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Dissecting the Transcriptomes of Multiple Metronidazole-Resistant and Sensitive Trichomonas vaginalis Strains Identified Distinct Genes and Pathways Associated with Drug Resistance and Cell Death

Trichomonas vaginalis is the causative agent of trichomoniasis, the most prevalent non-viral sexually transmitted infection worldwide. Metronidazole (MTZ) is the mainstay of anti-trichomonal chemotherapy; however, drug resistance has become an increasingly worrying issue. Additionally, the molecular...

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Autores principales: Huang, Po-Jung, Huang, Ching-Yun, Li, Yu-Xuan, Liu, Yi-Chung, Chu, Lichieh-Julie, Yeh, Yuan-Ming, Cheng, Wei-Hung, Chen, Ruei-Ming, Lee, Chi-Ching, Chen, Lih-Chyang, Lin, Hsin-Chung, Chiu, Shu-Fang, Lin, Wei-Ning, Lyu, Ping-Chiang, Tang, Petrus, Huang, Kuo-Yang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8698965/
https://www.ncbi.nlm.nih.gov/pubmed/34944632
http://dx.doi.org/10.3390/biomedicines9121817
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author Huang, Po-Jung
Huang, Ching-Yun
Li, Yu-Xuan
Liu, Yi-Chung
Chu, Lichieh-Julie
Yeh, Yuan-Ming
Cheng, Wei-Hung
Chen, Ruei-Ming
Lee, Chi-Ching
Chen, Lih-Chyang
Lin, Hsin-Chung
Chiu, Shu-Fang
Lin, Wei-Ning
Lyu, Ping-Chiang
Tang, Petrus
Huang, Kuo-Yang
author_facet Huang, Po-Jung
Huang, Ching-Yun
Li, Yu-Xuan
Liu, Yi-Chung
Chu, Lichieh-Julie
Yeh, Yuan-Ming
Cheng, Wei-Hung
Chen, Ruei-Ming
Lee, Chi-Ching
Chen, Lih-Chyang
Lin, Hsin-Chung
Chiu, Shu-Fang
Lin, Wei-Ning
Lyu, Ping-Chiang
Tang, Petrus
Huang, Kuo-Yang
author_sort Huang, Po-Jung
collection PubMed
description Trichomonas vaginalis is the causative agent of trichomoniasis, the most prevalent non-viral sexually transmitted infection worldwide. Metronidazole (MTZ) is the mainstay of anti-trichomonal chemotherapy; however, drug resistance has become an increasingly worrying issue. Additionally, the molecular events of MTZ-induced cell death in T. vaginalis remain elusive. To gain insight into the differential expression of genes related to MTZ resistance and cell death, we conducted RNA-sequencing of three paired MTZ-resistant (MTZ-R) and MTZ-sensitive (MTZ-S) T. vaginalis strains treated with or without MTZ. Comparative transcriptomes analysis identified that several putative drug-resistant genes were exclusively upregulated in different MTZ-R strains, such as ATP-binding cassette (ABC) transporters and multidrug resistance pumps. Additionally, several shared upregulated genes among all the MTZ-R transcriptomes were not previously identified in T. vaginalis, such as 5′-nucleotidase surE and Na(+)-driven multidrug efflux pump, which are a potential stress response protein and a multidrug and toxic compound extrusion (MATE)-like protein, respectively. Functional enrichment analysis revealed that purine and pyrimidine metabolisms were suppressed in MTZ-S parasites upon drug treatment, whereas the endoplasmic reticulum-associated degradation (ERAD) pathway, proteasome, and ubiquitin-mediated proteolysis were strikingly activated, highlighting the novel pathways responsible for drug-induced stress. Our work presents the most detailed analysis of the transcriptional changes and the regulatory networks associated with MTZ resistance and MTZ-induced signaling, providing insights into MTZ resistance and cell death mechanisms in trichomonads.
