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PMID: 9915771 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Modulation of cytokine-induced cardiac myocyte apoptosis by nitric oxide, Bak, and Bcl-x.

Circulation research ·Vol. 84 ·No. 1 ·1999-00-00 ·Pages 21-33

Ing DJ, Zang J, Dzau VJ, Webster KA, Bishopric NH

Abstract

-Cytokine-induced NO production depresses myocardial contractility and has been shown to be cytotoxic to cardiac myocytes. However, the mechanisms of cytokine-induced cardiac myocyte cell death are unclear. To analyze these mechanisms in detail, we treated neonatal cardiac myocytes in serum-free culture with a combination of the macrophage-derived cytokines interleukin-1beta, tumor necrosis factor-alpha, and interferon-gamma. These cytokines caused a time-dependent induction of cardiac myocyte apoptosis, but not necrosis, beginning 72 hours after treatment, as determined by nuclear morphology, DNA internucleosomal cleavage, and cleavage of poly(ADP-ribose) polymerase, reflecting caspase activation. Apoptosis was preceded by a >50-fold induction of inducible NO synthase mRNA and the release of large amounts (5 to 8 nmol/ microgram protein) of NO metabolites (NOx) into the medium. Cell death was completely blocked by an NO synthase inhibitor and attenuated by antioxidants (N-acetylcysteine and DTT) and the caspase inhibitor ZVAD-fmk. Cytokines also mediated an NO-dependent, sustained increase in myocyte expression of the Bcl-2 homologs Bak and Bcl-x(L). The NO donor S-nitrosoglutathione also induced apoptosis and cell levels of Bak, but not of Bcl-x(L). All effects of cytokines, including poly(ADP-ribose) polymerase cleavage, could be attributed to interleukin-1beta; interferon-gamma and tumor necrosis factor-alpha had no independent effects on apoptosis or on NOx production. We conclude that cytokine toxicity to neonatal cardiac myocytes results from the induction of NO and subsequent activation of apoptosis, at least in part through the generation of oxygen free radicals. The rate and extent of this apoptosis is modulated by alterations in the cellular balance of Bak and Bcl-x(L), which respond differentially to cytokine-induced and exogenous NO and by the availability of oxidant species.

MeSH Terms
Animals Animals, Newborn Apoptosis/drug effects,physiology Cells, Cultured Cytokines/pharmacology DNA Fragmentation Heart/drug effects,physiology Humans Interferon-gamma/pharmacology Interleukin-1/pharmacology Kinetics Membrane Proteins/genetics,metabolism Myocardium/cytology Nitric Oxide/physiology Poly(ADP-ribose) Polymerases/metabolism Proto-Oncogene Proteins c-bcl-2/genetics,metabolism Rats Recombinant Proteins/metabolism,pharmacology Transfection Tumor Necrosis Factor-alpha/pharmacology bcl-2 Homologous Antagonist-Killer Protein bcl-X Protein
Chemicals
BAK1 protein, human BCL2L1 protein, human Bak1 protein, rat Bcl2l1 protein, rat Cytokines Interleukin-1 Membrane Proteins Proto-Oncogene Proteins c-bcl-2 Recombinant Proteins Tumor Necrosis Factor-alpha bcl-2 Homologous Antagonist-Killer Protein bcl-X Protein Nitric Oxide Interferon-gamma Poly(ADP-ribose) Polymerases
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Ing D J
Departments of Molecular and Cellular Pharmacology and Medicine, University of Miami School of Medicine, Miami, Florida, USA. Medicine,
Zang J
Dzau V J
Webster K A
Bishopric N H
Article Info
Journal
Circulation research
Abbr.
Circ Res
ISSN
0009-7330
Published
1999-00-00
Pages
21-33
Language
English
Region
United States
NLM ID
0047103
Subset
IM
Grants
NHLBI NIH HHS · HL44578 · United States
NHLBI NIH HHS · HL49891 · United States
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