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Series GSE16909 Query DataSets for GSE16909
Status Public on Mar 31, 2010
Title Gene expression profiling of a mouse model of dilated cardiomyopathy
Organism Mus musculus
Experiment type Expression profiling by array
Summary Analysis of the effects of aging on the development of dilated cardiomyopathy by characterizing both changes in ejection fraction (EF) and gene expression profile in 3 groups of male mice: Control (Cont or WT, n=11) and transgenic (Tg or KO) mice with either high EF (KO-H or Tg-H, n=7) or low EF (KO-L or Tg-L, n=6).
We previously produced a line of transgenic mice (Tg) on a mixed genetic background where cardiac-specific overexpression of Cre recombinase reduced expression of the EP4 receptor gene. There were no obvious phenotypes in 10-12-week-old male Tg mice. To determine if a cardiac phenotype developed in aged mice, we assessed cardiac structure and function by echocardiography, histology and gene expression in 23-33-week-old male Tg and littermates (Cont). After echocardiography, hearts were removed to assess hypertrophy (MCSA), fibrosis (ICF) and macrophage infiltration by histological methods and for extraction of total RNA and protein. Cont mice had a normal EF of 80±0.6% (n=70), whereas Tg mice had a lower EF (60±2.7%, n=55, p<0.001) coupled with left ventricular dilatation. The distribution of EFs in the Tg mice was large, ranging from normal to below 30%. MCSA and infiltrating macrophages were not different between groups, but ICF increased by 35% in Tg mice. Cre protein levels in heart lysates did not correlate with either age or EF. In contrast to male Tg mice, female Tg mice had no cardiac dysfunction assessed by echocardiography from 12 to 28 weeks of age. To understand gene expression differences between Cont and Tg mice, whole genome gene expression profiling (Illumina BeadChips) on hearts of 30-32 week old male mice was done. Data indicated that 595 genes were overexpressed in the Tg hearts, 156 of which changed more than 2-fold, including genes involved in remodeling, inflammation, and oxidative stress. 512 genes were downregulated in the Cont hearts, 79 of which changed more than 2-fold, including genes involved with calcium handling, K+ channels, and fatty acid transport and metabolism. In conclusion, Cre overexpression and EP4 knock down in cardiac myocytes in aged male but not female Tg mice are in part associated with increased fibrosis, reduced EF and dilated cardiomyopathy; however, Cre protein itself does not seem to be responsible for the cardiomyopathy. The absence of cardiac dysfunction in female mice suggests a sexual dimorphism in the phenotype.
Creation of the cardiac-myocyte specific EP4 KO mouse and littermate controls was described in JY Qian et al, Hypertension 2008: 51(pt 2):560-566.
 
Overall design Total RNA extracted from left ventricle of control (Cont or WT, n =11) and cardiac-specific EP4 KO (Tg or KO, n=13) male mice (mean age 31 weeks).
 
Contributor(s) LaPointe MC, Yang J
Citation(s) 20008274
Submission date Jun 30, 2009
Last update date Jan 16, 2019
Contact name Margot C LaPointe
E-mail(s) mlapoin1@hfhs.org
Phone 313-916-3076
Fax 313-916-1479
Organization name Henry Ford Hospital
Department Internal Medicine
Lab Hyp. and Vasc. Res. Div.
Street address 2799 W. Grand Blvd.
City Detroit
State/province MI
ZIP/Postal code 48202-2689
Country USA
 
Platforms (1)
GPL6887 Illumina MouseWG-6 v2.0 expression beadchip
Samples (24)
GSM423916 Wildtype (WT) or Cont sample 1
GSM423917 Wildtype (WT) or Cont sample 2
GSM423918 Wildtype (WT) or Cont sample 3
Relations
BioProject PRJNA117695

Download family Format
SOFT formatted family file(s) SOFTHelp
MINiML formatted family file(s) MINiMLHelp
Series Matrix File(s) TXTHelp

Supplementary file Size Download File type/resource
GSE16909_RAW.tar 15.8 Mb (http)(custom) TAR
GSE16909_non-normalized.txt.gz 4.5 Mb (ftp)(http) TXT
GSE16909_summary_data.txt.gz 2.0 Mb (ftp)(http) TXT
Processed data included within Sample table
Processed data are available on Series record

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