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Functional characterization of Candida albicans Hos2 histone deacetylase

Candida albicans is a mucosal commensal organism capable of causing superficial (oral and vaginal thrush) infections in immune normal hosts, but is a major pathogen causing systemic and mucosal infections in immunocompromised individuals. Azoles have been very effective anti-fungal agents and the ma...

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Autores principales: Karthikeyan, G, Paul-Satyaseela, Maneesh, Dhatchana Moorthy, Nachiappan, Gopalaswamy, Radha, Narayanan, Shridhar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: F1000Research 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4111124/
https://www.ncbi.nlm.nih.gov/pubmed/25110576
http://dx.doi.org/10.12688/f1000research.2-238.v3
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author Karthikeyan, G
Paul-Satyaseela, Maneesh
Dhatchana Moorthy, Nachiappan
Gopalaswamy, Radha
Narayanan, Shridhar
author_facet Karthikeyan, G
Paul-Satyaseela, Maneesh
Dhatchana Moorthy, Nachiappan
Gopalaswamy, Radha
Narayanan, Shridhar
author_sort Karthikeyan, G
collection PubMed
description Candida albicans is a mucosal commensal organism capable of causing superficial (oral and vaginal thrush) infections in immune normal hosts, but is a major pathogen causing systemic and mucosal infections in immunocompromised individuals. Azoles have been very effective anti-fungal agents and the mainstay in treating opportunistic mold and yeast infections. Azole resistant strains have emerged compromising the utility of this class of drugs. It has been shown that azole resistance can be reversed by the co-administration of a histone deacetylase (HDAC) inhibitor, suggesting that resistance is mediated by epigenetic mechanisms possibly involving Hos2, a fungal deacetylase. We report here the cloning and functional characterization of  HOS2 (High Osmolarity  Sensitive) , a gene coding for fungal histone deacetylase from  C. albicans. Inhibition studies showed that Hos2 is susceptible to pan inhibitors such as trichostatin A (TSA) and suberoylanilide hydroxamic acid (SAHA), but is not inhibited by class I inhibitors such as MS-275. This  in  vitro enzymatic assay, which is amenable to high throughput could be used for screening potent fungal Hos2 inhibitors that could be a potential anti-fungal adjuvant. Purified Hos2 protein consistently deacetylated tubulins, rather than histones from TSA-treated cells. Hos2 has been reported to be a putative NAD+ dependent histone deacetylase, a feature of sirtuins. We assayed for sirtuin activation with resveratrol and purified Hos2 protein and did not find any sirtuin activity.
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spelling pubmed-41111242014-08-07 Functional characterization of Candida albicans Hos2 histone deacetylase Karthikeyan, G Paul-Satyaseela, Maneesh Dhatchana Moorthy, Nachiappan Gopalaswamy, Radha Narayanan, Shridhar F1000Res Research Article Candida albicans is a mucosal commensal organism capable of causing superficial (oral and vaginal thrush) infections in immune normal hosts, but is a major pathogen causing systemic and mucosal infections in immunocompromised individuals. Azoles have been very effective anti-fungal agents and the mainstay in treating opportunistic mold and yeast infections. Azole resistant strains have emerged compromising the utility of this class of drugs. It has been shown that azole resistance can be reversed by the co-administration of a histone deacetylase (HDAC) inhibitor, suggesting that resistance is mediated by epigenetic mechanisms possibly involving Hos2, a fungal deacetylase. We report here the cloning and functional characterization of  HOS2 (High Osmolarity  Sensitive) , a gene coding for fungal histone deacetylase from  C. albicans. Inhibition studies showed that Hos2 is susceptible to pan inhibitors such as trichostatin A (TSA) and suberoylanilide hydroxamic acid (SAHA), but is not inhibited by class I inhibitors such as MS-275. This  in  vitro enzymatic assay, which is amenable to high throughput could be used for screening potent fungal Hos2 inhibitors that could be a potential anti-fungal adjuvant. Purified Hos2 protein consistently deacetylated tubulins, rather than histones from TSA-treated cells. Hos2 has been reported to be a putative NAD+ dependent histone deacetylase, a feature of sirtuins. We assayed for sirtuin activation with resveratrol and purified Hos2 protein and did not find any sirtuin activity. F1000Research 2014-07-22 /pmc/articles/PMC4111124/ /pubmed/25110576 http://dx.doi.org/10.12688/f1000research.2-238.v3 Text en Copyright: © 2014 Karthikeyan G et al. http://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. http://creativecommons.org/publicdomain/zero/1.0/ Data associated with the article are available under the terms of the Creative Commons Zero "No rights reserved" data waiver (CC0 1.0 Public domain dedication).
spellingShingle Research Article
Karthikeyan, G
Paul-Satyaseela, Maneesh
Dhatchana Moorthy, Nachiappan
Gopalaswamy, Radha
Narayanan, Shridhar
Functional characterization of Candida albicans Hos2 histone deacetylase
title Functional characterization of Candida albicans Hos2 histone deacetylase
title_full Functional characterization of Candida albicans Hos2 histone deacetylase
title_fullStr Functional characterization of Candida albicans Hos2 histone deacetylase
title_full_unstemmed Functional characterization of Candida albicans Hos2 histone deacetylase
title_short Functional characterization of Candida albicans Hos2 histone deacetylase
title_sort functional characterization of candida albicans hos2 histone deacetylase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4111124/
https://www.ncbi.nlm.nih.gov/pubmed/25110576
http://dx.doi.org/10.12688/f1000research.2-238.v3
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