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Merck
CN

Angiopoietin-like 2 is essential to aortic valve development in mice.

Communications biology (2022-11-23)
Pauline Labbé, Victoria Munoz Goyette, Nathalie Thorin-Trescases, Louis Villeneuve, Ines Desanlis, Constance Delwarde, Yan-Fen Shi, Cécile Martel, Carol Yu, Azadeh Alikashani, Maya Mamarbachi, Frédéric Lesage, Samuel Mathieu, Jean-Claude Tardif, Patrick Mathieu, Marie Kmita, Éric Thorin
ABSTRACT

Aortic valve (AoV) abnormalities during embryogenesis are a major risk for the development of aortic valve stenosis (AVS) and cardiac events later in life. Here, we identify an unexpected role for Angiopoietin-like 2 (ANGPTL2), a pro-inflammatory protein secreted by senescent cells, in valvulogenesis. At late embryonic stage, mice knocked-down for Angptl2 (Angptl2-KD) exhibit a premature thickening of AoV leaflets associated with a dysregulation of the fine balance between cell apoptosis, senescence and proliferation during AoV remodeling and a decrease in the crucial Notch signalling. These structural and molecular abnormalities lead toward spontaneous AVS with elevated trans-aortic gradient in adult mice of both sexes. Consistently, ANGPTL2 expression is detected in human fetal semilunar valves and associated with pathways involved in cell cycle and senescence. Altogether, these findings suggest that Angptl2 is essential for valvulogenesis, and identify Angptl2-KD mice as an animal model to study spontaneous AVS, a disease with unmet medical need.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Anti-Integrin α5β1 Antibody, clone BMB5, ascites fluid, clone BMB5, Chemicon®
Roche
Anti-Digoxigenin-AP, Fab fragments, from sheep
Sigma-Aldrich
Anti-Actin, α-Smooth Muscle antibody, Mouse monoclonal, clone 1A4, purified from hybridoma cell culture