4.4 Article

Activation of the heat shock transcription factor Hsf1 is essential for the full virulence of the fungal pathogen Candida albicans

期刊

FUNGAL GENETICS AND BIOLOGY
卷 48, 期 3, 页码 297-305

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.fgb.2010.08.010

关键词

Candida albicans; Heat shock; Hsf1; Transcriptional activation; Phosphorylation; Pathogenesis

资金

  1. UK Biotechnology and Biological Research Council [BB/D009308/1]
  2. BBSRC [BB/F00513X/1]
  3. Wellcome Trust [080088, 089930]
  4. European Commission [PITN-GA-2008-214004, ERC-2009-AdG-249793]
  5. National Centre for the Replacement, Refinement and Reduction of Animals in Research (NC3Rs)
  6. BBSRC [BB/F000111/1, BB/F00513X/1, BB/D009308/1] Funding Source: UKRI
  7. Biotechnology and Biological Sciences Research Council [BB/D009308/1, BB/F00513X/1, BB/F000111/1] Funding Source: researchfish

向作者/读者索取更多资源

The evolutionarily conserved heat shock transcription factor Hsf1 plays a central role in thermal adaptation in the major fungal pathogen of humans, Candida albicans. Hsf1 becomes hyperphosphorylated in response to heat shock and activates the transcription of genes with heat shock elements (HSEs) in their promoters, these genes contributing to thermal adaptation. However, the relevance of Hsf1 activation to C. albicans virulence is not clear as this pathogen is thought to be obligately associated with warm blooded animals, and this issue has not been tested because HSF1 is essential for viability in C. albicans. In this study, we demonstrate that the HSE regulon is active in C. albicans cells infecting the kidney. We also show the CE2 region of Hsf1 is required for activation and that the phosphorylation of specific residues in this domain contributes to Hsf1 activation. C. albicans HSF1 mutants that lack this CE2 region are viable. However, they are unable to activate HSE-containing genes in response to heat shock, and they are thermosensitive. Using this HSF1 CE2 deletion mutant we demonstrate that Hsf1 activation, and hence thermal adaptation, contributes significantly to the virulence of C albicans. (C) 2010 Elsevier Inc. All rights reserved.

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