Differential gene expression in infarct scar and viable myocardium from rat heart following coronary ligation
- 1 January 2004
- journal article
- Published by Wiley in Journal of Cellular and Molecular Medicine
- Vol. 8 (1) , 85-92
- https://doi.org/10.1111/j.1582-4934.2004.tb00262.x
Abstract
Post-myocardial infarction (MI) remodeling of cardiac myocytes and the myocardial interstitium results in alteration of gross ventricular geometry and ventricular dysfunction. To investigate the mechanisms of the remodeling process of the heart after large MI, the expression of various genes in viable left ventricle and infarct scar tissue were examined at 16 weeks post-MI. Steady-state expression of Na(+)-K+ ATPase alpha-1 and -2, phospholamban (PLB), alpha-myosin heavy chain (alpha-MHC), ryanodine receptor (Rya) and Ca2+ ATPase (Serca2) mRNAs were decreased in the infarct scar vs noninfarcted sham-operated controls (P < 0.05). On the other hand, Gialpha2 and beta-MHC mRNAs were upregulated (P < 0.05, respectively) in the infarct scar whereas Na(+)-K+ ATPase-beta, Na(+)-Ca2+ exchanger and Gs mRNAs were not altered vs control values. In viable left ventricle, the alpha-1 subunit of Na(+)-K+ ATPase, alpha-3, beta-isoforms, Rya, beta-MHC, Gialpha2, Gs and Na(+)-Ca2+ exchanger were significantly elevated while expression of the alpha-2 subunit of Na(+)-K+ ATPase, PLB and Serca2 were significantly decreased compared to controls. Expression of CK2alpha mRNA was elevated in noninfarcted heart (145 +/- 15%) and diminished in the infarct scar (66 +/- 13%) vs controls. Expression of beta-MHC mRNA was elevated in both viable and infarct scar tissues of experimental hearts (140 +/- 31% and 183 +/- 30% vs. controls, respectively). These results suggest that cardiac genes in the infarcted tissue and viable left ventricle following MI are differentially regulated.Keywords
This publication has 30 references indexed in Scilit:
- The myofibroblast in wound healing and fibrocontractive diseasesThe Journal of Pathology, 2003
- Cardioprotection by long-term ETA receptor blockade and ACE inhibition in rats with congestive heart failure: mono- versus combination therapyCardiovascular Research, 2002
- Inducible expression of the regulatory protein kinase CK2β subunit: Incorporation into complexes with catalytic CK2 subunits and re‐examination of the effects of CK2β on cell proliferationJournal of Cellular Biochemistry, 2001
- Prevention of Abnormal Sarcoplasmic Reticulum Calcium Transport and Protein Expression in Post-infarction Heart Failure Using 3,5-Diiodothyropropionic Acid (DITPA)Journal of Molecular and Cellular Cardiology, 2000
- Expression of Gi-2α and Gsα in myofibroblasts localized to the infarct scar in heart failure due to myocardial infarctionCardiovascular Research, 1999
- Ischemia induced activation of heat shock protein 27 kinases and casein kinase 2 in the preconditioned rabbit heartBiochemistry and Cell Biology, 1999
- Differential Alterations in Left and Right Ventricular G-Proteins in Congestive Heart Failure due to Myocardial InfarctionJournal of Molecular and Cellular Cardiology, 1998
- Altered Sarcoplasmic Reticulum Ca2+ATPase Gene Expression in Congestive Heart Failure: Effect of Chronic Norepinephrine InfusionJournal of Molecular and Cellular Cardiology, 1998
- Changes in gene expression in the intact human heart. Downregulation of alpha-myosin heavy chain in hypertrophied, failing ventricular myocardium.Journal of Clinical Investigation, 1997
- Myosin heavy chain gene expression in human heart failure.Journal of Clinical Investigation, 1997