author_facet Papon, Nicolas
Noël, Thierry
Florent, Martine
Gibot-Leclerc, Stéphanie
Jean, Dorothée
Chastin, Christiane
Villard, Jean
Chapeland-Leclerc, Florence
Papon, Nicolas
Noël, Thierry
Florent, Martine
Gibot-Leclerc, Stéphanie
Jean, Dorothée
Chastin, Christiane
Villard, Jean
Chapeland-Leclerc, Florence
author Papon, Nicolas
Noël, Thierry
Florent, Martine
Gibot-Leclerc, Stéphanie
Jean, Dorothée
Chastin, Christiane
Villard, Jean
Chapeland-Leclerc, Florence
spellingShingle Papon, Nicolas
Noël, Thierry
Florent, Martine
Gibot-Leclerc, Stéphanie
Jean, Dorothée
Chastin, Christiane
Villard, Jean
Chapeland-Leclerc, Florence
Antimicrobial Agents and Chemotherapy
Molecular Mechanism of Flucytosine Resistance in Candida lusitaniae : Contribution of the FCY2 , FCY1 , and FUR1 Genes to 5-Fluorouracil and Fluconazole Cross-Resistance
Infectious Diseases
Pharmacology (medical)
Pharmacology
author_sort papon, nicolas
spelling Papon, Nicolas Noël, Thierry Florent, Martine Gibot-Leclerc, Stéphanie Jean, Dorothée Chastin, Christiane Villard, Jean Chapeland-Leclerc, Florence 0066-4804 1098-6596 American Society for Microbiology Infectious Diseases Pharmacology (medical) Pharmacology http://dx.doi.org/10.1128/aac.00824-06 <jats:title>ABSTRACT</jats:title> <jats:p> Inactivation of the <jats:italic>FCY2</jats:italic> (cytosine permease), <jats:italic>FCY1</jats:italic> (cytosine deaminase), and <jats:italic>FUR1</jats:italic> (uracil phosphoribosyltransferase) genes in <jats:italic>Candida lusitaniae</jats:italic> produced two patterns of resistance to flucytosine. Mutant <jats:italic>fur1</jats:italic> demonstrated resistance to 5-fluorouracil, whereas mutants <jats:italic>fcy1</jats:italic> and <jats:italic>fcy2</jats:italic> demonstrated fluconazole resistance in the presence of subinhibitory flucytosine concentrations. </jats:p> Molecular Mechanism of Flucytosine Resistance in <i>Candida lusitaniae</i> : Contribution of the <i>FCY2</i> , <i>FCY1</i> , and <i>FUR1</i> Genes to 5-Fluorouracil and Fluconazole Cross-Resistance Antimicrobial Agents and Chemotherapy
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title Molecular Mechanism of Flucytosine Resistance in Candida lusitaniae : Contribution of the FCY2 , FCY1 , and FUR1 Genes to 5-Fluorouracil and Fluconazole Cross-Resistance
title_unstemmed Molecular Mechanism of Flucytosine Resistance in Candida lusitaniae : Contribution of the FCY2 , FCY1 , and FUR1 Genes to 5-Fluorouracil and Fluconazole Cross-Resistance
title_full Molecular Mechanism of Flucytosine Resistance in Candida lusitaniae : Contribution of the FCY2 , FCY1 , and FUR1 Genes to 5-Fluorouracil and Fluconazole Cross-Resistance
title_fullStr Molecular Mechanism of Flucytosine Resistance in Candida lusitaniae : Contribution of the FCY2 , FCY1 , and FUR1 Genes to 5-Fluorouracil and Fluconazole Cross-Resistance
title_full_unstemmed Molecular Mechanism of Flucytosine Resistance in Candida lusitaniae : Contribution of the FCY2 , FCY1 , and FUR1 Genes to 5-Fluorouracil and Fluconazole Cross-Resistance
title_short Molecular Mechanism of Flucytosine Resistance in Candida lusitaniae : Contribution of the FCY2 , FCY1 , and FUR1 Genes to 5-Fluorouracil and Fluconazole Cross-Resistance
title_sort molecular mechanism of flucytosine resistance in <i>candida lusitaniae</i> : contribution of the <i>fcy2</i> , <i>fcy1</i> , and <i>fur1</i> genes to 5-fluorouracil and fluconazole cross-resistance
topic Infectious Diseases
Pharmacology (medical)
Pharmacology
url http://dx.doi.org/10.1128/aac.00824-06
publishDate 2007
physical 369-371
description <jats:title>ABSTRACT</jats:title> <jats:p> Inactivation of the <jats:italic>FCY2</jats:italic> (cytosine permease), <jats:italic>FCY1</jats:italic> (cytosine deaminase), and <jats:italic>FUR1</jats:italic> (uracil phosphoribosyltransferase) genes in <jats:italic>Candida lusitaniae</jats:italic> produced two patterns of resistance to flucytosine. Mutant <jats:italic>fur1</jats:italic> demonstrated resistance to 5-fluorouracil, whereas mutants <jats:italic>fcy1</jats:italic> and <jats:italic>fcy2</jats:italic> demonstrated fluconazole resistance in the presence of subinhibitory flucytosine concentrations. </jats:p>
