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Expression profiling reveals distinct sets of genes altered during induction and regression of cardiac hypertrophy
C J Friddle1, T Koga, E M Rubin
1Genome Sciences Department, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.
Abstract:
Although cardiac hypertrophy has been the subject of intensive investigation, regression of hypertrophy has been significantly less studied, precluding large-scale analysis of the relationship between these processes. In the present study, using pharmacological models of cardiac hypertrophy in mice, expression profiling was performed with fragments of more than 4,000 genes to characterize and contrast expression changes during induction and regression of hypertrophy. Administration of angiotensin II and isoproterenol by osmotic minipump produced increases in heart weight (15 and 45%, respectively) that returned to preinduction size after drug withdrawal. From multiple expression analyses of left ventricular RNA isolated at daily time-points during cardiac hypertrophy and regression, we identified sets of genes whose expression was altered at specific stages of this process. While confirming the participation of 25 genes or pathways previously shown to be altered by hypertrophy, a larger set of 30 genes was identified whose expression had not previously been associated with cardiac hypertrophy or regression. Of the 55 genes that showed reproducible changes during the time course of induction and regression, 32 genes were altered only during induction, and 8 were altered only during regression. This study identified both known and novel genes whose expression is affected at different stages of cardiac hypertrophy and regression and demonstrates that cardiac remodeling during regression utilizes a set of genes that are distinct from those used during induction of hypertrophy.
Insights
Cardiac hypertrophy regression involves distinct gene sets compared to its induction. This study identified known and novel genes affected during both processes in mice, offering new insights into cardiac remodeling.
Area of Science:
- Cardiovascular Biology
- Molecular Biology
- Genomics
Background:
- Cardiac hypertrophy, an enlargement of the heart muscle, is well-studied, but its regression remains less understood.
- Limited research on hypertrophy regression hinders comprehensive analysis of its relationship with hypertrophy induction.
Purpose of the Study:
- To characterize and contrast gene expression changes during the induction and regression of cardiac hypertrophy.
- To identify novel genes associated with cardiac hypertrophy and its reversal.
Main Methods:
- Pharmacological induction of cardiac hypertrophy in mice using angiotensin II and isoproterenol.
- Gene expression profiling of left ventricular RNA using over 4,000 gene fragments.
- Daily time-point analyses during hypertrophy induction and regression phases.
Main Results:
- Confirmed changes in 25 known hypertrophy-related genes/pathways.
- Identified 30 novel genes not previously linked to cardiac hypertrophy or regression.
- Discovered that 32 genes were altered only during induction, and 8 only during regression.
Conclusions:
- Cardiac remodeling during regression utilizes a distinct set of genes compared to induction.
- Identified both known and novel genes critical at different stages of cardiac hypertrophy and regression.
- Provides a comprehensive gene expression profile for cardiac hypertrophy and its reversal.