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Activation of HIF-1α and LL-37 by commensal bacteria inhibits Candida albicans colonization

Candida albicans colonization is required for invasive disease(1-3). Unlike humans, adult mice with mature intact gut microbiota are resistant to C. albicans gastrointestinal (GI) colonization(2,4). But the factors that promote C. albicans colonization resistance are unknown. Here we demonstrate tha...

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Autores principales: Fan, Di, Coughlin, Laura A., Neubauer, Megan M., Kim, Jiwoong, Kim, Minsoo, Zhan, Xiaowei, Simms-Waldrip, Tiffany R., Xie, Yang, Hooper, Lora V., Koh, Andrew Y.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4496259/
https://www.ncbi.nlm.nih.gov/pubmed/26053625
http://dx.doi.org/10.1038/nm.3871
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author Fan, Di
Coughlin, Laura A.
Neubauer, Megan M.
Kim, Jiwoong
Kim, Minsoo
Zhan, Xiaowei
Simms-Waldrip, Tiffany R.
Xie, Yang
Hooper, Lora V.
Koh, Andrew Y.
author_facet Fan, Di
Coughlin, Laura A.
Neubauer, Megan M.
Kim, Jiwoong
Kim, Minsoo
Zhan, Xiaowei
Simms-Waldrip, Tiffany R.
Xie, Yang
Hooper, Lora V.
Koh, Andrew Y.
author_sort Fan, Di
collection PubMed
description Candida albicans colonization is required for invasive disease(1-3). Unlike humans, adult mice with mature intact gut microbiota are resistant to C. albicans gastrointestinal (GI) colonization(2,4). But the factors that promote C. albicans colonization resistance are unknown. Here we demonstrate that commensal anaerobic bacteria – specifically Clostridial Firmicutes (Clusters IV and XIVa) and Bacteroidetes – are critical for maintaining C. albicans colonization resistance in mice. Using Bacteroides thetaiotamicron as a model organism, we find that HIF-1α, a transcription factor important for activating innate immune effectors, and the antimicrobial peptide LL37-CRAMP are key determinants of C. albicans colonization resistance. While antibiotic treatment enables C. albicans colonization, pharmacologic activation of colonic Hif1a induces CRAMP expression and results in a significant reduction of C. albicans GI colonization and a 50% decrease in mortality from invasive disease. In the setting of antibiotics, Hif1a and Cramp are required for B. thetaiotamicron-induced protection against CA colonization of the gut. Thus, C. albicans GI colonization modulation by activation of gut mucosal immune effectors may represent a novel therapeutic approach for preventing invasive fungal disease in humans.
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spelling pubmed-44962592016-01-01 Activation of HIF-1α and LL-37 by commensal bacteria inhibits Candida albicans colonization Fan, Di Coughlin, Laura A. Neubauer, Megan M. Kim, Jiwoong Kim, Minsoo Zhan, Xiaowei Simms-Waldrip, Tiffany R. Xie, Yang Hooper, Lora V. Koh, Andrew Y. Nat Med Article Candida albicans colonization is required for invasive disease(1-3). Unlike humans, adult mice with mature intact gut microbiota are resistant to C. albicans gastrointestinal (GI) colonization(2,4). But the factors that promote C. albicans colonization resistance are unknown. Here we demonstrate that commensal anaerobic bacteria – specifically Clostridial Firmicutes (Clusters IV and XIVa) and Bacteroidetes – are critical for maintaining C. albicans colonization resistance in mice. Using Bacteroides thetaiotamicron as a model organism, we find that HIF-1α, a transcription factor important for activating innate immune effectors, and the antimicrobial peptide LL37-CRAMP are key determinants of C. albicans colonization resistance. While antibiotic treatment enables C. albicans colonization, pharmacologic activation of colonic Hif1a induces CRAMP expression and results in a significant reduction of C. albicans GI colonization and a 50% decrease in mortality from invasive disease. In the setting of antibiotics, Hif1a and Cramp are required for B. thetaiotamicron-induced protection against CA colonization of the gut. Thus, C. albicans GI colonization modulation by activation of gut mucosal immune effectors may represent a novel therapeutic approach for preventing invasive fungal disease in humans. 2015-06-08 2015-07 /pmc/articles/PMC4496259/ /pubmed/26053625 http://dx.doi.org/10.1038/nm.3871 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Fan, Di
Coughlin, Laura A.
Neubauer, Megan M.
Kim, Jiwoong
Kim, Minsoo
Zhan, Xiaowei
Simms-Waldrip, Tiffany R.
Xie, Yang
Hooper, Lora V.
Koh, Andrew Y.
Activation of HIF-1α and LL-37 by commensal bacteria inhibits Candida albicans colonization
title Activation of HIF-1α and LL-37 by commensal bacteria inhibits Candida albicans colonization
title_full Activation of HIF-1α and LL-37 by commensal bacteria inhibits Candida albicans colonization
title_fullStr Activation of HIF-1α and LL-37 by commensal bacteria inhibits Candida albicans colonization
title_full_unstemmed Activation of HIF-1α and LL-37 by commensal bacteria inhibits Candida albicans colonization
title_short Activation of HIF-1α and LL-37 by commensal bacteria inhibits Candida albicans colonization
title_sort activation of hif-1α and ll-37 by commensal bacteria inhibits candida albicans colonization
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4496259/
https://www.ncbi.nlm.nih.gov/pubmed/26053625
http://dx.doi.org/10.1038/nm.3871
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