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spelling pubmed-86989652021-12-24 Dissecting the Transcriptomes of Multiple Metronidazole-Resistant and Sensitive Trichomonas vaginalis Strains Identified Distinct Genes and Pathways Associated with Drug Resistance and Cell Death Huang, Po-Jung Huang, Ching-Yun Li, Yu-Xuan Liu, Yi-Chung Chu, Lichieh-Julie Yeh, Yuan-Ming Cheng, Wei-Hung Chen, Ruei-Ming Lee, Chi-Ching Chen, Lih-Chyang Lin, Hsin-Chung Chiu, Shu-Fang Lin, Wei-Ning Lyu, Ping-Chiang Tang, Petrus Huang, Kuo-Yang Biomedicines Article Trichomonas vaginalis is the causative agent of trichomoniasis, the most prevalent non-viral sexually transmitted infection worldwide. Metronidazole (MTZ) is the mainstay of anti-trichomonal chemotherapy; however, drug resistance has become an increasingly worrying issue. Additionally, the molecular events of MTZ-induced cell death in T. vaginalis remain elusive. To gain insight into the differential expression of genes related to MTZ resistance and cell death, we conducted RNA-sequencing of three paired MTZ-resistant (MTZ-R) and MTZ-sensitive (MTZ-S) T. vaginalis strains treated with or without MTZ. Comparative transcriptomes analysis identified that several putative drug-resistant genes were exclusively upregulated in different MTZ-R strains, such as ATP-binding cassette (ABC) transporters and multidrug resistance pumps. Additionally, several shared upregulated genes among all the MTZ-R transcriptomes were not previously identified in T. vaginalis, such as 5′-nucleotidase surE and Na(+)-driven multidrug efflux pump, which are a potential stress response protein and a multidrug and toxic compound extrusion (MATE)-like protein, respectively. Functional enrichment analysis revealed that purine and pyrimidine metabolisms were suppressed in MTZ-S parasites upon drug treatment, whereas the endoplasmic reticulum-associated degradation (ERAD) pathway, proteasome, and ubiquitin-mediated proteolysis were strikingly activated, highlighting the novel pathways responsible for drug-induced stress. Our work presents the most detailed analysis of the transcriptional changes and the regulatory networks associated with MTZ resistance and MTZ-induced signaling, providing insights into MTZ resistance and cell death mechanisms in trichomonads. MDPI 2021-12-02 /pmc/articles/PMC8698965/ /pubmed/34944632 http://dx.doi.org/10.3390/biomedicines9121817 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Huang, Po-Jung
Huang, Ching-Yun
Li, Yu-Xuan
Liu, Yi-Chung
Chu, Lichieh-Julie
Yeh, Yuan-Ming
Cheng, Wei-Hung
Chen, Ruei-Ming
Lee, Chi-Ching
Chen, Lih-Chyang
Lin, Hsin-Chung
Chiu, Shu-Fang
Lin, Wei-Ning
Lyu, Ping-Chiang
Tang, Petrus
Huang, Kuo-Yang
Dissecting the Transcriptomes of Multiple Metronidazole-Resistant and Sensitive Trichomonas vaginalis Strains Identified Distinct Genes and Pathways Associated with Drug Resistance and Cell Death
title Dissecting the Transcriptomes of Multiple Metronidazole-Resistant and Sensitive Trichomonas vaginalis Strains Identified Distinct Genes and Pathways Associated with Drug Resistance and Cell Death
title_full Dissecting the Transcriptomes of Multiple Metronidazole-Resistant and Sensitive Trichomonas vaginalis Strains Identified Distinct Genes and Pathways Associated with Drug Resistance and Cell Death
title_fullStr Dissecting the Transcriptomes of Multiple Metronidazole-Resistant and Sensitive Trichomonas vaginalis Strains Identified Distinct Genes and Pathways Associated with Drug Resistance and Cell Death
title_full_unstemmed Dissecting the Transcriptomes of Multiple Metronidazole-Resistant and Sensitive Trichomonas vaginalis Strains Identified Distinct Genes and Pathways Associated with Drug Resistance and Cell Death
title_short Dissecting the Transcriptomes of Multiple Metronidazole-Resistant and Sensitive Trichomonas vaginalis Strains Identified Distinct Genes and Pathways Associated with Drug Resistance and Cell Death
title_sort dissecting the transcriptomes of multiple metronidazole-resistant and sensitive trichomonas vaginalis strains identified distinct genes and pathways associated with drug resistance and cell death
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8698965/
https://www.ncbi.nlm.nih.gov/pubmed/34944632
http://dx.doi.org/10.3390/biomedicines9121817
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