Structural basis for species-selective targeting of Hsp90 in a pathogenic fungus

The chaperone Hsp90 is a potential target for the development of drugs against fungal pathogens. Here the authors determine the structure of the Hsp90 nucleotide-binding domain from Candida albicans, which they use to design an inhibitor and demonstrate its selectivity for the fungal enzyme, both bi...

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Autores principales: Luke Whitesell, Nicole Robbins, David S. Huang, Catherine A. McLellan, Tanvi Shekhar-Guturja, Emmanuelle V. LeBlanc, Catherine S. Nation, Raymond Hui, Ashley Hutchinson, Cathy Collins, Sharanya Chatterjee, Richard Trilles, Jinglin L. Xie, Damian J. Krysan, Susan Lindquist, John A. Porco, Utpal Tatu, Lauren E. Brown, Juan Pizarro, Leah E. Cowen
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Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/c204109fbee74209af84981ef754b8a6
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spelling oai:doaj.org-article:c204109fbee74209af84981ef754b8a62021-12-02T15:36:03ZStructural basis for species-selective targeting of Hsp90 in a pathogenic fungus10.1038/s41467-018-08248-w2041-1723https://doaj.org/article/c204109fbee74209af84981ef754b8a62019-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-08248-whttps://doaj.org/toc/2041-1723The chaperone Hsp90 is a potential target for the development of drugs against fungal pathogens. Here the authors determine the structure of the Hsp90 nucleotide-binding domain from Candida albicans, which they use to design an inhibitor and demonstrate its selectivity for the fungal enzyme, both biochemically and in cells.Luke WhitesellNicole RobbinsDavid S. HuangCatherine A. McLellanTanvi Shekhar-GuturjaEmmanuelle V. LeBlancCatherine S. NationRaymond HuiAshley HutchinsonCathy CollinsSharanya ChatterjeeRichard TrillesJinglin L. XieDamian J. KrysanSusan LindquistJohn A. PorcoUtpal TatuLauren E. BrownJuan PizarroLeah E. CowenNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-17 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Luke Whitesell
Nicole Robbins
David S. Huang
Catherine A. McLellan
Tanvi Shekhar-Guturja
Emmanuelle V. LeBlanc
Catherine S. Nation
Raymond Hui
Ashley Hutchinson
Cathy Collins
Sharanya Chatterjee
Richard Trilles
Jinglin L. Xie
Damian J. Krysan
Susan Lindquist
John A. Porco
Utpal Tatu
Lauren E. Brown
Juan Pizarro
Leah E. Cowen
Structural basis for species-selective targeting of Hsp90 in a pathogenic fungus
description The chaperone Hsp90 is a potential target for the development of drugs against fungal pathogens. Here the authors determine the structure of the Hsp90 nucleotide-binding domain from Candida albicans, which they use to design an inhibitor and demonstrate its selectivity for the fungal enzyme, both biochemically and in cells.
format article
author Luke Whitesell
Nicole Robbins
David S. Huang
Catherine A. McLellan
Tanvi Shekhar-Guturja
Emmanuelle V. LeBlanc
Catherine S. Nation
Raymond Hui
Ashley Hutchinson
Cathy Collins
Sharanya Chatterjee
Richard Trilles
Jinglin L. Xie
Damian J. Krysan
Susan Lindquist
John A. Porco
Utpal Tatu
Lauren E. Brown
Juan Pizarro
Leah E. Cowen
author_facet Luke Whitesell
Nicole Robbins
David S. Huang
Catherine A. McLellan
Tanvi Shekhar-Guturja
Emmanuelle V. LeBlanc
Catherine S. Nation
Raymond Hui
Ashley Hutchinson
Cathy Collins
Sharanya Chatterjee
Richard Trilles
Jinglin L. Xie
Damian J. Krysan
Susan Lindquist
John A. Porco
Utpal Tatu
Lauren E. Brown
Juan Pizarro
Leah E. Cowen
author_sort Luke Whitesell
title Structural basis for species-selective targeting of Hsp90 in a pathogenic fungus
title_short Structural basis for species-selective targeting of Hsp90 in a pathogenic fungus
title_full Structural basis for species-selective targeting of Hsp90 in a pathogenic fungus
title_fullStr Structural basis for species-selective targeting of Hsp90 in a pathogenic fungus
title_full_unstemmed Structural basis for species-selective targeting of Hsp90 in a pathogenic fungus
title_sort structural basis for species-selective targeting of hsp90 in a pathogenic fungus
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/c204109fbee74209af84981ef754b8a6
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