International audienceFlavohemoglobins are the main detoxifiers of nitric oxide (NO) in bacteria and fungi and are induced in response to nitrosative stress. In fungi, the flavohemoglobin encoding gene YHB1 is positively regulated by transcription factors which are activated upon NO exposure. In this study, we show that in the model yeast Saccharomyces cerevisiae and in the human pathogen Candida glabrata, the transcription factor Yap7 constitutively represses YHB1 by binding its promoter. Consequently, YAP7 deletion conferred high NO resistance to the cells. Co-immunoprecipitation experiments and mutant analyses indicated that Yap7 represses YHB1 by recruiting the transcriptional repressor Tup1. In S. cerevisiae, YHB1 repression also invol...
International audienceA few yeasts, including Hansenula polymorpha are able to assimilate nitrate an...
AbstractThe human fungal pathogen Candida glabrata is related to Saccharomyces cerevisiae but has de...
A few yeasts, includingHansenula polymorpha are able to assimilate nitrate and use it as nitrogen so...
International audienceFlavohemoglobins are the main detoxifiers of nitric oxide (NO) in bacteria and...
International audienceThe yeast Candida glabrata has become the second cause of systemic candidemia ...
Yeast adaptation to stress has been extensively studied. It involves large reprogramming of genome e...
The ability of Candida albicans to survive in the presence of nitrosative stress during the initial ...
<div><p>The ability of <em>Candida albicans</em> to survive in the presence of nitrosative stress du...
The opportunistic human fungal pathogen Candida albicans encounters diverse environmental stresseswh...
The ability of Candida albicans to survive in the presence of nitrosative stress during the initial ...
International audienceThe CCAAT-binding complex (CBC) is a heterotrimeric transcription factor which...
ABSTRACT AP-1-like transcription factors play evolutionarily conserved roles as redox sensors in euk...
I have identified regulatory elements in the pathogen Candida albicans that enable response to nitro...
International audienceThe CCAAT-binding complex (CBC) is a conserved heterotrimeric transcription fa...
Candida albicans is a human‐resident opportunistic fungal pathogen. Persistence of C. albicans is la...
International audienceA few yeasts, including Hansenula polymorpha are able to assimilate nitrate an...
AbstractThe human fungal pathogen Candida glabrata is related to Saccharomyces cerevisiae but has de...
A few yeasts, includingHansenula polymorpha are able to assimilate nitrate and use it as nitrogen so...
International audienceFlavohemoglobins are the main detoxifiers of nitric oxide (NO) in bacteria and...
International audienceThe yeast Candida glabrata has become the second cause of systemic candidemia ...
Yeast adaptation to stress has been extensively studied. It involves large reprogramming of genome e...
The ability of Candida albicans to survive in the presence of nitrosative stress during the initial ...
<div><p>The ability of <em>Candida albicans</em> to survive in the presence of nitrosative stress du...
The opportunistic human fungal pathogen Candida albicans encounters diverse environmental stresseswh...
The ability of Candida albicans to survive in the presence of nitrosative stress during the initial ...
International audienceThe CCAAT-binding complex (CBC) is a heterotrimeric transcription factor which...
ABSTRACT AP-1-like transcription factors play evolutionarily conserved roles as redox sensors in euk...
I have identified regulatory elements in the pathogen Candida albicans that enable response to nitro...
International audienceThe CCAAT-binding complex (CBC) is a conserved heterotrimeric transcription fa...
Candida albicans is a human‐resident opportunistic fungal pathogen. Persistence of C. albicans is la...
International audienceA few yeasts, including Hansenula polymorpha are able to assimilate nitrate an...
AbstractThe human fungal pathogen Candida glabrata is related to Saccharomyces cerevisiae but has de...
A few yeasts, includingHansenula polymorpha are able to assimilate nitrate and use it as nitrogen so...