Related Experiment Video
Updated: Jun 20, 2026

Transverse Aortic Constriction in Mice
Published on: April 21, 2010
Cdc42 is an antihypertrophic molecular switch in the mouse heart
Marjorie Maillet1, Jeffrey M Lynch, Bastiano Sanna
1Department of Pediatrics, Division of Molecular Cardiovascular Biology, University of Cincinnati, and Experimental Hematology and Cancer Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio, USA.
Abstract:
To improve contractile function, the myocardium undergoes hypertrophic growth without myocyte proliferation in response to both pathologic and physiologic stimulation. Various membrane-bound receptors and intermediate signal transduction pathways regulate the induction of cardiac hypertrophy, but the cardioprotective regulatory pathways or effectors that antagonize cardiac hypertrophy remain poorly understood. Here we identify the small GTPase Cdc42 as a signaling intermediate that restrained the cardiac growth response to physiologic and pathologic stimuli. Cdc42 was specifically activated in the heart after pressure overload and in cultured cardiomyocytes by multiple agonists. Mice with a heart-specific deletion of Cdc42 developed greater cardiac hypertrophy at 2 and 8 weeks of stimulation and transitioned more quickly into heart failure than did wild-type controls. These mice also displayed greater cardiac hypertrophy in response to neuroendocrine agonist infusion for 2 weeks and, more remarkably, enhanced exercise-induced hypertrophy and sudden death. These pathologies were associated with an inability to activate JNK following stimulation through a MEKK1/MKK4/MKK7 pathway, resulting in greater cardiac nuclear factor of activated T cells (NFAT) activity. Restoration of cardiac JNK signaling with an Mkk7 heart-specific transgene reversed the enhanced growth effect. These results identify what we believe to be a novel antihypertrophic and protective cardiac signaling pathway, whereby Cdc42-dependent JNK activation antagonizes calcineurin-NFAT activity to reduce hypertrophy and prevent transition to heart failure.
Insights
The small GTPase Cdc42 restrains cardiac hypertrophy. Loss of Cdc42 accelerates heart failure by impairing JNK signaling and increasing NFAT activity, revealing a novel protective pathway.
Area of Science:
- Cardiovascular Biology
- Molecular Cardiology
- Cell Signaling
Background:
- Cardiac hypertrophy is a response to stress, but protective pathways are unclear.
- Understanding regulators of cardiac growth is crucial for preventing heart failure.
Purpose of the Study:
- To identify novel signaling pathways that antagonize cardiac hypertrophy.
- To investigate the role of Cdc42 in regulating cardiac growth and function.
Main Methods:
- Utilized a heart-specific Cdc42 deletion mouse model.
- Stimulated cardiac hypertrophy via pressure overload and neuroendocrine agonists.
- Assessed cardiac function, hypertrophy markers, and signaling pathways (JNK, NFAT).
Main Results:
- Cdc42 deletion exacerbated cardiac hypertrophy and accelerated heart failure progression.
- Loss of Cdc42 impaired JNK activation and increased NFAT activity.
- Restoring JNK signaling ameliorated hypertrophy in Cdc42-deficient hearts.
Conclusions:
- Cdc42 acts as a critical antihypertrophic regulator in the heart.
- Cdc42-dependent JNK activation antagonizes calcineurin-NFAT signaling to prevent heart failure.
- Identified a novel protective cardiac signaling pathway involving Cdc42 and JNK.
