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PMID: 12649263 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Myocytes die by multiple mechanisms in failing human hearts.

Circulation research ·Vol. 92 ·No. 7 ·2003-04-18 ·Pages 715-24

Kostin S, Pool L, Elsässer A, Hein S, Drexler HC, Arnon E, Hayakawa Y, Zimmermann R, Bauer E, Klövekorn WP, Schaper J

Abstract

We tested the hypothesis that myocyte loss in failing human hearts occurs by different mechanisms: apoptosis, oncosis, and autophagic cell death. Explanted hearts from 19 patients with idiopathic dilated cardiomyopathy (EF< or =20%) and 7 control hearts were analyzed. Myocyte apoptosis revealed by caspase-3 activation and TUNEL staining occurred at a rate of 0.002+/-0.0005% (P<0.05 versus control) and oncosis assessed by complement 9 labeling at 0.06+/-0.001% (P<0.05). Cellular degeneration including appearance of ubiquitin containing autophagic vacuoles and nuclear disintegration was present at the ultrastructural level. Nuclear and cytosolic ubiquitin/protein accumulations occurred at 0.08+/-0.004% (P<0.05). The ubiquitin-activating enzyme E1 and the ligase E3 were not different from control. In contrast, ubiquitin mRNA levels were 1.8-fold (P<0.02) elevated, and the conjugating enzyme E2 was 2.3-fold upregulated (P<0.005). The most important finding, however, is the 2.3-fold downregulation of the deubiquitination enzyme isopeptidase-T and the 1.5-fold reduction of the ubiquitin-fusion degradation system-1, which in conjunction with unchanged proteasomal subunit levels and proteasomal activity results in massive storage of ubiquitin/protein complexes and in autophagic cell death. A 2-fold decrease of cathepsin D might be an additional factor responsible for the accumulation of ubiquitin/protein conjugates. It is concluded that in human failing hearts apoptosis, oncosis, and autophagy act in parallel to varying degrees. A disturbed balance between a high rate of ubiquitination and inadequate degradation of ubiquitin/protein conjugates may contribute to autophagic cell death. Together, these different types of cell death play a significant role for myocyte disappearance and the development of contractile dysfunction in failing hearts.

MeSH Terms
Apoptosis Autophagy Blotting, Western Carbon-Nitrogen Lyases/metabolism Cardiomyopathy, Dilated/metabolism,pathology Cathepsin D/metabolism Cysteine Endopeptidases/metabolism Humans In Situ Nick-End Labeling Ligases/metabolism Microscopy, Confocal Microscopy, Immunoelectron Multienzyme Complexes/metabolism Myocytes, Cardiac/metabolism,pathology,ultrastructure Necrosis Proteasome Endopeptidase Complex Ubiquitin/metabolism Ubiquitin-Activating Enzymes Ubiquitin-Conjugating Enzymes Ubiquitin-Protein Ligases
Chemicals
Multienzyme Complexes Ubiquitin Ubiquitin-Conjugating Enzymes Ubiquitin-Protein Ligases Cysteine Endopeptidases Cathepsin D Proteasome Endopeptidase Complex Carbon-Nitrogen Lyases isopeptidase Ligases Ubiquitin-Activating Enzymes
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Kostin Sawa
Max-Planck-Institute, Department of Experimental Cardiology, Benekestr 2D-61231 Bad Nauheim, Germany. skostin@kerckhoff.mpg.de
Pool Lieven
Elsässer Albrecht
Hein Stefan
Drexler Hannes C A
Arnon Eyal
Hayakawa Yukihiro
Zimmermann René
Bauer Erwin
Klövekorn Wolf-Peter
Schaper Jutta
Article Info
Journal
Circulation research
Abbr.
Circ Res
ISSN
1524-4571
Published
2003-04-18
Epub
2003-00-20
Pages
715-24
Language
English
Region
United States
NLM ID
0047103
Subset
IM
Corrections
CommentIn
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