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Yeast Double Transporter Gene Deletion Library for Identification of Xenobiotic Carriers in Low or High Throughput

The routes of uptake and efflux should be considered when developing new drugs so that they can effectively address their intracellular targets. As a general rule, drugs appear to enter cells via protein carriers that normally carry nutrients or metabolites. A previously developed pipeline that sear...

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Autores principales: Almeida, Ludimila Dias, Silva, Ali Salim Faraj, Mota, Daniel Calixto, Vasconcelos, Adrielle Ayumi, Camargo, Antônio Pedro, Pires, Gabriel Silva, Furlan, Monique, Freire, Helena Martins Ribeiro da Cunha, Klippel, Angélica Hollunder, Silva, Suélen Fernandes, Zanelli, Cleslei Fernando, Carazzolle, Marcelo Falsarella, Oliver, Stephen G., Bilsland, Elizabeth
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8669479/
https://www.ncbi.nlm.nih.gov/pubmed/34903049
http://dx.doi.org/10.1128/mbio.03221-21
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author Almeida, Ludimila Dias
Silva, Ali Salim Faraj
Mota, Daniel Calixto
Vasconcelos, Adrielle Ayumi
Camargo, Antônio Pedro
Pires, Gabriel Silva
Furlan, Monique
Freire, Helena Martins Ribeiro da Cunha
Klippel, Angélica Hollunder
Silva, Suélen Fernandes
Zanelli, Cleslei Fernando
Carazzolle, Marcelo Falsarella
Oliver, Stephen G.
Bilsland, Elizabeth
author_facet Almeida, Ludimila Dias
Silva, Ali Salim Faraj
Mota, Daniel Calixto
Vasconcelos, Adrielle Ayumi
Camargo, Antônio Pedro
Pires, Gabriel Silva
Furlan, Monique
Freire, Helena Martins Ribeiro da Cunha
Klippel, Angélica Hollunder
Silva, Suélen Fernandes
Zanelli, Cleslei Fernando
Carazzolle, Marcelo Falsarella
Oliver, Stephen G.
Bilsland, Elizabeth
author_sort Almeida, Ludimila Dias
collection PubMed
description The routes of uptake and efflux should be considered when developing new drugs so that they can effectively address their intracellular targets. As a general rule, drugs appear to enter cells via protein carriers that normally carry nutrients or metabolites. A previously developed pipeline that searched for drug transporters using Saccharomyces cerevisiae mutants carrying single-gene deletions identified import routes for most compounds tested. However, due to the redundancy of transporter functions, we propose that this methodology can be improved by utilizing double mutant strains in both low- and high-throughput screens. We constructed a library of over 14,000 strains harboring double deletions of genes encoding 122 nonessential plasma membrane transporters and performed low- and high-throughput screens identifying possible drug import routes for 23 compounds. In addition, the high-throughput assay enabled the identification of putative efflux routes for 21 compounds. Focusing on azole antifungals, we were able to identify the involvement of the myo-inositol transporter, Itr1p, in the uptake of these molecules and to confirm the role of Pdr5p in their export.
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spelling pubmed-86694792021-12-16 Yeast Double Transporter Gene Deletion Library for Identification of Xenobiotic Carriers in Low or High Throughput Almeida, Ludimila Dias Silva, Ali Salim Faraj Mota, Daniel Calixto Vasconcelos, Adrielle Ayumi Camargo, Antônio Pedro Pires, Gabriel Silva Furlan, Monique Freire, Helena Martins Ribeiro da Cunha Klippel, Angélica Hollunder Silva, Suélen Fernandes Zanelli, Cleslei Fernando Carazzolle, Marcelo Falsarella Oliver, Stephen G. Bilsland, Elizabeth mBio Research Article The routes of uptake and efflux should be considered when developing new drugs so that they can effectively address their intracellular targets. As a general rule, drugs appear to enter cells via protein carriers that normally carry nutrients or metabolites. A previously developed pipeline that searched for drug transporters using Saccharomyces cerevisiae mutants carrying single-gene deletions identified import routes for most compounds tested. However, due to the redundancy of transporter functions, we propose that this methodology can be improved by utilizing double mutant strains in both low- and high-throughput screens. We constructed a library of over 14,000 strains harboring double deletions of genes encoding 122 nonessential plasma membrane transporters and performed low- and high-throughput screens identifying possible drug import routes for 23 compounds. In addition, the high-throughput assay enabled the identification of putative efflux routes for 21 compounds. Focusing on azole antifungals, we were able to identify the involvement of the myo-inositol transporter, Itr1p, in the uptake of these molecules and to confirm the role of Pdr5p in their export. American Society for Microbiology 2021-12-14 /pmc/articles/PMC8669479/ /pubmed/34903049 http://dx.doi.org/10.1128/mbio.03221-21 Text en Copyright © 2021 Almeida et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Almeida, Ludimila Dias
Silva, Ali Salim Faraj
Mota, Daniel Calixto
Vasconcelos, Adrielle Ayumi
Camargo, Antônio Pedro
Pires, Gabriel Silva
Furlan, Monique
Freire, Helena Martins Ribeiro da Cunha
Klippel, Angélica Hollunder
Silva, Suélen Fernandes
Zanelli, Cleslei Fernando
Carazzolle, Marcelo Falsarella
Oliver, Stephen G.
Bilsland, Elizabeth
Yeast Double Transporter Gene Deletion Library for Identification of Xenobiotic Carriers in Low or High Throughput
title Yeast Double Transporter Gene Deletion Library for Identification of Xenobiotic Carriers in Low or High Throughput
title_full Yeast Double Transporter Gene Deletion Library for Identification of Xenobiotic Carriers in Low or High Throughput
title_fullStr Yeast Double Transporter Gene Deletion Library for Identification of Xenobiotic Carriers in Low or High Throughput
title_full_unstemmed Yeast Double Transporter Gene Deletion Library for Identification of Xenobiotic Carriers in Low or High Throughput
title_short Yeast Double Transporter Gene Deletion Library for Identification of Xenobiotic Carriers in Low or High Throughput
title_sort yeast double transporter gene deletion library for identification of xenobiotic carriers in low or high throughput
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8669479/
https://www.ncbi.nlm.nih.gov/pubmed/34903049
http://dx.doi.org/10.1128/mbio.03221-21
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