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Cardiac transcriptome profiling of diabetic Akita mice using microarray and next generation sequencing

Although diabetes mellitus (DM) causes cardiomyopathy and exacerbates heart failure, the underlying molecular mechanisms for diabetic cardiomyopathy/heart failure are poorly understood. Insulin2 mutant (Ins2(+/-)) Akita is a mouse model of T1DM, which manifests cardiac dysfunction. However, molecula...

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Autores principales: Kesherwani, Varun, Shahshahan, Hamid R., Mishra, Paras K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5570368/
https://www.ncbi.nlm.nih.gov/pubmed/28837672
http://dx.doi.org/10.1371/journal.pone.0182828
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author Kesherwani, Varun
Shahshahan, Hamid R.
Mishra, Paras K.
author_facet Kesherwani, Varun
Shahshahan, Hamid R.
Mishra, Paras K.
author_sort Kesherwani, Varun
collection PubMed
description Although diabetes mellitus (DM) causes cardiomyopathy and exacerbates heart failure, the underlying molecular mechanisms for diabetic cardiomyopathy/heart failure are poorly understood. Insulin2 mutant (Ins2(+/-)) Akita is a mouse model of T1DM, which manifests cardiac dysfunction. However, molecular changes at cardiac transcriptome level that lead to cardiomyopathy remain unclear. To understand the molecular changes in the heart of diabetic Akita mice, we profiled cardiac transcriptome of Ins2(+/-) Akita and Ins2(+/+) control mice using next generation sequencing (NGS) and microarray, and determined the implications of differentially expressed genes on various heart failure signaling pathways using Ingenuity pathway (IPA) analysis. First, we validated hyperglycemia, increased cardiac fibrosis, and cardiac dysfunction in twelve-week male diabetic Akita. Then, we analyzed the transcriptome levels in the heart. NGS analyses on Akita heart revealed 137 differentially expressed transcripts, where Bone Morphogenic Protein-10 (BMP10) was the most upregulated and hairy and enhancer of split-related (HELT) was the most downregulated gene. Moreover, twelve long non-coding RNAs (lncRNAs) were upregulated. The microarray analyses on Akita heart showed 351 differentially expressed transcripts, where vomeronasal-1 receptor-180 (Vmn1r180) was the most upregulated and WD Repeat Domain 83 Opposite Strand (WDR83OS) was the most downregulated gene. Further, miR-101c and H19 lncRNA were upregulated but Neat1 lncRNA was downregulated in Akita heart. Eleven common genes were upregulated in Akita heart in both NGS and microarray analyses. IPA analyses revealed the role of these differentially expressed genes in key signaling pathways involved in diabetic cardiomyopathy. Our results provide a platform to initiate focused future studies by targeting these genes and/or non-coding RNAs, which are differentially expressed in Akita hearts and are involved in diabetic cardiomyopathy.
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spelling pubmed-55703682017-09-09 Cardiac transcriptome profiling of diabetic Akita mice using microarray and next generation sequencing Kesherwani, Varun Shahshahan, Hamid R. Mishra, Paras K. PLoS One Research Article Although diabetes mellitus (DM) causes cardiomyopathy and exacerbates heart failure, the underlying molecular mechanisms for diabetic cardiomyopathy/heart failure are poorly understood. Insulin2 mutant (Ins2(+/-)) Akita is a mouse model of T1DM, which manifests cardiac dysfunction. However, molecular changes at cardiac transcriptome level that lead to cardiomyopathy remain unclear. To understand the molecular changes in the heart of diabetic Akita mice, we profiled cardiac transcriptome of Ins2(+/-) Akita and Ins2(+/+) control mice using next generation sequencing (NGS) and microarray, and determined the implications of differentially expressed genes on various heart failure signaling pathways using Ingenuity pathway (IPA) analysis. First, we validated hyperglycemia, increased cardiac fibrosis, and cardiac dysfunction in twelve-week male diabetic Akita. Then, we analyzed the transcriptome levels in the heart. NGS analyses on Akita heart revealed 137 differentially expressed transcripts, where Bone Morphogenic Protein-10 (BMP10) was the most upregulated and hairy and enhancer of split-related (HELT) was the most downregulated gene. Moreover, twelve long non-coding RNAs (lncRNAs) were upregulated. The microarray analyses on Akita heart showed 351 differentially expressed transcripts, where vomeronasal-1 receptor-180 (Vmn1r180) was the most upregulated and WD Repeat Domain 83 Opposite Strand (WDR83OS) was the most downregulated gene. Further, miR-101c and H19 lncRNA were upregulated but Neat1 lncRNA was downregulated in Akita heart. Eleven common genes were upregulated in Akita heart in both NGS and microarray analyses. IPA analyses revealed the role of these differentially expressed genes in key signaling pathways involved in diabetic cardiomyopathy. Our results provide a platform to initiate focused future studies by targeting these genes and/or non-coding RNAs, which are differentially expressed in Akita hearts and are involved in diabetic cardiomyopathy. Public Library of Science 2017-08-24 /pmc/articles/PMC5570368/ /pubmed/28837672 http://dx.doi.org/10.1371/journal.pone.0182828 Text en © 2017 Kesherwani 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
Kesherwani, Varun
Shahshahan, Hamid R.
Mishra, Paras K.
Cardiac transcriptome profiling of diabetic Akita mice using microarray and next generation sequencing
title Cardiac transcriptome profiling of diabetic Akita mice using microarray and next generation sequencing
title_full Cardiac transcriptome profiling of diabetic Akita mice using microarray and next generation sequencing
title_fullStr Cardiac transcriptome profiling of diabetic Akita mice using microarray and next generation sequencing
title_full_unstemmed Cardiac transcriptome profiling of diabetic Akita mice using microarray and next generation sequencing
title_short Cardiac transcriptome profiling of diabetic Akita mice using microarray and next generation sequencing
title_sort cardiac transcriptome profiling of diabetic akita mice using microarray and next generation sequencing
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5570368/
https://www.ncbi.nlm.nih.gov/pubmed/28837672
http://dx.doi.org/10.1371/journal.pone.0182828
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