Literature DB >> 26188246

Cadherin-11 coordinates cellular migration and extracellular matrix remodeling during aortic valve maturation.

Caitlin J Bowen1, Jingjing Zhou1, Derek C Sung1, Jonathan T Butcher2.   

Abstract

Proper remodeling of the endocardial cushions into thin fibrous valves is essential for gestational progression and long-term function. This process involves dynamic interactions between resident cells and their local environment, much of which is not understood. In this study, we show that deficiency of the cell-cell adhesion protein cadherin-11 (Cad-11) results in significant embryonic and perinatal lethality primarily due to valve related cardiac dysfunction. While endocardial to mesenchymal transformation is not abrogated, mesenchymal cells do not homogeneously cellularize the cushions. These cushions remain thickened with disorganized ECM, resulting in pronounced aortic valve insufficiency. Mice that survive to adulthood maintain thickened and stenotic semilunar valves, but interestingly do not develop calcification. Cad-11 (-/-) aortic valve leaflets contained reduced Sox9 activity, β1 integrin expression, and RhoA-GTP activity, suggesting that remodeling defects are due to improper migration and/or cellular contraction. Cad-11 deletion or siRNA knockdown reduced migration, eliminated collective migration, and impaired 3D matrix compaction by aortic valve interstitial cells (VIC). Cad-11 depleted cells in culture contained few filopodia, stress fibers, or contact inhibited locomotion. Transfection of Cad-11 depleted cells with constitutively active RhoA restored cell phenotypes. Together, these results identify cadherin-11 mediated adhesive signaling for proper remodeling of the embryonic semilunar valves.
Copyright © 2015 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Aortic valve insufficiency; Calcification; Compaction; Congenital heart defect; Filopodia; Hyperplasia; RhoA; Stress fiber

Mesh:

Substances:

Year:  2015        PMID: 26188246      PMCID: PMC4841269          DOI: 10.1016/j.ydbio.2015.07.012

Source DB:  PubMed          Journal:  Dev Biol        ISSN: 0012-1606            Impact factor:   3.582


  72 in total

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