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Candida albicans PPG1, a serine/threonine phosphatase, plays a vital role in central carbon metabolisms under filament-inducing conditions: A multi-omics approach
Candida albicans is the leading cause of life-threatening bloodstream candidiasis, especially among immunocompromised patients. The reversible morphological transition from yeast to hyphal filaments in response to host environmental cues facilitates C. albicans tissue invasion, immune evasion, and d...
Autores principales: | , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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Public Library of Science
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8651141/ https://www.ncbi.nlm.nih.gov/pubmed/34874940 http://dx.doi.org/10.1371/journal.pone.0259588 |
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author | A. L. Bataineh, Mohammad Tahseen Soares, Nelson Cruz Semreen, Mohammad Harb Cacciatore, Stefano Dash, Nihar Ranjan Hamad, Mohamad Mousa, Muath Khairi Salam, Jasmin Shafarin Abdul Al Gharaibeh, Mutaz F. Zerbini, Luiz F. Hamad, Mawieh |
author_facet | A. L. Bataineh, Mohammad Tahseen Soares, Nelson Cruz Semreen, Mohammad Harb Cacciatore, Stefano Dash, Nihar Ranjan Hamad, Mohamad Mousa, Muath Khairi Salam, Jasmin Shafarin Abdul Al Gharaibeh, Mutaz F. Zerbini, Luiz F. Hamad, Mawieh |
author_sort | A. L. Bataineh, Mohammad Tahseen |
collection | PubMed |
description | Candida albicans is the leading cause of life-threatening bloodstream candidiasis, especially among immunocompromised patients. The reversible morphological transition from yeast to hyphal filaments in response to host environmental cues facilitates C. albicans tissue invasion, immune evasion, and dissemination. Hence, it is widely considered that filamentation represents one of the major virulence properties in C. albicans. We have previously characterized Ppg1, a PP2A-type protein phosphatase that controls filament extension and virulence in C. albicans. This study conducted RNA sequencing analysis of samples obtained from C. albicans wild type and ppg1Δ/Δ strains grown under filament-inducing conditions. Overall, ppg1Δ/Δ strain showed 1448 upregulated and 710 downregulated genes, representing approximately one-third of the entire annotated C. albicans genome. Transcriptomic analysis identified significant downregulation of well-characterized genes linked to filamentation and virulence, such as ALS3, HWP1, ECE1, and RBT1. Expression analysis showed that essential genes involved in C. albicans central carbon metabolisms, including GDH3, GPD1, GPD2, RHR2, INO1, AAH1, and MET14 were among the top upregulated genes. Subsequent metabolomics analysis of C. albicans ppg1Δ/Δ strain revealed a negative enrichment of metabolites with carboxylic acid substituents and a positive enrichment of metabolites with pyranose substituents. Altogether, Ppg1 in vitro analysis revealed a link between metabolites substituents and filament formation controlled by a phosphatase to regulate morphogenesis and virulence. |
format | Online Article Text |
id | pubmed-8651141 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-86511412021-12-08 Candida albicans PPG1, a serine/threonine phosphatase, plays a vital role in central carbon metabolisms under filament-inducing conditions: A multi-omics approach A. L. Bataineh, Mohammad Tahseen Soares, Nelson Cruz Semreen, Mohammad Harb Cacciatore, Stefano Dash, Nihar Ranjan Hamad, Mohamad Mousa, Muath Khairi Salam, Jasmin Shafarin Abdul Al Gharaibeh, Mutaz F. Zerbini, Luiz F. Hamad, Mawieh PLoS One Research Article Candida albicans is the leading cause of life-threatening bloodstream candidiasis, especially among immunocompromised patients. The reversible morphological transition from yeast to hyphal filaments in response to host environmental cues facilitates C. albicans tissue invasion, immune evasion, and dissemination. Hence, it is widely considered that filamentation represents one of the major virulence properties in C. albicans. We have previously characterized Ppg1, a PP2A-type protein phosphatase that controls filament extension and virulence in C. albicans. This study conducted RNA sequencing analysis of samples obtained from C. albicans wild type and ppg1Δ/Δ strains grown under filament-inducing conditions. Overall, ppg1Δ/Δ strain showed 1448 upregulated and 710 downregulated genes, representing approximately one-third of the entire annotated C. albicans genome. Transcriptomic analysis identified significant downregulation of well-characterized genes linked to filamentation and virulence, such as ALS3, HWP1, ECE1, and RBT1. Expression analysis showed that essential genes involved in C. albicans central carbon metabolisms, including GDH3, GPD1, GPD2, RHR2, INO1, AAH1, and MET14 were among the top upregulated genes. Subsequent metabolomics analysis of C. albicans ppg1Δ/Δ strain revealed a negative enrichment of metabolites with carboxylic acid substituents and a positive enrichment of metabolites with pyranose substituents. Altogether, Ppg1 in vitro analysis revealed a link between metabolites substituents and filament formation controlled by a phosphatase to regulate morphogenesis and virulence. Public Library of Science 2021-12-07 /pmc/articles/PMC8651141/ /pubmed/34874940 http://dx.doi.org/10.1371/journal.pone.0259588 Text en © 2021 Bataineh et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://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 A. L. Bataineh, Mohammad Tahseen Soares, Nelson Cruz Semreen, Mohammad Harb Cacciatore, Stefano Dash, Nihar Ranjan Hamad, Mohamad Mousa, Muath Khairi Salam, Jasmin Shafarin Abdul Al Gharaibeh, Mutaz F. Zerbini, Luiz F. Hamad, Mawieh Candida albicans PPG1, a serine/threonine phosphatase, plays a vital role in central carbon metabolisms under filament-inducing conditions: A multi-omics approach |
title | Candida albicans PPG1, a serine/threonine phosphatase, plays a vital role in central carbon metabolisms under filament-inducing conditions: A multi-omics approach |
title_full | Candida albicans PPG1, a serine/threonine phosphatase, plays a vital role in central carbon metabolisms under filament-inducing conditions: A multi-omics approach |
title_fullStr | Candida albicans PPG1, a serine/threonine phosphatase, plays a vital role in central carbon metabolisms under filament-inducing conditions: A multi-omics approach |
title_full_unstemmed | Candida albicans PPG1, a serine/threonine phosphatase, plays a vital role in central carbon metabolisms under filament-inducing conditions: A multi-omics approach |
title_short | Candida albicans PPG1, a serine/threonine phosphatase, plays a vital role in central carbon metabolisms under filament-inducing conditions: A multi-omics approach |
title_sort | candida albicans ppg1, a serine/threonine phosphatase, plays a vital role in central carbon metabolisms under filament-inducing conditions: a multi-omics approach |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8651141/ https://www.ncbi.nlm.nih.gov/pubmed/34874940 http://dx.doi.org/10.1371/journal.pone.0259588 |
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