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Decidual Cell Polyploidization Necessitates Mitochondrial Activity

Cellular polyploidy has been widely reported in nature, yet its developmental mechanism and function remain poorly understood. In the present study, to better define the aspects of decidual cell polyploidy, we isolated pure polyploid and non-polyploid decidual cell populations from the in vivo decid...

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Autores principales: Ma, Xinghong, Gao, Fei, Rusie, Allison, Hemingway, Jennifer, Ostmann, Alicia B., Sroga, Julie M., Jegga, Anil G., Das, Sanjoy K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3201964/
https://www.ncbi.nlm.nih.gov/pubmed/22046353
http://dx.doi.org/10.1371/journal.pone.0026774
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author Ma, Xinghong
Gao, Fei
Rusie, Allison
Hemingway, Jennifer
Ostmann, Alicia B.
Sroga, Julie M.
Jegga, Anil G.
Das, Sanjoy K.
author_facet Ma, Xinghong
Gao, Fei
Rusie, Allison
Hemingway, Jennifer
Ostmann, Alicia B.
Sroga, Julie M.
Jegga, Anil G.
Das, Sanjoy K.
author_sort Ma, Xinghong
collection PubMed
description Cellular polyploidy has been widely reported in nature, yet its developmental mechanism and function remain poorly understood. In the present study, to better define the aspects of decidual cell polyploidy, we isolated pure polyploid and non-polyploid decidual cell populations from the in vivo decidual bed. Three independent RNA pools prepared for each population were then subjected to the Affymetrix gene chip analysis for the whole mouse genome transcripts. Our data revealed up-regulation of 1015 genes and down-regulation of 1207 genes in the polyploid populations, as compared to the non-polyploid group. Comparative RT-PCR and in situ hybridization results indeed confirmed differential expressional regulation of several genes between the two populations. Based on functional enrichment analyses, up-regulated polyploidy genes appeared to implicate several functions, which primarily include cell/nuclear division, ATP binding, metabolic process, and mitochondrial activity, whereas that of down-regulated genes primarily included apoptosis and immune processes. Further analyses of genes that are related to mitochondria and bi-nucleation showed differential and regional expression within the decidual bed, consistent with the pattern of polyploidy. Consistently, studies revealed a marked induction of mitochondrial mass and ATP production in polyploid cells. The inhibition of mitochondrial activity by various pharmacological inhibitors, as well as by gene-specific targeting using siRNA-mediated technology showed a dramatic attenuation of polyploidy and bi-nucleation development during in vitro stromal cell decidualization, suggesting mitochondria play a major role in positive regulation of decidual cell polyploidization. Collectively, analyses of unique polyploidy markers and molecular signaling networks may be useful to further characterize functional aspects of decidual cell polyploidy at the site of implantation.
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spelling pubmed-32019642011-11-01 Decidual Cell Polyploidization Necessitates Mitochondrial Activity Ma, Xinghong Gao, Fei Rusie, Allison Hemingway, Jennifer Ostmann, Alicia B. Sroga, Julie M. Jegga, Anil G. Das, Sanjoy K. PLoS One Research Article Cellular polyploidy has been widely reported in nature, yet its developmental mechanism and function remain poorly understood. In the present study, to better define the aspects of decidual cell polyploidy, we isolated pure polyploid and non-polyploid decidual cell populations from the in vivo decidual bed. Three independent RNA pools prepared for each population were then subjected to the Affymetrix gene chip analysis for the whole mouse genome transcripts. Our data revealed up-regulation of 1015 genes and down-regulation of 1207 genes in the polyploid populations, as compared to the non-polyploid group. Comparative RT-PCR and in situ hybridization results indeed confirmed differential expressional regulation of several genes between the two populations. Based on functional enrichment analyses, up-regulated polyploidy genes appeared to implicate several functions, which primarily include cell/nuclear division, ATP binding, metabolic process, and mitochondrial activity, whereas that of down-regulated genes primarily included apoptosis and immune processes. Further analyses of genes that are related to mitochondria and bi-nucleation showed differential and regional expression within the decidual bed, consistent with the pattern of polyploidy. Consistently, studies revealed a marked induction of mitochondrial mass and ATP production in polyploid cells. The inhibition of mitochondrial activity by various pharmacological inhibitors, as well as by gene-specific targeting using siRNA-mediated technology showed a dramatic attenuation of polyploidy and bi-nucleation development during in vitro stromal cell decidualization, suggesting mitochondria play a major role in positive regulation of decidual cell polyploidization. Collectively, analyses of unique polyploidy markers and molecular signaling networks may be useful to further characterize functional aspects of decidual cell polyploidy at the site of implantation. Public Library of Science 2011-10-25 /pmc/articles/PMC3201964/ /pubmed/22046353 http://dx.doi.org/10.1371/journal.pone.0026774 Text en Ma et al. 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 author and source are properly credited.
spellingShingle Research Article
Ma, Xinghong
Gao, Fei
Rusie, Allison
Hemingway, Jennifer
Ostmann, Alicia B.
Sroga, Julie M.
Jegga, Anil G.
Das, Sanjoy K.
Decidual Cell Polyploidization Necessitates Mitochondrial Activity
title Decidual Cell Polyploidization Necessitates Mitochondrial Activity
title_full Decidual Cell Polyploidization Necessitates Mitochondrial Activity
title_fullStr Decidual Cell Polyploidization Necessitates Mitochondrial Activity
title_full_unstemmed Decidual Cell Polyploidization Necessitates Mitochondrial Activity
title_short Decidual Cell Polyploidization Necessitates Mitochondrial Activity
title_sort decidual cell polyploidization necessitates mitochondrial activity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3201964/
https://www.ncbi.nlm.nih.gov/pubmed/22046353
http://dx.doi.org/10.1371/journal.pone.0026774
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