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Overexpression of TUF1 restores respiratory growth and fluconazole sensitivity to a Cryptococcus neoformans vad1Δ mutant

The yeast-like fungus Cryptococcus neoformans favours respiration as a mechanism of energy production, and thus depends heavily on mitochondrial function. Previous studies of a C. neoformans vad1Δ mutant revealed reduced expression of the mitochondrial elongation factor TUF1 and defects in glycerol...

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Autores principales: Panepinto, John C., Misener, Amanda L., Oliver, Brian G., Hu, Guowu, Park, Yoon Dong, Shin, Soowan, White, Theodore C., Williamson, Peter R.
Formato: Texto
Lenguaje:English
Publicado: Microbiology Society 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3068674/
https://www.ncbi.nlm.nih.gov/pubmed/20430817
http://dx.doi.org/10.1099/mic.0.035923-0
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author Panepinto, John C.
Misener, Amanda L.
Oliver, Brian G.
Hu, Guowu
Park, Yoon Dong
Shin, Soowan
White, Theodore C.
Williamson, Peter R.
author_facet Panepinto, John C.
Misener, Amanda L.
Oliver, Brian G.
Hu, Guowu
Park, Yoon Dong
Shin, Soowan
White, Theodore C.
Williamson, Peter R.
author_sort Panepinto, John C.
collection PubMed
description The yeast-like fungus Cryptococcus neoformans favours respiration as a mechanism of energy production, and thus depends heavily on mitochondrial function. Previous studies of a C. neoformans vad1Δ mutant revealed reduced expression of the mitochondrial elongation factor TUF1 and defects in glycerol utilization, consistent with mitochondrial dysfunction. In this study, we found that in trans expression of TUF1 in the vad1Δ mutant suppressed the mitochondrial defects, including growth on respiration-dependent carbon sources and fluconazole resistance, associated with VAD1 deletion. Tetracycline, an inhibitor of mitochondrial translation, was found to confer resistance to fluconazole in the wild-type and vad1Δ mutant, whereas the fluconazole susceptibility of the TUF1-overexpressing strain was unaffected by tetracycline treatment. In the presence of fluconazole, the vad1Δ mutant exhibited increased activation of the global transcriptional regulator Sre1. TUF1 overexpression failed to alter cleavage of Sre1 in response to fluconazole in the vad1Δ mutant, suggesting that TUF1 repression in the vad1Δ mutant is distal to Sre1, or that it occurs through an independent pathway.
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spelling pubmed-30686742011-08-01 Overexpression of TUF1 restores respiratory growth and fluconazole sensitivity to a Cryptococcus neoformans vad1Δ mutant Panepinto, John C. Misener, Amanda L. Oliver, Brian G. Hu, Guowu Park, Yoon Dong Shin, Soowan White, Theodore C. Williamson, Peter R. Microbiology (Reading) Physiology and Biochemistry The yeast-like fungus Cryptococcus neoformans favours respiration as a mechanism of energy production, and thus depends heavily on mitochondrial function. Previous studies of a C. neoformans vad1Δ mutant revealed reduced expression of the mitochondrial elongation factor TUF1 and defects in glycerol utilization, consistent with mitochondrial dysfunction. In this study, we found that in trans expression of TUF1 in the vad1Δ mutant suppressed the mitochondrial defects, including growth on respiration-dependent carbon sources and fluconazole resistance, associated with VAD1 deletion. Tetracycline, an inhibitor of mitochondrial translation, was found to confer resistance to fluconazole in the wild-type and vad1Δ mutant, whereas the fluconazole susceptibility of the TUF1-overexpressing strain was unaffected by tetracycline treatment. In the presence of fluconazole, the vad1Δ mutant exhibited increased activation of the global transcriptional regulator Sre1. TUF1 overexpression failed to alter cleavage of Sre1 in response to fluconazole in the vad1Δ mutant, suggesting that TUF1 repression in the vad1Δ mutant is distal to Sre1, or that it occurs through an independent pathway. Microbiology Society 2010-08 /pmc/articles/PMC3068674/ /pubmed/20430817 http://dx.doi.org/10.1099/mic.0.035923-0 Text en Copyright © 2010, SGM
spellingShingle Physiology and Biochemistry
Panepinto, John C.
Misener, Amanda L.
Oliver, Brian G.
Hu, Guowu
Park, Yoon Dong
Shin, Soowan
White, Theodore C.
Williamson, Peter R.
Overexpression of TUF1 restores respiratory growth and fluconazole sensitivity to a Cryptococcus neoformans vad1Δ mutant
title Overexpression of TUF1 restores respiratory growth and fluconazole sensitivity to a Cryptococcus neoformans vad1Δ mutant
title_full Overexpression of TUF1 restores respiratory growth and fluconazole sensitivity to a Cryptococcus neoformans vad1Δ mutant
title_fullStr Overexpression of TUF1 restores respiratory growth and fluconazole sensitivity to a Cryptococcus neoformans vad1Δ mutant
title_full_unstemmed Overexpression of TUF1 restores respiratory growth and fluconazole sensitivity to a Cryptococcus neoformans vad1Δ mutant
title_short Overexpression of TUF1 restores respiratory growth and fluconazole sensitivity to a Cryptococcus neoformans vad1Δ mutant
title_sort overexpression of tuf1 restores respiratory growth and fluconazole sensitivity to a cryptococcus neoformans vad1δ mutant
topic Physiology and Biochemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3068674/
https://www.ncbi.nlm.nih.gov/pubmed/20430817
http://dx.doi.org/10.1099/mic.0.035923-0
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