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Hand factors as regulators of cardiac morphogenesis and implications for congenital heart defects
Joshua W Vincentz1, Ralston M Barnes, Anthony B Firulli
1Riley Heart Research Center, Wells Center for Pediatric Research, Division of Pediatric Cardiology, Department of Anatomy, Indiana Medical School, Indianapolis, IN 46202, USA.
Insights
Hand1 and Hand2 transcription factors are crucial for heart development, influencing multiple cell lineages and functions. Understanding their targets is key to linking dysregulation to congenital heart disease.
Area of Science:
- Developmental Biology
- Molecular Biology
- Genetics
Background:
- Basic Helix-Loop-Helix (bHLH) transcription factors Hand1 and Hand2 are vital for cardiac development.
- These factors regulate cardiomyocyte growth, differentiation, morphogenesis, and conduction.
- They also impact the development of the cardiac outflow tract, epicardium, and endocardium.
Purpose of the Study:
- To review the regulation and function of Hand1 and Hand2 in heart development.
- To explore the role of these factors in human congenital heart disease.
- To highlight the importance of identifying direct transcriptional targets.
Main Methods:
- Review of existing literature and animal model studies.
- Analysis of molecular mechanisms including DNA binding and protein interactions.
- Examination of transcriptional, posttranscriptional, and posttranslational regulation.
Main Results:
- Hand factors are essential for multiple cardiac cell lineages and functions.
- Their activity is regulated through complex molecular mechanisms.
- Limited direct transcriptional targets have been confirmed in the heart.
- Recent findings link HAND1 and HAND2 to human congenital heart disease.
Conclusions:
- Hand factors play a critical role in heart development across species.
- Identifying direct targets is crucial for understanding Hand factor mechanisms.
- Dysregulation of Hand factors is implicated in human congenital heart disease.
- Further research is needed to elucidate Hand factor-mediated transcriptional cascades.
Abstract:
Almost 15 years of careful study have established the related basic Helix-Loop-Helix (bHLH) transcription factors Hand1 and Hand2 as critical for heart development across evolution. Hand factors make broad contributions, revealed through animal models, to the development of multiple cellular lineages that ultimately contribute to the heart. They perform critical roles in ventricular cardiomyocyte growth, differentiation, morphogenesis, and conduction. They are also important for the proper development of the cardiac outflow tract, epicardium, and endocardium. Molecularly, they function both through DNA binding and through protein-protein interactions, which are regulated transcriptionally, posttranscriptionally by microRNAs, and posttranslationally through phosphoregulation. Although direct Hand factor transcriptional targets are progressively being identified, confirmed direct targets of Hand factor transcriptional activity in the heart are limited. Identification of these targets will be critical to model the mechanisms by which Hand factor bHLH interactions affect developmental pathways. Improved understanding of Hand factor-mediated transcriptional cascades will be necessary to determine how Hand factor dysregulation translates to human disease phenotypes. This review summarizes the insight that animal models have provided into the regulation and function of these factors during heart development, in addition to the recent findings that suggest roles for HAND1 and HAND2 in human congenital heart disease.
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