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Ureaplasma parvum infection alters filamin a dynamics in host cells

BACKGROUND: Ureaplasmas are among the most common bacteria isolated from the human urogenital tract. Ureaplasmas can produce asymptomatic infections or disease characterized by an exaggerated inflammatory response. Most investigations have focused on elucidating the pathogenic potential of Ureaplasm...

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Autores principales: Allam, Ayman B, Alvarez, Sophie, Brown, Mary B, Reyes, Leticia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3107797/
https://www.ncbi.nlm.nih.gov/pubmed/21507248
http://dx.doi.org/10.1186/1471-2334-11-101
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author Allam, Ayman B
Alvarez, Sophie
Brown, Mary B
Reyes, Leticia
author_facet Allam, Ayman B
Alvarez, Sophie
Brown, Mary B
Reyes, Leticia
author_sort Allam, Ayman B
collection PubMed
description BACKGROUND: Ureaplasmas are among the most common bacteria isolated from the human urogenital tract. Ureaplasmas can produce asymptomatic infections or disease characterized by an exaggerated inflammatory response. Most investigations have focused on elucidating the pathogenic potential of Ureaplasma species, but little attention has been paid to understanding the mechanisms by which these organisms are capable of establishing asymptomatic infection. METHODS: We employed differential proteome profiling of bladder tissues from rats experimentally infected with U. parvum in order to identify host cell processes perturbed by colonization with the microbe. Tissues were grouped into four categories: sham inoculated controls, animals that spontaneously cleared infection, asymptomatic urinary tract infection (UTI), and complicated UTI. One protein that was perturbed by infection (filamin A) was used to further elucidate the mechanism of U. parvum-induced disruption in human benign prostate cells (BPH-1). BPH-1 cells were evaluated by confocal microscopy, immunoblotting and ELISA. RESULTS: Bladder tissue from animals actively colonized with U. parvum displayed significant alterations in actin binding proteins (profilin 1, vinculin, α actinin, and filamin A) that regulate both actin polymerization and cell cytoskeletal function pertaining to focal adhesion formation and signal transduction (Fisher's exact test, P < 0.004; ANOVA, P < 0.02). This phenomenon was independent of clinical profile (asymptomatic vs. complicated UTI). We selected filamin A as a target for additional studies. In the BPH-1 model, we confirmed that U. parvum perturbed the regulation of filamin A. Specifically, infected BPH-1 cells exhibited a significant increase in filamin A phosphorylated at serine(2152 )(P ≤ 0.01), which correlated with impaired proteolysis of the protein and its normal intracellular distribution. CONCLUSION: Filamin A dynamics were perturbed in both models of infection. Phosphorylation of filamin A occurs in response to various cell signaling cascades that regulate cell motility, differentiation, apoptosis and inflammation. Thus, this phenomenon may be a useful molecular marker for identifying the specific host cell pathways that are perturbed during U. parvum infection.
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spelling pubmed-31077972011-06-04 Ureaplasma parvum infection alters filamin a dynamics in host cells Allam, Ayman B Alvarez, Sophie Brown, Mary B Reyes, Leticia BMC Infect Dis Research Article BACKGROUND: Ureaplasmas are among the most common bacteria isolated from the human urogenital tract. Ureaplasmas can produce asymptomatic infections or disease characterized by an exaggerated inflammatory response. Most investigations have focused on elucidating the pathogenic potential of Ureaplasma species, but little attention has been paid to understanding the mechanisms by which these organisms are capable of establishing asymptomatic infection. METHODS: We employed differential proteome profiling of bladder tissues from rats experimentally infected with U. parvum in order to identify host cell processes perturbed by colonization with the microbe. Tissues were grouped into four categories: sham inoculated controls, animals that spontaneously cleared infection, asymptomatic urinary tract infection (UTI), and complicated UTI. One protein that was perturbed by infection (filamin A) was used to further elucidate the mechanism of U. parvum-induced disruption in human benign prostate cells (BPH-1). BPH-1 cells were evaluated by confocal microscopy, immunoblotting and ELISA. RESULTS: Bladder tissue from animals actively colonized with U. parvum displayed significant alterations in actin binding proteins (profilin 1, vinculin, α actinin, and filamin A) that regulate both actin polymerization and cell cytoskeletal function pertaining to focal adhesion formation and signal transduction (Fisher's exact test, P < 0.004; ANOVA, P < 0.02). This phenomenon was independent of clinical profile (asymptomatic vs. complicated UTI). We selected filamin A as a target for additional studies. In the BPH-1 model, we confirmed that U. parvum perturbed the regulation of filamin A. Specifically, infected BPH-1 cells exhibited a significant increase in filamin A phosphorylated at serine(2152 )(P ≤ 0.01), which correlated with impaired proteolysis of the protein and its normal intracellular distribution. CONCLUSION: Filamin A dynamics were perturbed in both models of infection. Phosphorylation of filamin A occurs in response to various cell signaling cascades that regulate cell motility, differentiation, apoptosis and inflammation. Thus, this phenomenon may be a useful molecular marker for identifying the specific host cell pathways that are perturbed during U. parvum infection. BioMed Central 2011-04-20 /pmc/articles/PMC3107797/ /pubmed/21507248 http://dx.doi.org/10.1186/1471-2334-11-101 Text en Copyright ©2011 Allam et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Allam, Ayman B
Alvarez, Sophie
Brown, Mary B
Reyes, Leticia
Ureaplasma parvum infection alters filamin a dynamics in host cells
title Ureaplasma parvum infection alters filamin a dynamics in host cells
title_full Ureaplasma parvum infection alters filamin a dynamics in host cells
title_fullStr Ureaplasma parvum infection alters filamin a dynamics in host cells
title_full_unstemmed Ureaplasma parvum infection alters filamin a dynamics in host cells
title_short Ureaplasma parvum infection alters filamin a dynamics in host cells
title_sort ureaplasma parvum infection alters filamin a dynamics in host cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3107797/
https://www.ncbi.nlm.nih.gov/pubmed/21507248
http://dx.doi.org/10.1186/1471-2334-11-101
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