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author Papon, Nicolas, Noël, Thierry, Florent, Martine, Gibot-Leclerc, Stéphanie, Jean, Dorothée, Chastin, Christiane, Villard, Jean, Chapeland-Leclerc, Florence
author_facet Papon, Nicolas, Noël, Thierry, Florent, Martine, Gibot-Leclerc, Stéphanie, Jean, Dorothée, Chastin, Christiane, Villard, Jean, Chapeland-Leclerc, Florence, Papon, Nicolas, Noël, Thierry, Florent, Martine, Gibot-Leclerc, Stéphanie, Jean, Dorothée, Chastin, Christiane, Villard, Jean, Chapeland-Leclerc, Florence
author_sort papon, nicolas
container_issue 1
container_start_page 369
container_title Antimicrobial Agents and Chemotherapy
container_volume 51
description <jats:title>ABSTRACT</jats:title> <jats:p> Inactivation of the <jats:italic>FCY2</jats:italic> (cytosine permease), <jats:italic>FCY1</jats:italic> (cytosine deaminase), and <jats:italic>FUR1</jats:italic> (uracil phosphoribosyltransferase) genes in <jats:italic>Candida lusitaniae</jats:italic> produced two patterns of resistance to flucytosine. Mutant <jats:italic>fur1</jats:italic> demonstrated resistance to 5-fluorouracil, whereas mutants <jats:italic>fcy1</jats:italic> and <jats:italic>fcy2</jats:italic> demonstrated fluconazole resistance in the presence of subinhibitory flucytosine concentrations. </jats:p>
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spelling Papon, Nicolas Noël, Thierry Florent, Martine Gibot-Leclerc, Stéphanie Jean, Dorothée Chastin, Christiane Villard, Jean Chapeland-Leclerc, Florence 0066-4804 1098-6596 American Society for Microbiology Infectious Diseases Pharmacology (medical) Pharmacology http://dx.doi.org/10.1128/aac.00824-06 <jats:title>ABSTRACT</jats:title> <jats:p> Inactivation of the <jats:italic>FCY2</jats:italic> (cytosine permease), <jats:italic>FCY1</jats:italic> (cytosine deaminase), and <jats:italic>FUR1</jats:italic> (uracil phosphoribosyltransferase) genes in <jats:italic>Candida lusitaniae</jats:italic> produced two patterns of resistance to flucytosine. Mutant <jats:italic>fur1</jats:italic> demonstrated resistance to 5-fluorouracil, whereas mutants <jats:italic>fcy1</jats:italic> and <jats:italic>fcy2</jats:italic> demonstrated fluconazole resistance in the presence of subinhibitory flucytosine concentrations. </jats:p> Molecular Mechanism of Flucytosine Resistance in <i>Candida lusitaniae</i> : Contribution of the <i>FCY2</i> , <i>FCY1</i> , and <i>FUR1</i> Genes to 5-Fluorouracil and Fluconazole Cross-Resistance Antimicrobial Agents and Chemotherapy
spellingShingle Papon, Nicolas, Noël, Thierry, Florent, Martine, Gibot-Leclerc, Stéphanie, Jean, Dorothée, Chastin, Christiane, Villard, Jean, Chapeland-Leclerc, Florence, Antimicrobial Agents and Chemotherapy, Molecular Mechanism of Flucytosine Resistance in Candida lusitaniae : Contribution of the FCY2 , FCY1 , and FUR1 Genes to 5-Fluorouracil and Fluconazole Cross-Resistance, Infectious Diseases, Pharmacology (medical), Pharmacology
title Molecular Mechanism of Flucytosine Resistance in Candida lusitaniae : Contribution of the FCY2 , FCY1 , and FUR1 Genes to 5-Fluorouracil and Fluconazole Cross-Resistance
title_full Molecular Mechanism of Flucytosine Resistance in Candida lusitaniae : Contribution of the FCY2 , FCY1 , and FUR1 Genes to 5-Fluorouracil and Fluconazole Cross-Resistance
title_fullStr Molecular Mechanism of Flucytosine Resistance in Candida lusitaniae : Contribution of the FCY2 , FCY1 , and FUR1 Genes to 5-Fluorouracil and Fluconazole Cross-Resistance
title_full_unstemmed Molecular Mechanism of Flucytosine Resistance in Candida lusitaniae : Contribution of the FCY2 , FCY1 , and FUR1 Genes to 5-Fluorouracil and Fluconazole Cross-Resistance
title_short Molecular Mechanism of Flucytosine Resistance in Candida lusitaniae : Contribution of the FCY2 , FCY1 , and FUR1 Genes to 5-Fluorouracil and Fluconazole Cross-Resistance
title_sort molecular mechanism of flucytosine resistance in <i>candida lusitaniae</i> : contribution of the <i>fcy2</i> , <i>fcy1</i> , and <i>fur1</i> genes to 5-fluorouracil and fluconazole cross-resistance
title_unstemmed Molecular Mechanism of Flucytosine Resistance in Candida lusitaniae : Contribution of the FCY2 , FCY1 , and FUR1 Genes to 5-Fluorouracil and Fluconazole Cross-Resistance
topic Infectious Diseases, Pharmacology (medical), Pharmacology
url http://dx.doi.org/10.1128/aac.00824-06