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Exploring Regulatory Mechanisms of Atrial Myocyte Hypertrophy of Mitral Regurgitation through Gene Expression Profiling Analysis: Role of NFAT in Cardiac Hypertrophy

BACKGROUND: Left atrial enlargement in mitral regurgitation (MR) predicts a poor prognosis. The regulatory mechanisms of atrial myocyte hypertrophy of MR patients remain unknown. METHODS AND RESULTS: This study comprised 14 patients with MR, 7 patients with aortic valve disease (AVD), and 6 purchase...

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Autores principales: Chang, Tzu-Hao, Chen, Mien-Cheng, Chang, Jen-Ping, Huang, Hsien-Da, Ho, Wan-Chun, Lin, Yu-Sheng, Pan, Kuo-Li, Huang, Yao-Kuang, Liu, Wen-Hao, Wu, Chia-Chen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5131988/
https://www.ncbi.nlm.nih.gov/pubmed/27907007
http://dx.doi.org/10.1371/journal.pone.0166791
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author Chang, Tzu-Hao
Chen, Mien-Cheng
Chang, Jen-Ping
Huang, Hsien-Da
Ho, Wan-Chun
Lin, Yu-Sheng
Pan, Kuo-Li
Huang, Yao-Kuang
Liu, Wen-Hao
Wu, Chia-Chen
author_facet Chang, Tzu-Hao
Chen, Mien-Cheng
Chang, Jen-Ping
Huang, Hsien-Da
Ho, Wan-Chun
Lin, Yu-Sheng
Pan, Kuo-Li
Huang, Yao-Kuang
Liu, Wen-Hao
Wu, Chia-Chen
author_sort Chang, Tzu-Hao
collection PubMed
description BACKGROUND: Left atrial enlargement in mitral regurgitation (MR) predicts a poor prognosis. The regulatory mechanisms of atrial myocyte hypertrophy of MR patients remain unknown. METHODS AND RESULTS: This study comprised 14 patients with MR, 7 patients with aortic valve disease (AVD), and 6 purchased samples from normal subjects (NC). We used microarrays, enrichment analysis and quantitative RT-PCR to study the gene expression profiles in the left atria. Microarray results showed that 112 genes were differentially up-regulated and 132 genes were differentially down-regulated in the left atria between MR patients and NC. Enrichment analysis of differentially expressed genes demonstrated that “NFAT in cardiac hypertrophy” pathway was not only one of the significant associated canonical pathways, but also the only one predicted with a non-zero score of 1.34 (i.e. activated) through Ingenuity Pathway Analysis molecule activity predictor. Ingenuity Pathway Analysis Global Molecular Network analysis exhibited that the highest score network also showed high association with cardiac related pathways and functions. Therefore, 5 NFAT associated genes (PPP3R1, PPP3CB, CAMK1, MEF2C, PLCE1) were studies for validation. The mRNA expressions of PPP3CB and MEF2C were significantly up-regulated, and CAMK1 and PPP3R1 were significantly down-regulated in MR patients compared to NC. Moreover, MR patients had significantly increased mRNA levels of PPP3CB, MEF2C and PLCE1 compared to AVD patients. The atrial myocyte size of MR patients significantly exceeded that of the AVD patients and NC. CONCLUSIONS: Differentially expressed genes in the “NFAT in cardiac hypertrophy” pathway may play a critical role in the atrial myocyte hypertrophy of MR patients.
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spelling pubmed-51319882016-12-21 Exploring Regulatory Mechanisms of Atrial Myocyte Hypertrophy of Mitral Regurgitation through Gene Expression Profiling Analysis: Role of NFAT in Cardiac Hypertrophy Chang, Tzu-Hao Chen, Mien-Cheng Chang, Jen-Ping Huang, Hsien-Da Ho, Wan-Chun Lin, Yu-Sheng Pan, Kuo-Li Huang, Yao-Kuang Liu, Wen-Hao Wu, Chia-Chen PLoS One Research Article BACKGROUND: Left atrial enlargement in mitral regurgitation (MR) predicts a poor prognosis. The regulatory mechanisms of atrial myocyte hypertrophy of MR patients remain unknown. METHODS AND RESULTS: This study comprised 14 patients with MR, 7 patients with aortic valve disease (AVD), and 6 purchased samples from normal subjects (NC). We used microarrays, enrichment analysis and quantitative RT-PCR to study the gene expression profiles in the left atria. Microarray results showed that 112 genes were differentially up-regulated and 132 genes were differentially down-regulated in the left atria between MR patients and NC. Enrichment analysis of differentially expressed genes demonstrated that “NFAT in cardiac hypertrophy” pathway was not only one of the significant associated canonical pathways, but also the only one predicted with a non-zero score of 1.34 (i.e. activated) through Ingenuity Pathway Analysis molecule activity predictor. Ingenuity Pathway Analysis Global Molecular Network analysis exhibited that the highest score network also showed high association with cardiac related pathways and functions. Therefore, 5 NFAT associated genes (PPP3R1, PPP3CB, CAMK1, MEF2C, PLCE1) were studies for validation. The mRNA expressions of PPP3CB and MEF2C were significantly up-regulated, and CAMK1 and PPP3R1 were significantly down-regulated in MR patients compared to NC. Moreover, MR patients had significantly increased mRNA levels of PPP3CB, MEF2C and PLCE1 compared to AVD patients. The atrial myocyte size of MR patients significantly exceeded that of the AVD patients and NC. CONCLUSIONS: Differentially expressed genes in the “NFAT in cardiac hypertrophy” pathway may play a critical role in the atrial myocyte hypertrophy of MR patients. Public Library of Science 2016-12-01 /pmc/articles/PMC5131988/ /pubmed/27907007 http://dx.doi.org/10.1371/journal.pone.0166791 Text en © 2016 Chang 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Chang, Tzu-Hao
Chen, Mien-Cheng
Chang, Jen-Ping
Huang, Hsien-Da
Ho, Wan-Chun
Lin, Yu-Sheng
Pan, Kuo-Li
Huang, Yao-Kuang
Liu, Wen-Hao
Wu, Chia-Chen
Exploring Regulatory Mechanisms of Atrial Myocyte Hypertrophy of Mitral Regurgitation through Gene Expression Profiling Analysis: Role of NFAT in Cardiac Hypertrophy
title Exploring Regulatory Mechanisms of Atrial Myocyte Hypertrophy of Mitral Regurgitation through Gene Expression Profiling Analysis: Role of NFAT in Cardiac Hypertrophy
title_full Exploring Regulatory Mechanisms of Atrial Myocyte Hypertrophy of Mitral Regurgitation through Gene Expression Profiling Analysis: Role of NFAT in Cardiac Hypertrophy
title_fullStr Exploring Regulatory Mechanisms of Atrial Myocyte Hypertrophy of Mitral Regurgitation through Gene Expression Profiling Analysis: Role of NFAT in Cardiac Hypertrophy
title_full_unstemmed Exploring Regulatory Mechanisms of Atrial Myocyte Hypertrophy of Mitral Regurgitation through Gene Expression Profiling Analysis: Role of NFAT in Cardiac Hypertrophy
title_short Exploring Regulatory Mechanisms of Atrial Myocyte Hypertrophy of Mitral Regurgitation through Gene Expression Profiling Analysis: Role of NFAT in Cardiac Hypertrophy
title_sort exploring regulatory mechanisms of atrial myocyte hypertrophy of mitral regurgitation through gene expression profiling analysis: role of nfat in cardiac hypertrophy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5131988/
https://www.ncbi.nlm.nih.gov/pubmed/27907007
http://dx.doi.org/10.1371/journal.pone.0166791
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