Developmental basis for filamin-A-associated myxomatous mitral valve disease
Cardiovascular Research

Abstract
We hypothesized that the structure and function of the mature valves is largely dependent upon how these tissues are built during development, and defects in how the valves are built can lead to the pathological progression of a disease phenotype. Thus, we sought to uncover potential developmental origins and mechanistic underpinnings causal to myxomatous mitral valve disease. We focus on how filamin-A, a cytoskeletal binding protein with strong links to human myxomatous valve disease, can function as a regulatory interface to control proper mitral valve development.
Filamin-A-deficient mice exhibit abnormally enlarged mitral valves during foetal life, which progresses to a myxomatous phenotype by 2 months of age. Through expression studies,
These findings illustrate a molecular mechanism by which valve interstitial cells, through a serotonin, TG, and filamin-A pathway, regulate matrix organization during foetal valve development. Additionally, these data indicate that disrupting key regulatory interactions during valve development can set the stage for the generation of postnatal myxomatous valve disease.
Contributors

Kimberly Sauls
Author

Annemarieke de Vlaming
Author

Brett S. Harris
Author

Katherine Williams
Author

Andy Wessels
Author

Robert A. Levine
Author

Susan A. Slaugenhaupt
Author

Richard L. Goodwin
Author

Luigi Michele Pavone
Author

Jean Merot
Author

Jean-Jacques Schott
Author

Thierry Le Tourneau
Author

Thomas Dix
Author

Sean Jesinkey
Author

Yuanyi Feng
Author

Christopher Walsh
Author

Bin Zhou
Author

Scott Baldwin
Author

Roger R. Markwald
Author

