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A Novel Zn(2)-Cys(6) Transcription Factor AtrR Plays a Key Role in an Azole Resistance Mechanism of Aspergillus fumigatus by Co-regulating cyp51A and cdr1B Expressions

Successful treatment of aspergillosis caused by Aspergillus fumigatus is threatened by an increasing incidence of drug resistance. This situation is further complicated by the finding that strains resistant to azoles, the major antifungal drugs for aspergillosis, have been widely disseminated across...

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Autores principales: Hagiwara, Daisuke, Miura, Daisuke, Shimizu, Kiminori, Paul, Sanjoy, Ohba, Ayumi, Gonoi, Tohru, Watanabe, Akira, Kamei, Katsuhiko, Shintani, Takahiro, Moye-Rowley, W. Scott, Kawamoto, Susumu, Gomi, Katsuya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5215518/
https://www.ncbi.nlm.nih.gov/pubmed/28052140
http://dx.doi.org/10.1371/journal.ppat.1006096
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author Hagiwara, Daisuke
Miura, Daisuke
Shimizu, Kiminori
Paul, Sanjoy
Ohba, Ayumi
Gonoi, Tohru
Watanabe, Akira
Kamei, Katsuhiko
Shintani, Takahiro
Moye-Rowley, W. Scott
Kawamoto, Susumu
Gomi, Katsuya
author_facet Hagiwara, Daisuke
Miura, Daisuke
Shimizu, Kiminori
Paul, Sanjoy
Ohba, Ayumi
Gonoi, Tohru
Watanabe, Akira
Kamei, Katsuhiko
Shintani, Takahiro
Moye-Rowley, W. Scott
Kawamoto, Susumu
Gomi, Katsuya
author_sort Hagiwara, Daisuke
collection PubMed
description Successful treatment of aspergillosis caused by Aspergillus fumigatus is threatened by an increasing incidence of drug resistance. This situation is further complicated by the finding that strains resistant to azoles, the major antifungal drugs for aspergillosis, have been widely disseminated across the globe. To elucidate mechanisms underlying azole resistance, we identified a novel transcription factor that is required for normal azole resistance in Aspergillus fungi including A. fumigatus, Aspergillus oryzae, and Aspergillus nidulans. This fungal-specific Zn(2)-Cys(6) type transcription factor AtrR was found to regulate expression of the genes related to ergosterol biosynthesis, including cyp51A that encodes a target protein of azoles. The atrR deletion mutant showed impaired growth under hypoxic conditions and attenuation of virulence in murine infection model for aspergillosis. These results were similar to the phenotypes for a mutant strain lacking SrbA that is also a direct regulator for the cyp51A gene. Notably, AtrR was responsible for the expression of cdr1B that encodes an ABC transporter related to azole resistance, whereas SrbA was not involved in the regulation. Chromatin immunoprecipitation assays indicated that AtrR directly bound both the cyp51A and cdr1B promoters. In the clinically isolated itraconazole resistant strain that harbors a mutant Cyp51A (G54E), deletion of the atrR gene resulted in a hypersensitivity to the azole drugs. Together, our results revealed that AtrR plays a pivotal role in a novel azole resistance mechanism by co-regulating the drug target (Cyp51A) and putative drug efflux pump (Cdr1B).
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spelling pubmed-52155182017-01-19 A Novel Zn(2)-Cys(6) Transcription Factor AtrR Plays a Key Role in an Azole Resistance Mechanism of Aspergillus fumigatus by Co-regulating cyp51A and cdr1B Expressions Hagiwara, Daisuke Miura, Daisuke Shimizu, Kiminori Paul, Sanjoy Ohba, Ayumi Gonoi, Tohru Watanabe, Akira Kamei, Katsuhiko Shintani, Takahiro Moye-Rowley, W. Scott Kawamoto, Susumu Gomi, Katsuya PLoS Pathog Research Article Successful treatment of aspergillosis caused by Aspergillus fumigatus is threatened by an increasing incidence of drug resistance. This situation is further complicated by the finding that strains resistant to azoles, the major antifungal drugs for aspergillosis, have been widely disseminated across the globe. To elucidate mechanisms underlying azole resistance, we identified a novel transcription factor that is required for normal azole resistance in Aspergillus fungi including A. fumigatus, Aspergillus oryzae, and Aspergillus nidulans. This fungal-specific Zn(2)-Cys(6) type transcription factor AtrR was found to regulate expression of the genes related to ergosterol biosynthesis, including cyp51A that encodes a target protein of azoles. The atrR deletion mutant showed impaired growth under hypoxic conditions and attenuation of virulence in murine infection model for aspergillosis. These results were similar to the phenotypes for a mutant strain lacking SrbA that is also a direct regulator for the cyp51A gene. Notably, AtrR was responsible for the expression of cdr1B that encodes an ABC transporter related to azole resistance, whereas SrbA was not involved in the regulation. Chromatin immunoprecipitation assays indicated that AtrR directly bound both the cyp51A and cdr1B promoters. In the clinically isolated itraconazole resistant strain that harbors a mutant Cyp51A (G54E), deletion of the atrR gene resulted in a hypersensitivity to the azole drugs. Together, our results revealed that AtrR plays a pivotal role in a novel azole resistance mechanism by co-regulating the drug target (Cyp51A) and putative drug efflux pump (Cdr1B). Public Library of Science 2017-01-04 /pmc/articles/PMC5215518/ /pubmed/28052140 http://dx.doi.org/10.1371/journal.ppat.1006096 Text en © 2017 Hagiwara et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Hagiwara, Daisuke
Miura, Daisuke
Shimizu, Kiminori
Paul, Sanjoy
Ohba, Ayumi
Gonoi, Tohru
Watanabe, Akira
Kamei, Katsuhiko
Shintani, Takahiro
Moye-Rowley, W. Scott
Kawamoto, Susumu
Gomi, Katsuya
A Novel Zn(2)-Cys(6) Transcription Factor AtrR Plays a Key Role in an Azole Resistance Mechanism of Aspergillus fumigatus by Co-regulating cyp51A and cdr1B Expressions
title A Novel Zn(2)-Cys(6) Transcription Factor AtrR Plays a Key Role in an Azole Resistance Mechanism of Aspergillus fumigatus by Co-regulating cyp51A and cdr1B Expressions
title_full A Novel Zn(2)-Cys(6) Transcription Factor AtrR Plays a Key Role in an Azole Resistance Mechanism of Aspergillus fumigatus by Co-regulating cyp51A and cdr1B Expressions
title_fullStr A Novel Zn(2)-Cys(6) Transcription Factor AtrR Plays a Key Role in an Azole Resistance Mechanism of Aspergillus fumigatus by Co-regulating cyp51A and cdr1B Expressions
title_full_unstemmed A Novel Zn(2)-Cys(6) Transcription Factor AtrR Plays a Key Role in an Azole Resistance Mechanism of Aspergillus fumigatus by Co-regulating cyp51A and cdr1B Expressions
title_short A Novel Zn(2)-Cys(6) Transcription Factor AtrR Plays a Key Role in an Azole Resistance Mechanism of Aspergillus fumigatus by Co-regulating cyp51A and cdr1B Expressions
title_sort novel zn(2)-cys(6) transcription factor atrr plays a key role in an azole resistance mechanism of aspergillus fumigatus by co-regulating cyp51a and cdr1b expressions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5215518/
https://www.ncbi.nlm.nih.gov/pubmed/28052140
http://dx.doi.org/10.1371/journal.ppat.1006096
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