Related Experiment Video
Updated: Feb 4, 2026

Protein Isolation from the Developing Embryonic Mouse Heart Valve Region
Published on: September 23, 2014
Filamin-A as a Balance between Erk/Smad Activities During Cardiac Valve Development
Katelynn Toomer1, Kimberly Sauls1, Diana Fulmer1
1Cardiovascular Developmental Biology Center, Department of Regenerative Medicine and Cell Biology, College of Medicine, Children's Research Institute, Medical University of South Carolina, Charleston, South Carolina.
Abstract:
Mitral valve prolapse (MVP) affects 2.4% of the population and has poorly understood etiology. Recent genetic studies have begun to unravel the complexities of MVP and through these efforts, mutations in the FLNA (Filamin-A) gene were identified as disease causing. Our in vivo and in vitro studies have validated these genetic findings and have revealed FLNA as a central regulator of valve morphogenesis. The mechanisms by which FLNA mutations result in myxomatous mitral valve disease are currently unknown, but may involve proteins previously associated with mutated regions of the FLNA protein, such as the small GTPase signaling protein, R-Ras. Herein, we report that Filamin-A is required for R-Ras expression and activation of the Ras-Mek-Erk pathway. Loss of the Ras/Erk pathway correlated with hyperactivation of pSmad2/3, increased extracellular matrix (ECM) production and enlarged mitral valves. Analyses of integrin receptors in the mitral valve revealed that Filamin-A was required for β1-integrin expression and provided a potential mechanism for impaired ECM compaction and valve enlargement. Our data support Filamin-A as a protein that regulates the balance between Erk and Smad activation and an inability of Filamin-A deficient valve interstitial cells to effectively remodel the increased ECM production through a β1-integrin mechanism. As a consequence, loss of Filamin-A function results in increased ECM production and generation of a myxomatous phenotype characterized by improperly compacted mitral valve tissue. Anat Rec, 302:117-124, 2019. © 2018 Wiley Periodicals, Inc.
Insights
Filamin-A protein is crucial for mitral valve development. Its deficiency disrupts R-Ras signaling and extracellular matrix remodeling, leading to myxomatous mitral valve disease.
Area of Science:
- Cardiovascular Biology
- Molecular Genetics
- Developmental Biology
Background:
- Mitral valve prolapse (MVP) affects 2.4% of the population with unclear causes.
- Genetic studies identified mutations in the Filamin-A (FLNA) gene as causative for MVP.
- FLNA is implicated in valve morphogenesis, but the precise mechanisms are unknown.
Purpose of the Study:
- To investigate the role of Filamin-A in mitral valve development and the mechanisms underlying FLNA-associated myxomatous mitral valve disease.
- To explore the relationship between FLNA, R-Ras signaling, and extracellular matrix production in mitral valve interstitial cells.
Main Methods:
- In vivo and in vitro studies using genetic models of FLNA deficiency.
- Analysis of the Ras-Mek-Erk and pSmad2/3 signaling pathways.
- Assessment of extracellular matrix (ECM) production and integrin receptor expression (β1-integrin).
Main Results:
- Filamin-A is essential for R-Ras expression and activation of the Ras-Mek-Erk pathway.
- Loss of FLNA leads to Erk pathway inhibition, pSmad2/3 hyperactivation, increased ECM production, and enlarged mitral valves.
- Filamin-A is required for β1-integrin expression, impacting ECM compaction and contributing to the myxomatous phenotype.
Conclusions:
- Filamin-A regulates the balance between Erk and Smad signaling pathways in mitral valve interstitial cells.
- FLNA deficiency impairs ECM remodeling via a β1-integrin-dependent mechanism, resulting in excessive ECM accumulation and myxomatous valve disease.
Related Concept Videos
Balancing Redox Equations
Heart Valves
The AV valves prevent the backflow of blood from the ventricles to the atria during ventricular contraction. These valves function with the assistance of the chordae tendineae and papillary muscles. When the ventricles are relaxed, the chordae tendineae are slack, allowing blood to flow from the atria into the...
Equilibrium and Balance
Energy Balance
Respiratory Regulation of Acid-Base Balance
When carbon dioxide levels increase in the blood, more H+ and HCO3⁻ are...
Disorder of Water Balance
Dehydration
Dehydration occurs when the body loses fluids (particularly water).
Causes:
The major causes of dehydration include excessive sweating, fever, vomiting, diarrhea, and diuresis.
Signs and Symptoms:
Symptoms primarily include intense...

