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Neddylation mediates ventricular chamber maturation through repression of Hippo signaling
Jianqiu Zou1, Wenxia Ma1, Jie Li1
1Vascular Biology Center, Medical College of Georgia, Augusta University, Augusta, GA 30912.
Insights
Neddylation is vital for heart development, controlling cardiomyocyte proliferation and ventricular maturation. Disrupting this process causes heart failure and noncompaction by affecting Hippo-YAP signaling.
Area of Science:
- Cardiovascular Biology
- Molecular Mechanisms of Development
- Posttranslational Modifications
Background:
- Ventricular chamber maturation is critical for a functional heart, but defects cause cardiomyopathy and heart failure.
- Molecular pathways governing heart development are not fully understood.
- Neddylation, a posttranslational modification involving NEDD8 conjugation, is essential in cellular processes.
Purpose of the Study:
- To investigate the role of neddylation in cardiac development and ventricular chamber maturation.
- To elucidate the molecular mechanisms linking neddylation to cardiomyocyte proliferation and heart development.
Main Methods:
- Generated cardiomyocyte-specific NAE1 knockout mice to study neddylation's role.
- Analyzed cardiac development, protein neddylation levels, and cardiomyocyte proliferation.
- Investigated the Hippo-YAP signaling pathway and its regulation by neddylation.
Main Results:
- Cardiomyocyte-specific NAE1 knockout led to myocardial hypoplasia, ventricular noncompaction, and perinatal lethality.
- NAE1 deletion blocked cardiomyocyte proliferation by accumulating Hippo kinases (Mst1, LATS1/2) and inactivating YAP.
- Neddylation regulates Mst1/LATS2 degradation via Cullin 7, a NEDD8 substrate, thereby controlling YAP signaling.
Conclusions:
- Neddylation is essential for temporal regulation during heart development.
- The neddylation-Cullin 7-Mst1-YAP axis is a key regulator of cardiomyocyte proliferation and ventricular maturation.
- Defects in this pathway contribute to congenital heart defects like noncompaction cardiomyopathy.
Abstract:
During development, ventricular chamber maturation is a crucial step in the formation of a functionally competent postnatal heart. Defects in this process can lead to left ventricular noncompaction cardiomyopathy and heart failure. However, molecular mechanisms underlying ventricular chamber development remain incompletely understood. Neddylation is a posttranslational modification that attaches ubiquitin-like protein NEDD8 to protein targets via NEDD8-specific E1-E2-E3 enzymes. Here, we report that neddylation is temporally regulated in the heart and plays a key role in cardiac development. Cardiomyocyte-specific knockout of NAE1, a subunit of the E1 neddylation activating enzyme, significantly decreased neddylated proteins in the heart. Mice lacking NAE1 developed myocardial hypoplasia, ventricular noncompaction, and heart failure at late gestation, which led to perinatal lethality. NAE1 deletion resulted in dysregulation of cell cycle-regulatory genes and blockade of cardiomyocyte proliferation in vivo and in vitro, which was accompanied by the accumulation of the Hippo kinases Mst1 and LATS1/2 and the inactivation of the YAP pathway. Furthermore, reactivation of YAP signaling in NAE1-inactivated cardiomyocytes restored cell proliferation, and YAP-deficient hearts displayed a noncompaction phenotype, supporting an important role of Hippo-YAP signaling in NAE1-depleted hearts. Mechanistically, we found that neddylation regulates Mst1 and LATS2 degradation and that Cullin 7, a NEDD8 substrate, acts as the ubiquitin ligase of Mst1 to enable YAP signaling and cardiomyocyte proliferation. Together, these findings demonstrate a role for neddylation in heart development and, more specifically, in the maturation of ventricular chambers and also identify the NEDD8 substrate Cullin 7 as a regulator of Hippo-YAP signaling.
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