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Comparative Genomics for the Elucidation of Multidrug Resistance in Candida lusitaniae

Multidrug resistance (MDR) has emerged in hospitals due to the use of several agents administered in combination or sequentially to the same individual. We reported earlier MDR in Candida lusitaniae during therapy with amphotericin B (AmB), azoles, and candins. Here, we used comparative genomic appr...

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Autores principales: Kannan, Abhilash, Asner, Sandra A., Trachsel, Emilie, Kelly, Steve, Parker, Josie, Sanglard, Dominique
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6935856/
https://www.ncbi.nlm.nih.gov/pubmed/31874914
http://dx.doi.org/10.1128/mBio.02512-19
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author Kannan, Abhilash
Asner, Sandra A.
Trachsel, Emilie
Kelly, Steve
Parker, Josie
Sanglard, Dominique
author_facet Kannan, Abhilash
Asner, Sandra A.
Trachsel, Emilie
Kelly, Steve
Parker, Josie
Sanglard, Dominique
author_sort Kannan, Abhilash
collection PubMed
description Multidrug resistance (MDR) has emerged in hospitals due to the use of several agents administered in combination or sequentially to the same individual. We reported earlier MDR in Candida lusitaniae during therapy with amphotericin B (AmB), azoles, and candins. Here, we used comparative genomic approaches between the initial susceptible isolate and 4 other isolates with different MDR profiles. From a total of 18 nonsynonymous single nucleotide polymorphisms (NSS) in genome comparisons with the initial isolate, six could be associated with MDR. One of the single nucleotide polymorphisms (SNPs) occurred in a putative transcriptional activator (MRR1) resulting in a V668G substitution in isolates resistant to azoles and 5-fluorocytosine (5-FC). We demonstrated by genome editing that MRR1 acted by upregulation of MFS7 (a multidrug transporter) in the presence of the V668G substitution. MFS7 itself mediated not only azole resistance but also 5-FC resistance, which represents a novel resistance mechanism for this drug class. Three other distinct NSS occurred in FKS1 (a glucan synthase gene that is targeted by candins) in three candin-resistant isolates. Last, two other NSS in ERG3 and ERG4 (ergosterol biosynthesis) resulting in nonsense mutations were revealed in AmB-resistant isolates, one of which accumulated the two ERG NSS. AmB-resistant isolates lacked ergosterol and exhibited sterol profiles, consistent with ERG3 and ERG4 defects. In conclusion, this genome analysis combined with genetics and metabolomics helped decipher the resistance profiles identified in this clinical case. MDR isolates accumulated six different mutations conferring resistance to all antifungal agents used in medicine. This case study illustrates the capacity of C. lusitaniae to rapidly adapt under drug pressure within the host.
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spelling pubmed-69358562020-01-03 Comparative Genomics for the Elucidation of Multidrug Resistance in Candida lusitaniae Kannan, Abhilash Asner, Sandra A. Trachsel, Emilie Kelly, Steve Parker, Josie Sanglard, Dominique mBio Research Article Multidrug resistance (MDR) has emerged in hospitals due to the use of several agents administered in combination or sequentially to the same individual. We reported earlier MDR in Candida lusitaniae during therapy with amphotericin B (AmB), azoles, and candins. Here, we used comparative genomic approaches between the initial susceptible isolate and 4 other isolates with different MDR profiles. From a total of 18 nonsynonymous single nucleotide polymorphisms (NSS) in genome comparisons with the initial isolate, six could be associated with MDR. One of the single nucleotide polymorphisms (SNPs) occurred in a putative transcriptional activator (MRR1) resulting in a V668G substitution in isolates resistant to azoles and 5-fluorocytosine (5-FC). We demonstrated by genome editing that MRR1 acted by upregulation of MFS7 (a multidrug transporter) in the presence of the V668G substitution. MFS7 itself mediated not only azole resistance but also 5-FC resistance, which represents a novel resistance mechanism for this drug class. Three other distinct NSS occurred in FKS1 (a glucan synthase gene that is targeted by candins) in three candin-resistant isolates. Last, two other NSS in ERG3 and ERG4 (ergosterol biosynthesis) resulting in nonsense mutations were revealed in AmB-resistant isolates, one of which accumulated the two ERG NSS. AmB-resistant isolates lacked ergosterol and exhibited sterol profiles, consistent with ERG3 and ERG4 defects. In conclusion, this genome analysis combined with genetics and metabolomics helped decipher the resistance profiles identified in this clinical case. MDR isolates accumulated six different mutations conferring resistance to all antifungal agents used in medicine. This case study illustrates the capacity of C. lusitaniae to rapidly adapt under drug pressure within the host. American Society for Microbiology 2019-12-24 /pmc/articles/PMC6935856/ /pubmed/31874914 http://dx.doi.org/10.1128/mBio.02512-19 Text en Copyright © 2019 Kannan et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Kannan, Abhilash
Asner, Sandra A.
Trachsel, Emilie
Kelly, Steve
Parker, Josie
Sanglard, Dominique
Comparative Genomics for the Elucidation of Multidrug Resistance in Candida lusitaniae
title Comparative Genomics for the Elucidation of Multidrug Resistance in Candida lusitaniae
title_full Comparative Genomics for the Elucidation of Multidrug Resistance in Candida lusitaniae
title_fullStr Comparative Genomics for the Elucidation of Multidrug Resistance in Candida lusitaniae
title_full_unstemmed Comparative Genomics for the Elucidation of Multidrug Resistance in Candida lusitaniae
title_short Comparative Genomics for the Elucidation of Multidrug Resistance in Candida lusitaniae
title_sort comparative genomics for the elucidation of multidrug resistance in candida lusitaniae
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6935856/
https://www.ncbi.nlm.nih.gov/pubmed/31874914
http://dx.doi.org/10.1128/mBio.02512-19
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