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Symbiont modulates expression of specific gene categories in Angomonas deanei

Trypanosomatids are parasites that cause disease in humans, animals, and plants. Most are non-pathogenic and some harbor a symbiotic bacterium. Endosymbiosis is part of the evolutionary process of vital cell functions such as respiration and photosynthesis. Angomonas deanei is an example of a symbio...

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Autores principales: Penha, Luciana Loureiro, Hoffmann, Luísa, de Souza, Silvanna Sant’Anna, Martins, Allan Cézar de Azevedo, Bottaro, Thayane, Prosdocimi, Francisco, Faffe, Débora Souza, Motta, Maria Cristina Machado, Ürményi, Turán Péter, Silva, Rosane
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Instituto Oswaldo Cruz, Ministério da Saúde 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5125052/
https://www.ncbi.nlm.nih.gov/pubmed/27706380
http://dx.doi.org/10.1590/0074-02760160228
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author Penha, Luciana Loureiro
Hoffmann, Luísa
de Souza, Silvanna Sant’Anna
Martins, Allan Cézar de Azevedo
Bottaro, Thayane
Prosdocimi, Francisco
Faffe, Débora Souza
Motta, Maria Cristina Machado
Ürményi, Turán Péter
Silva, Rosane
author_facet Penha, Luciana Loureiro
Hoffmann, Luísa
de Souza, Silvanna Sant’Anna
Martins, Allan Cézar de Azevedo
Bottaro, Thayane
Prosdocimi, Francisco
Faffe, Débora Souza
Motta, Maria Cristina Machado
Ürményi, Turán Péter
Silva, Rosane
author_sort Penha, Luciana Loureiro
collection PubMed
description Trypanosomatids are parasites that cause disease in humans, animals, and plants. Most are non-pathogenic and some harbor a symbiotic bacterium. Endosymbiosis is part of the evolutionary process of vital cell functions such as respiration and photosynthesis. Angomonas deanei is an example of a symbiont-containing trypanosomatid. In this paper, we sought to investigate how symbionts influence host cells by characterising and comparing the transcriptomes of the symbiont-containing A. deanei (wild type) and the symbiont-free aposymbiotic strains. The comparison revealed that the presence of the symbiont modulates several differentially expressed genes. Empirical analysis of differential gene expression showed that 216 of the 7625 modulated genes were significantly changed. Finally, gene set enrichment analysis revealed that the largest categories of genes that downregulated in the absence of the symbiont were those involved in oxidation-reduction process, ATP hydrolysis coupled proton transport and glycolysis. In contrast, among the upregulated gene categories were those involved in proteolysis, microtubule-based movement, and cellular metabolic process. Our results provide valuable information for dissecting the mechanism of endosymbiosis in A. deanei.
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spelling pubmed-51250522016-11-29 Symbiont modulates expression of specific gene categories in Angomonas deanei Penha, Luciana Loureiro Hoffmann, Luísa de Souza, Silvanna Sant’Anna Martins, Allan Cézar de Azevedo Bottaro, Thayane Prosdocimi, Francisco Faffe, Débora Souza Motta, Maria Cristina Machado Ürményi, Turán Péter Silva, Rosane Mem Inst Oswaldo Cruz Articles Trypanosomatids are parasites that cause disease in humans, animals, and plants. Most are non-pathogenic and some harbor a symbiotic bacterium. Endosymbiosis is part of the evolutionary process of vital cell functions such as respiration and photosynthesis. Angomonas deanei is an example of a symbiont-containing trypanosomatid. In this paper, we sought to investigate how symbionts influence host cells by characterising and comparing the transcriptomes of the symbiont-containing A. deanei (wild type) and the symbiont-free aposymbiotic strains. The comparison revealed that the presence of the symbiont modulates several differentially expressed genes. Empirical analysis of differential gene expression showed that 216 of the 7625 modulated genes were significantly changed. Finally, gene set enrichment analysis revealed that the largest categories of genes that downregulated in the absence of the symbiont were those involved in oxidation-reduction process, ATP hydrolysis coupled proton transport and glycolysis. In contrast, among the upregulated gene categories were those involved in proteolysis, microtubule-based movement, and cellular metabolic process. Our results provide valuable information for dissecting the mechanism of endosymbiosis in A. deanei. Instituto Oswaldo Cruz, Ministério da Saúde 2016-10-03 2016-11 /pmc/articles/PMC5125052/ /pubmed/27706380 http://dx.doi.org/10.1590/0074-02760160228 Text en http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Penha, Luciana Loureiro
Hoffmann, Luísa
de Souza, Silvanna Sant’Anna
Martins, Allan Cézar de Azevedo
Bottaro, Thayane
Prosdocimi, Francisco
Faffe, Débora Souza
Motta, Maria Cristina Machado
Ürményi, Turán Péter
Silva, Rosane
Symbiont modulates expression of specific gene categories in Angomonas deanei
title Symbiont modulates expression of specific gene categories in Angomonas deanei
title_full Symbiont modulates expression of specific gene categories in Angomonas deanei
title_fullStr Symbiont modulates expression of specific gene categories in Angomonas deanei
title_full_unstemmed Symbiont modulates expression of specific gene categories in Angomonas deanei
title_short Symbiont modulates expression of specific gene categories in Angomonas deanei
title_sort symbiont modulates expression of specific gene categories in angomonas deanei
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5125052/
https://www.ncbi.nlm.nih.gov/pubmed/27706380
http://dx.doi.org/10.1590/0074-02760160228
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