Desmin loss and mitochondrial damage precede left ventricular systolic failure in volume overload heart failure

Author:

Guichard Jason L.12,Rogowski Michael13,Agnetti Giulio45,Fu Lianwu6,Powell Pamela7,Wei Chih-Chang27,Collawn James6,Dell’Italia Louis J.127

Affiliation:

1. Department of Medicine, Division of Cardiovascular Disease, University of Alabama at Birmingham, Birmingham, Alabama;

2. Center for Heart Failure Research, University of Alabama at Birmingham, Birmingham, Alabama;

3. Center for Exercise Medicine, University of Alabama at Birmingham, Birmingham, Alabama;

4. Division of Cardiology, Department of Medicine, Johns Hopkins School of Medicine, Baltimore, Maryland;

5. Department of Biomedical and Neuromotor Sciences, University of Bologna, Bologna, Italy; and

6. Department of Cell, Developmental, and Integrative Biology, University of Alabama at Birmingham, Birmingham, Alabama;

7. Department of Veterans Affairs Medical Center, Birmingham, Alabama

Abstract

Heart failure due to chronic volume overload (VO) in rats and humans is characterized by disorganization of the cardiomyocyte desmin/mitochondrial network. Here, we tested the hypothesis that desmin breakdown is an early and continuous process throughout VO. Male Sprague-Dawley rats had aortocaval fistula (ACF) or sham surgery and were examined 24 h and 4 and 12 wk later. Desmin/mitochondrial ultrastructure was examined by transmission electron microscopy (TEM) and immunohistochemistry (IHC). Protein and kinome analysis were performed in isolated cardiomyocytes, and desmin cleavage was assessed by mass spectrometry in left ventricular (LV) tissue. Echocardiography demonstrated a 40% decrease in the LV mass-to-volume ratio with spherical remodeling at 4 wk with ACF and LV systolic dysfunction at 12 wk. Starting at 24 h and continuing to 4 and 12 wk, with ACF there is TEM evidence of extensive mitochondrial clustering, IHC evidence of disorganization associated with desmin breakdown, and desmin protein cleavage verified by Western blot analysis and mass spectrometry. IHC results revealed that ACF cardiomyocytes at 4 and 12 wk had perinuclear translocation of αB-crystallin from the Z disk with increased α, β-unsaturated aldehyde 4-hydroxynonelal. Use of protein markers with verification by TUNEL staining and kinome analysis revealed an absence of cardiomyocyte apoptosis at 4 and 12 wk of ACF. Significant increases in protein indicators of mitophagy were countered by a sixfold increase in p62/sequestosome-1, which is indicative of an inability to complete autophagy. An early and continuous disruption of the desmin/mitochondrial architecture, accompanied by oxidative stress and inhibition of apoptosis and mitophagy, suggests its causal role in LV dilatation and systolic dysfunction in VO. NEW & NOTEWORTHY This study provides new evidence of early onset (24 h) and continuous (4−12 wk) desmin misarrangement and disruption of the normal sarcomeric and mitochondrial architecture throughout the progression of volume overload heart failure, suggesting a causal link between desmin cleavage and mitochondrial disorganization and damage.

Funder

U.S. Department of Veterans Affairs (VA)

American Heart Association (AHA)

HHS | NIH | National Heart, Lung, and Blood Institute (NHBLI)

Magic that Matters Foundation

HHS | NIH | NICHD | National Center for Medical Rehabilitation Research (NCMRR)

Publisher

American Physiological Society

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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