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Alternative Splicing in Trichophyton rubrum Occurs in Efflux Pump Transcripts in Response to Antifungal Drugs

Dermatophytes are challenging to treat because they have developed many strategies to neutralize the stress triggered by antifungals. Drug tolerance is achieved by mechanisms such as drug efflux and biofilm formation, and cellular efflux is a consequence of the synergistic and compensatory regulatio...

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Autores principales: Lopes, Marcos E. R., Bitencourt, Tamires A., Sanches, Pablo R., Martins, Maíra P., Oliveira, Vanderci M., Rossi, Antonio, Martinez-Rossi, Nilce M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9410333/
https://www.ncbi.nlm.nih.gov/pubmed/36012866
http://dx.doi.org/10.3390/jof8080878
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author Lopes, Marcos E. R.
Bitencourt, Tamires A.
Sanches, Pablo R.
Martins, Maíra P.
Oliveira, Vanderci M.
Rossi, Antonio
Martinez-Rossi, Nilce M.
author_facet Lopes, Marcos E. R.
Bitencourt, Tamires A.
Sanches, Pablo R.
Martins, Maíra P.
Oliveira, Vanderci M.
Rossi, Antonio
Martinez-Rossi, Nilce M.
author_sort Lopes, Marcos E. R.
collection PubMed
description Dermatophytes are challenging to treat because they have developed many strategies to neutralize the stress triggered by antifungals. Drug tolerance is achieved by mechanisms such as drug efflux and biofilm formation, and cellular efflux is a consequence of the synergistic and compensatory regulation of efflux pumps. Alternative splicing (AS) has also been considered as a mechanism that enhances fungal adaptive responses. We used RNA-seq data from the dermatophyte Trichophyton rubrum exposed to undecanoic acid (UDA) to search for and validate AS in genes encoding efflux pumps. The magnitude of this phenomenon was evaluated using UDA and other antifungals (caspofungin, itraconazole, and terbinafine) in planktonic and biofilm cultures. In addition to the conventional isoforms, the efflux pump encoded by TERG_04309 presented two intron-retained isoforms. Biofilms trigger the simultaneous production of at least two isoforms. The intron-retained isoforms showed short lengths and topologically different organization. Furthermore, we identified the putative interaction of efflux pumps (TERG_04309 and TERG_04224). Co-expression of these genes suggests a synergistic action in antifungal resistance. Our data provide new insights into drug tolerance related to differential isoform usage and the co-expression of stress-responsive genes, which may lead to higher antifungal resistance, mainly in biofilms.
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spelling pubmed-94103332022-08-26 Alternative Splicing in Trichophyton rubrum Occurs in Efflux Pump Transcripts in Response to Antifungal Drugs Lopes, Marcos E. R. Bitencourt, Tamires A. Sanches, Pablo R. Martins, Maíra P. Oliveira, Vanderci M. Rossi, Antonio Martinez-Rossi, Nilce M. J Fungi (Basel) Article Dermatophytes are challenging to treat because they have developed many strategies to neutralize the stress triggered by antifungals. Drug tolerance is achieved by mechanisms such as drug efflux and biofilm formation, and cellular efflux is a consequence of the synergistic and compensatory regulation of efflux pumps. Alternative splicing (AS) has also been considered as a mechanism that enhances fungal adaptive responses. We used RNA-seq data from the dermatophyte Trichophyton rubrum exposed to undecanoic acid (UDA) to search for and validate AS in genes encoding efflux pumps. The magnitude of this phenomenon was evaluated using UDA and other antifungals (caspofungin, itraconazole, and terbinafine) in planktonic and biofilm cultures. In addition to the conventional isoforms, the efflux pump encoded by TERG_04309 presented two intron-retained isoforms. Biofilms trigger the simultaneous production of at least two isoforms. The intron-retained isoforms showed short lengths and topologically different organization. Furthermore, we identified the putative interaction of efflux pumps (TERG_04309 and TERG_04224). Co-expression of these genes suggests a synergistic action in antifungal resistance. Our data provide new insights into drug tolerance related to differential isoform usage and the co-expression of stress-responsive genes, which may lead to higher antifungal resistance, mainly in biofilms. MDPI 2022-08-20 /pmc/articles/PMC9410333/ /pubmed/36012866 http://dx.doi.org/10.3390/jof8080878 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
Lopes, Marcos E. R.
Bitencourt, Tamires A.
Sanches, Pablo R.
Martins, Maíra P.
Oliveira, Vanderci M.
Rossi, Antonio
Martinez-Rossi, Nilce M.
Alternative Splicing in Trichophyton rubrum Occurs in Efflux Pump Transcripts in Response to Antifungal Drugs
title Alternative Splicing in Trichophyton rubrum Occurs in Efflux Pump Transcripts in Response to Antifungal Drugs
title_full Alternative Splicing in Trichophyton rubrum Occurs in Efflux Pump Transcripts in Response to Antifungal Drugs
title_fullStr Alternative Splicing in Trichophyton rubrum Occurs in Efflux Pump Transcripts in Response to Antifungal Drugs
title_full_unstemmed Alternative Splicing in Trichophyton rubrum Occurs in Efflux Pump Transcripts in Response to Antifungal Drugs
title_short Alternative Splicing in Trichophyton rubrum Occurs in Efflux Pump Transcripts in Response to Antifungal Drugs
title_sort alternative splicing in trichophyton rubrum occurs in efflux pump transcripts in response to antifungal drugs
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9410333/
https://www.ncbi.nlm.nih.gov/pubmed/36012866
http://dx.doi.org/10.3390/jof8080878
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