Abstract
Cardiac failure is a frequent cause of death in the aging human population. Telomere attrition occurs with age, and is proposed to be causal for the aging process. To determine whether telomere shortening leads to a cardiac phenotype, we studied heart function in the telomerase knockout mouse, Terc-/-. We studied Terc-/- mice at the second, G2, and fifth, G5, generation. Telomere shortening in G2 and G5 Terc-/- mice was coupled with attenuation in cardiac myocyte proliferation, increased apoptosis and cardiac myocyte hypertrophy. On a single-cell basis, telomere shortening was coincidental with increased expression of p53, indicating the presence of dysfunctional telomeres in cardiac myocytes from G5 Terc-/- mice. The impairment in cell division, the enhanced cardiac myocyte death and cellular hypertrophy, are concomitant with ventricular dilation, thinning of the wall and cardiac dysfunction. Thus, inhibition of cardiac myocyte replication provoked by telomere shortening, results in de-compensated eccentric hypertrophy and heart failure in mice. Telomere shortening with age could also contribute to cardiac failure in humans, opening the possibility for new therapies.
MeSH Terms
Animals
Cells, Cultured
Disease Models, Animal
Gene Expression Regulation
Genes, p53
Heart/physiology,physiopathology
Heart Failure/genetics
Humans
Mice
Mice, Knockout
Muscle Cells/cytology,physiology
Telomerase/deficiency,genetics,metabolism
Telomere/genetics,ultrastructure
Tumor Suppressor Protein p53/genetics
Vasodilation/genetics
Chemicals
Tumor Suppressor Protein p53
Telomerase
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Leri Annarosa
Department of Medicine, Cardiovascular Research Institute, New York Medical College, Valhalla, NY 10595, USA.
Franco Sonia
Zacheo Antonella
Barlucchi Laura
Chimenti Stefano
Limana Federica
Nadal-Ginard Bernardo
Kajstura Jan
Anversa Piero
Blasco María A
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