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An Intracellular Arrangement of Histoplasma capsulatum Yeast-Aggregates Generates Nuclear Damage to the Cultured Murine Alveolar Macrophages

Histoplasma capsulatum is responsible for a human systemic mycosis that primarily affects lung tissue. Macrophages are the major effector cells in humans that respond to the fungus, and the development of respiratory disease depends on the ability of Histoplasma yeast cells to survive and replicate...

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Autores principales: Pitangui, Nayla de Souza, Sardi, Janaina de Cássia Orlandi, Voltan, Aline R., dos Santos, Claudia T., da Silva, Julhiany de Fátima, da Silva, Rosangela A. M., Souza, Felipe O., Soares, Christiane P., Rodríguez-Arellanes, Gabriela, Taylor, Maria Lucia, Mendes-Giannini, Maria J. S., Fusco-Almeida, Ana M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4707385/
https://www.ncbi.nlm.nih.gov/pubmed/26793172
http://dx.doi.org/10.3389/fmicb.2015.01526
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author Pitangui, Nayla de Souza
Sardi, Janaina de Cássia Orlandi
Voltan, Aline R.
dos Santos, Claudia T.
da Silva, Julhiany de Fátima
da Silva, Rosangela A. M.
Souza, Felipe O.
Soares, Christiane P.
Rodríguez-Arellanes, Gabriela
Taylor, Maria Lucia
Mendes-Giannini, Maria J. S.
Fusco-Almeida, Ana M.
author_facet Pitangui, Nayla de Souza
Sardi, Janaina de Cássia Orlandi
Voltan, Aline R.
dos Santos, Claudia T.
da Silva, Julhiany de Fátima
da Silva, Rosangela A. M.
Souza, Felipe O.
Soares, Christiane P.
Rodríguez-Arellanes, Gabriela
Taylor, Maria Lucia
Mendes-Giannini, Maria J. S.
Fusco-Almeida, Ana M.
author_sort Pitangui, Nayla de Souza
collection PubMed
description Histoplasma capsulatum is responsible for a human systemic mycosis that primarily affects lung tissue. Macrophages are the major effector cells in humans that respond to the fungus, and the development of respiratory disease depends on the ability of Histoplasma yeast cells to survive and replicate within alveolar macrophages. Therefore, the interaction between macrophages and H. capsulatum is a decisive step in the yeast dissemination into host tissues. Although the role played by components of cell-mediated immunity in the host's defense system and the mechanisms used by the pathogen to evade the host immune response are well understood, knowledge regarding the effects induced by H. capsulatum in host cells at the nuclear level is limited. According to the present findings, H. capsulatum yeast cells display a unique architectural arrangement during the intracellular infection of cultured murine alveolar macrophages, characterized as a formation of aggregates that seem to surround the host cell nucleus, resembling a “crown.” This extranuclear organization of yeast-aggregates generates damage on the nucleus of the host cell, producing DNA fragmentation and inducing apoptosis, even though the yeast cells are not located inside the nucleus and do not trigger changes in nuclear proteins. The current study highlights a singular intracellular arrangement of H. capsulatum yeast near to the nucleus of infected murine alveolar macrophages that may contribute to the yeast's persistence under intracellular conditions, since this fungal pathogen may display different strategies to prevent elimination by the host's phagocytic mechanisms.
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spelling pubmed-47073852016-01-20 An Intracellular Arrangement of Histoplasma capsulatum Yeast-Aggregates Generates Nuclear Damage to the Cultured Murine Alveolar Macrophages Pitangui, Nayla de Souza Sardi, Janaina de Cássia Orlandi Voltan, Aline R. dos Santos, Claudia T. da Silva, Julhiany de Fátima da Silva, Rosangela A. M. Souza, Felipe O. Soares, Christiane P. Rodríguez-Arellanes, Gabriela Taylor, Maria Lucia Mendes-Giannini, Maria J. S. Fusco-Almeida, Ana M. Front Microbiol Microbiology Histoplasma capsulatum is responsible for a human systemic mycosis that primarily affects lung tissue. Macrophages are the major effector cells in humans that respond to the fungus, and the development of respiratory disease depends on the ability of Histoplasma yeast cells to survive and replicate within alveolar macrophages. Therefore, the interaction between macrophages and H. capsulatum is a decisive step in the yeast dissemination into host tissues. Although the role played by components of cell-mediated immunity in the host's defense system and the mechanisms used by the pathogen to evade the host immune response are well understood, knowledge regarding the effects induced by H. capsulatum in host cells at the nuclear level is limited. According to the present findings, H. capsulatum yeast cells display a unique architectural arrangement during the intracellular infection of cultured murine alveolar macrophages, characterized as a formation of aggregates that seem to surround the host cell nucleus, resembling a “crown.” This extranuclear organization of yeast-aggregates generates damage on the nucleus of the host cell, producing DNA fragmentation and inducing apoptosis, even though the yeast cells are not located inside the nucleus and do not trigger changes in nuclear proteins. The current study highlights a singular intracellular arrangement of H. capsulatum yeast near to the nucleus of infected murine alveolar macrophages that may contribute to the yeast's persistence under intracellular conditions, since this fungal pathogen may display different strategies to prevent elimination by the host's phagocytic mechanisms. Frontiers Media S.A. 2016-01-11 /pmc/articles/PMC4707385/ /pubmed/26793172 http://dx.doi.org/10.3389/fmicb.2015.01526 Text en Copyright © 2016 Pitangui, Sardi, Voltan, dos Santos, da Silva, da Silva, Souza, Soares, Rodríguez-Arellanes, Taylor, Mendes-Giannini and Fusco-Almeida. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Pitangui, Nayla de Souza
Sardi, Janaina de Cássia Orlandi
Voltan, Aline R.
dos Santos, Claudia T.
da Silva, Julhiany de Fátima
da Silva, Rosangela A. M.
Souza, Felipe O.
Soares, Christiane P.
Rodríguez-Arellanes, Gabriela
Taylor, Maria Lucia
Mendes-Giannini, Maria J. S.
Fusco-Almeida, Ana M.
An Intracellular Arrangement of Histoplasma capsulatum Yeast-Aggregates Generates Nuclear Damage to the Cultured Murine Alveolar Macrophages
title An Intracellular Arrangement of Histoplasma capsulatum Yeast-Aggregates Generates Nuclear Damage to the Cultured Murine Alveolar Macrophages
title_full An Intracellular Arrangement of Histoplasma capsulatum Yeast-Aggregates Generates Nuclear Damage to the Cultured Murine Alveolar Macrophages
title_fullStr An Intracellular Arrangement of Histoplasma capsulatum Yeast-Aggregates Generates Nuclear Damage to the Cultured Murine Alveolar Macrophages
title_full_unstemmed An Intracellular Arrangement of Histoplasma capsulatum Yeast-Aggregates Generates Nuclear Damage to the Cultured Murine Alveolar Macrophages
title_short An Intracellular Arrangement of Histoplasma capsulatum Yeast-Aggregates Generates Nuclear Damage to the Cultured Murine Alveolar Macrophages
title_sort intracellular arrangement of histoplasma capsulatum yeast-aggregates generates nuclear damage to the cultured murine alveolar macrophages
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4707385/
https://www.ncbi.nlm.nih.gov/pubmed/26793172
http://dx.doi.org/10.3389/fmicb.2015.01526
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