Galectin-3 deficiency ameliorates fibrosis and remodeling in dilated cardiomyopathy mice with enhanced Mst1 signaling.


Journal

American journal of physiology. Heart and circulatory physiology
ISSN: 1522-1539
Titre abrégé: Am J Physiol Heart Circ Physiol
Pays: United States
ID NLM: 100901228

Informations de publication

Date de publication:
01 01 2019
Historique:
pubmed: 6 11 2018
medline: 15 11 2019
entrez: 3 11 2018
Statut: ppublish

Résumé

Dilated cardiomyopathy (DCM) is a major cause of heart failure without effective therapy. Fibrogenesis plays a key role in the development of DCM, but little is known of the expression of the profibrotic factor galectin-3 (Gal-3) and its role in DCM pathophysiology. In a mouse DCM model with transgenic (TG) overexpression of mammalian sterile 20-like kinase 1 (Mst1), we studied Gal-3 expression and effects of the Gal-3 inhibitor modified citrus pectin (MCP) or Gal-3 gene knockout (KO). Gal-3 deletion in TG mice (TG/KO) was achieved by crossbreeding Mst1-TG mice with Gal-3 KO mice. The DCM phenotype was assessed by echocardiography and micromanometry. Cardiac expression of Gal-3 and fibrosis were determined. The cardiac transcriptome was profiled by RNA sequencing. Mst1-TG mice at 3-8 mo of age exhibited upregulated expression of Gal-3 by ~40-fold. TG mice had dilatation of cardiac chambers, suppressed left ventricular (LV) ejection fraction, poor LV contractility and relaxation, a threefold increase in LV collagen content, and upregulated fibrotic genes. Four-month treatment with MCP showed no beneficial effects. Gal-3 deletion in Mst1-TG mice attenuated chamber dilatation, organ congestion, and fibrogenesis. RNA sequencing identified profound disturbances by Mst1 overexpression in the cardiac transcriptome, which largely remained in TG/KO hearts. Gal-3 deletion in Mst1-TG mice, however, partially reversed the dysregulated transcriptional signaling involving extracellular matrix remodeling and collagen formation. We conclude that cardiac Mst1 activation leads to marked Gal-3 upregulation and transcriptome disturbances in the heart. Gal-3 deficiency attenuated cardiac remodeling and fibrotic signaling. NEW & NOTEWORTHY We found in a transgenic mouse dilated cardiomyopathy (DCM) model a pronounced upregulation of galectin-3 in cardiomyocytes. Galectin-3 gene deletion reduced cardiac fibrosis and fibrotic gene profiles and ameliorated cardiac remodeling and dysfunction. These benefits of galectin-3 deletion were in contrast to the lack of effect of treatment with the galectin-3 inhibitor modified citrus pectin. Our study suggests that suppression of galectin-3 mRNA expression could be used to treat DCM with high cardiac galectin-3 content.

Identifiants

pubmed: 30387702
doi: 10.1152/ajpheart.00609.2018
doi:

Substances chimiques

Galectin 3 0
Proto-Oncogene Proteins 0
macrophage stimulating protein 0
Hepatocyte Growth Factor 67256-21-7
Collagen 9007-34-5

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

H45-H60

Commentaires et corrections

Type : CommentIn
Type : CommentIn
Type : CommentIn

Auteurs

My-Nhan Nguyen (MN)

Baker Heart and Diabetes Institute , Melbourne, Victoria , Australia.
Central Clinical School, Monash University , Melbourne, Victoria , Australia.

Mark Ziemann (M)

Department of Diabetes, Monash University , Melbourne, Victoria , Australia.

Helen Kiriazis (H)

Baker Heart and Diabetes Institute , Melbourne, Victoria , Australia.

Yidan Su (Y)

Baker Heart and Diabetes Institute , Melbourne, Victoria , Australia.

Zara Thomas (Z)

Baker Heart and Diabetes Institute , Melbourne, Victoria , Australia.

Qun Lu (Q)

Baker Heart and Diabetes Institute , Melbourne, Victoria , Australia.
Health Science Center, Xian Jiaotong University , Xian , People's Republic of China.

Daniel G Donner (DG)

Baker Heart and Diabetes Institute , Melbourne, Victoria , Australia.

Wei-Bo Zhao (WB)

Baker Heart and Diabetes Institute , Melbourne, Victoria , Australia.

Haloom Rafehi (H)

Department of Diabetes, Monash University , Melbourne, Victoria , Australia.

Junichi Sadoshima (J)

Department of Cell Biology and Molecular Medicine, Rutgers New Jersey Medical School , Newark, New Jersey.

Julie R McMullen (JR)

Baker Heart and Diabetes Institute , Melbourne, Victoria , Australia.
Central Clinical School, Monash University , Melbourne, Victoria , Australia.

Assam El-Osta (A)

Department of Diabetes, Monash University , Melbourne, Victoria , Australia.
Prince of Wales Hospital, The Chinese University of Hong Kong , Shatin, Hong Kong Special Administrative Region , People's Republic of China.

Xiao-Jun Du (XJ)

Baker Heart and Diabetes Institute , Melbourne, Victoria , Australia.
Central Clinical School, Monash University , Melbourne, Victoria , Australia.
Health Science Center, Xian Jiaotong University , Xian , People's Republic of China.

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Classifications MeSH