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Tuning Hsf1 levels drives distinct fungal morphogenetic programs with depletion impairing Hsp90 function and overexpression expanding the target space

The capacity to respond to temperature fluctuations is critical for microorganisms to survive within mammalian hosts, and temperature modulates virulence traits of diverse pathogens. One key temperature-dependent virulence trait of the fungal pathogen Candida albicans is its ability to transition fr...

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Autores principales: Veri, Amanda O., Miao, Zhengqiang, Shapiro, Rebecca S., Tebbji, Faiza, O’Meara, Teresa R., Kim, Sang Hu, Colazo, Juan, Tan, Kaeling, Vyas, Valmik K., Whiteway, Malcolm, Robbins, Nicole, Wong, Koon Ho, Cowen, Leah E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5873724/
https://www.ncbi.nlm.nih.gov/pubmed/29590106
http://dx.doi.org/10.1371/journal.pgen.1007270
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author Veri, Amanda O.
Miao, Zhengqiang
Shapiro, Rebecca S.
Tebbji, Faiza
O’Meara, Teresa R.
Kim, Sang Hu
Colazo, Juan
Tan, Kaeling
Vyas, Valmik K.
Whiteway, Malcolm
Robbins, Nicole
Wong, Koon Ho
Cowen, Leah E.
author_facet Veri, Amanda O.
Miao, Zhengqiang
Shapiro, Rebecca S.
Tebbji, Faiza
O’Meara, Teresa R.
Kim, Sang Hu
Colazo, Juan
Tan, Kaeling
Vyas, Valmik K.
Whiteway, Malcolm
Robbins, Nicole
Wong, Koon Ho
Cowen, Leah E.
author_sort Veri, Amanda O.
collection PubMed
description The capacity to respond to temperature fluctuations is critical for microorganisms to survive within mammalian hosts, and temperature modulates virulence traits of diverse pathogens. One key temperature-dependent virulence trait of the fungal pathogen Candida albicans is its ability to transition from yeast to filamentous growth, which is induced by environmental cues at host physiological temperature. A key regulator of temperature-dependent morphogenesis is the molecular chaperone Hsp90, which has complex functional relationships with the transcription factor Hsf1. Although Hsf1 controls global transcriptional remodeling in response to heat shock, its impact on morphogenesis remains unknown. Here, we establish an intriguing paradigm whereby overexpression or depletion of C. albicans HSF1 induces morphogenesis in the absence of external cues. HSF1 depletion compromises Hsp90 function, thereby driving filamentation. HSF1 overexpression does not impact Hsp90 function, but rather induces a dose-dependent expansion of Hsf1 direct targets that drives overexpression of positive regulators of filamentation, including Brg1 and Ume6, thereby bypassing the requirement for elevated temperature during morphogenesis. This work provides new insight into Hsf1-mediated environmentally contingent transcriptional control, implicates Hsf1 in regulation of a key virulence trait, and highlights fascinating biology whereby either overexpression or depletion of a single cellular regulator induces a profound developmental transition.
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spelling pubmed-58737242018-04-06 Tuning Hsf1 levels drives distinct fungal morphogenetic programs with depletion impairing Hsp90 function and overexpression expanding the target space Veri, Amanda O. Miao, Zhengqiang Shapiro, Rebecca S. Tebbji, Faiza O’Meara, Teresa R. Kim, Sang Hu Colazo, Juan Tan, Kaeling Vyas, Valmik K. Whiteway, Malcolm Robbins, Nicole Wong, Koon Ho Cowen, Leah E. PLoS Genet Research Article The capacity to respond to temperature fluctuations is critical for microorganisms to survive within mammalian hosts, and temperature modulates virulence traits of diverse pathogens. One key temperature-dependent virulence trait of the fungal pathogen Candida albicans is its ability to transition from yeast to filamentous growth, which is induced by environmental cues at host physiological temperature. A key regulator of temperature-dependent morphogenesis is the molecular chaperone Hsp90, which has complex functional relationships with the transcription factor Hsf1. Although Hsf1 controls global transcriptional remodeling in response to heat shock, its impact on morphogenesis remains unknown. Here, we establish an intriguing paradigm whereby overexpression or depletion of C. albicans HSF1 induces morphogenesis in the absence of external cues. HSF1 depletion compromises Hsp90 function, thereby driving filamentation. HSF1 overexpression does not impact Hsp90 function, but rather induces a dose-dependent expansion of Hsf1 direct targets that drives overexpression of positive regulators of filamentation, including Brg1 and Ume6, thereby bypassing the requirement for elevated temperature during morphogenesis. This work provides new insight into Hsf1-mediated environmentally contingent transcriptional control, implicates Hsf1 in regulation of a key virulence trait, and highlights fascinating biology whereby either overexpression or depletion of a single cellular regulator induces a profound developmental transition. Public Library of Science 2018-03-28 /pmc/articles/PMC5873724/ /pubmed/29590106 http://dx.doi.org/10.1371/journal.pgen.1007270 Text en © 2018 Veri et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Veri, Amanda O.
Miao, Zhengqiang
Shapiro, Rebecca S.
Tebbji, Faiza
O’Meara, Teresa R.
Kim, Sang Hu
Colazo, Juan
Tan, Kaeling
Vyas, Valmik K.
Whiteway, Malcolm
Robbins, Nicole
Wong, Koon Ho
Cowen, Leah E.
Tuning Hsf1 levels drives distinct fungal morphogenetic programs with depletion impairing Hsp90 function and overexpression expanding the target space
title Tuning Hsf1 levels drives distinct fungal morphogenetic programs with depletion impairing Hsp90 function and overexpression expanding the target space
title_full Tuning Hsf1 levels drives distinct fungal morphogenetic programs with depletion impairing Hsp90 function and overexpression expanding the target space
title_fullStr Tuning Hsf1 levels drives distinct fungal morphogenetic programs with depletion impairing Hsp90 function and overexpression expanding the target space
title_full_unstemmed Tuning Hsf1 levels drives distinct fungal morphogenetic programs with depletion impairing Hsp90 function and overexpression expanding the target space
title_short Tuning Hsf1 levels drives distinct fungal morphogenetic programs with depletion impairing Hsp90 function and overexpression expanding the target space
title_sort tuning hsf1 levels drives distinct fungal morphogenetic programs with depletion impairing hsp90 function and overexpression expanding the target space
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5873724/
https://www.ncbi.nlm.nih.gov/pubmed/29590106
http://dx.doi.org/10.1371/journal.pgen.1007270
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