CGD Paper


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Leach MD, Farrer RA, Tan K, Miao Z, Walker LA, Cuomo CA, Wheeler RT, Brown AJ, Wong KH, Cowen LE (2016) Hsf1 and Hsp90 orchestrate temperature-dependent global transcriptional remodelling and chromatin architecture in Candida albicans. Nat Commun 7:11704
Pubmed Entry Web Supplement Data


Abstract:Fever is a universal response to infection, and opportunistic pathogens such as Candida albicans have evolved complex circuitry to sense and respond to heat. Here we harness RNA-seq and ChIP-seq to discover that the heat shock transcription factor, Hsf1, binds distinct motifs in nucleosome-depleted promoter regions to regulate heat shock genes and genes involved in virulence in C. albicans. Consequently, heat shock increases C. albicans host cell adhesion, damage and virulence. Hsf1 activation depends upon the molecular chaperone Hsp90 under basal and heat shock conditions, but the effects are opposite and in part controlled at the level of Hsf1 expression and DNA binding. Finally, we demonstrate that Hsp90 regulates global transcription programs by modulating nucleosome levels at promoters of stress-responsive genes. Thus, we describe a mechanism by which C. albicans responds to temperature via Hsf1 and Hsp90 to orchestrate gene expression and chromatin architecture, thereby enabling thermal adaptation and virulence.
Status: Published Type: Journal Article PubMed ID: 27226156


Topics addressed in this paper
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Topics
Genes linked to topics
ALS1
(C. albicans)
ALS3
(C. albicans)
CTA8
(C. albicans)
HSP90
(C. albicans)
ROB1
(C. albicans)
Candida albicans
Function/Process



Genomic co-immunoprecipitation study



Genomic expression study



Mutants/Phenotypes
Protein-Nucleic Acid Interactions



Regulatory Role


Strains/Constructs
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