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Published on: June 3, 2018
Autocrine Signaling in Cardiac Remodeling: A Rich Source of Therapeutic Targets
Vincent F M Segers1,2, Gilles W De Keulenaer1,3
1Laboratory of Physiopharmacology University of Antwerp Belgium.
Abstract:
The myocardium consists of different cell types, of which endothelial cells, cardiomyocytes, and fibroblasts are the most abundant. Communication between these different cell types, also called paracrine signaling, is essential for normal cardiac function, but also important in cardiac remodeling and heart failure. Systematic studies on the expression of ligands and their corresponding receptors in different cell types showed that for 60% of the expressed ligands in a particular cell, the receptor is also expressed. The fact that many ligand-receptor pairs are present in most cells, including the major cell types in the heart, indicates that autocrine signaling is a widespread phenomenon. Autocrine signaling in cardiac remodeling and heart failure is involved in all pathophysiological mechanisms generally observed: hypertrophy, fibrosis, angiogenesis, cell survival, and inflammation. Herein, we review ligand-receptor pairs present in the major cardiac cell types based on RNA-sequencing expression databases, and we review current literature on extracellular signaling proteins with an autocrine function in the heart; these include C-type natriuretic peptide, fibroblast growth factors 2, F21, and 23, macrophage migration inhibitory factor, heparin binding-epidermal growth factor, angiopoietin-like protein 2, leptin, adiponectin, follistatin-like 1, apelin, neuregulin 1, vascular endothelial growth factor, transforming growth factor β, wingless-type integration site family, member 1-induced secreted protein-1, interleukin 11, connective tissue growth factor/cellular communication network factor, and calcitonin gene‒related peptide. The large number of autocrine signaling factors that have been studied in the literature supports the concept that autocrine signaling is an essential part of myocardial biology and disease.
Insights
Autocrine signaling, where cells signal themselves, is crucial for heart function and disease. This review highlights numerous autocrine factors involved in cardiac remodeling and heart failure, emphasizing their essential role.
Area of Science:
- Cardiovascular Biology
- Cell Signaling
- Molecular Medicine
Background:
- The myocardium comprises diverse cell types, including endothelial cells, cardiomyocytes, and fibroblasts.
- Paracrine signaling between these cells is vital for normal cardiac function and pathological processes like heart failure.
- Widespread ligand-receptor co-expression suggests autocrine signaling is prevalent in cardiac cells.
Purpose of the Study:
- To review ligand-receptor pairs in major cardiac cell types using RNA-sequencing data.
- To explore extracellular signaling proteins with autocrine functions in the heart.
- To consolidate understanding of autocrine signaling's role in myocardial biology and disease.
Main Methods:
- Analysis of RNA-sequencing expression databases for cardiac cell types.
- Literature review of extracellular signaling proteins with autocrine functions in the heart.
- Identification of key ligand-receptor pairs and autocrine factors in cardiac remodeling and heart failure.
Main Results:
- A significant percentage of expressed ligands in cardiac cells also have their receptors expressed within the same cell.
- Numerous autocrine signaling factors are implicated in cardiac hypertrophy, fibrosis, angiogenesis, cell survival, and inflammation.
- Specific examples of autocrine factors include FGF23, HB-EGF, VEGF, and TGF-β, among others.
Conclusions:
- Autocrine signaling is a widespread and fundamental mechanism in myocardial biology.
- Autocrine signaling plays a critical role in the pathophysiology of cardiac remodeling and heart failure.
- The extensive literature on autocrine factors underscores their importance in maintaining cardiac health and disease progression.
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