white pine beetle (Dendroctonus armandi) and a pathogen of the Chinese white pine (Pinus armandi) that must overcome the terpenoid oleoresin defenses of host trees. L. qinlingensis responds to monoterpene flow with abundant mechanisms that include export and the use of these compounds as a carbon source. As one of the fungal cytochrome P450 proteins (CYPs), which play important roles in general metabolism, CYP51 (lanosterol 14-α demethylase) can catalyze the biosynthesis of ergosterol and is a target for antifungal drug. We have identified an L. qinlingensis CYP51F1 gene, and the phylogenetic analysis shows the highest homology with the 14-α-demethylase sequence from Grosmannia clavigera (a fungal associate of Dendroctonus ponderosae). The transcription level of CYP51F1 following treatment with terpenes and pine phloem extracts was upregulated, while using monoterpenes as the only carbon source led to the downregulation of CYP5F1 expression. The homology modeling structure of CYP51F1 is similar to the structure of the lanosterol 14-α demethylase protein of Saccharomyces cerevisiae YJM789, which has an N-terminal membrane helix 1 (MH1) and transmembrane helix 1 (TMH1). The minimal inhibitory concentrations (MIC) of terpenoid and azole fungicides (itraconazole (ITC)) and the docking of terpenoid molecules, lanosterol and ITC in the protein structure suggested that CYP51F1 may be inhibited by terpenoid molecules by competitive binding with azole fungicides. MDPI 2015-05-26 /pmc/articles/PMC4490426/ /pubmed/26016505 http://dx.doi.org/10.3390/ijms160612014 Text en © 2015 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 license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Dai, Lulu
Li, Zhumei
Yu, Jiamin
Ma, Mingyuan
Zhang, Ranran
Chen, Hui
Pham, Thanh
The CYP51F1 Gene of Leptographium qinlingensis: Sequence Characteristic, Phylogeny and Transcript Levels
title The CYP51F1 Gene of Leptographium qinlingensis: Sequence Characteristic, Phylogeny and Transcript Levels
title_full The CYP51F1 Gene of Leptographium qinlingensis: Sequence Characteristic, Phylogeny and Transcript Levels
title_fullStr The CYP51F1 Gene of Leptographium qinlingensis: Sequence Characteristic, Phylogeny and Transcript Levels
title_full_unstemmed The CYP51F1 Gene of Leptographium qinlingensis: Sequence Characteristic, Phylogeny and Transcript Levels
title_short The CYP51F1 Gene of Leptographium qinlingensis: Sequence Characteristic, Phylogeny and Transcript Levels
title_sort cyp51f1 gene of leptographium qinlingensis: sequence characteristic, phylogeny and transcript levels
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4490426/
https://www.ncbi.nlm.nih.gov/pubmed/26016505
http://dx.doi.org/10.3390/ijms160612014
work_keys_str_mv AT dailulu thecyp51f1geneofleptographiumqinlingensissequencecharacteristicphylogenyandtranscriptlevels
AT lizhumei thecyp51f1geneofleptographiumqinlingensissequencecharacteristicphylogenyandtranscriptlevels
AT yujiamin thecyp51f1geneofleptographiumqinlingensissequencecharacteristicphylogenyandtranscriptlevels
AT mamingyuan thecyp51f1geneofleptographiumqinlingensissequencecharacteristicphylogenyandtranscriptlevels
AT zhangranran thecyp51f1geneofleptographiumqinlingensissequencecharacteristicphylogenyandtranscriptlevels
AT chenhui thecyp51f1geneofleptographiumqinlingensissequencecharacteristicphylogenyandtranscriptlevels
AT phamthanh thecyp51f1geneofleptographiumqinlingensissequencecharacteristicphylogenyandtranscriptlevels
AT dailulu cyp51f1geneofleptographiumqinlingensissequencecharacteristicphylogenyandtranscriptlevels
AT lizhumei cyp51f1geneofleptographiumqinlingensissequencecharacteristicphylogenyandtranscriptlevels
AT yujiamin cyp51f1geneofleptographiumqinlingensissequencecharacteristicphylogenyandtranscriptlevels
AT mamingyuan cyp51f1geneofleptographiumqinlingensissequencecharacteristicphylogenyandtranscriptlevels
AT zhangranran cyp51f1geneofleptographiumqinlingensissequencecharacteristicphylogenyandtranscriptlevels
AT chenhui cyp51f1geneofleptographiumqinlingensissequencecharacteristicphylogenyandtranscriptlevels
AT phamthanh cyp51f1geneofleptographiumqinlingensissequencecharacteristicphylogenyandtranscriptlevels