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Evaluation of Planar-Cell-Polarity Phenotypes in Ciliopathy Mouse Mutant Cochlea
Published on: February 21, 2016
Role of cilia in structural birth defects: insights from ciliopathy mutant mouse models
Rama Rao Damerla1, George C Gabriel, You Li
1Department of Developmental Biology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania.
Insights
Structural birth defects (SBDs) are often linked to ciliopathies, diseases affecting cilia. Our research highlights the critical role of cilia in SBD and congenital heart disease (CHD) development using mouse models.
Area of Science:
- Developmental Biology
- Genetics
- Cell Biology
Background:
- Structural birth defects (SBDs) contribute significantly to newborn morbidity and mortality.
- Ciliopathies, arising from disrupted cilia, are linked to a broad range of SBDs, indicating cilia's central role in pathogenesis.
- Advances in next-generation sequencing have rapidly expanded knowledge of the genetic causes of ciliopathies.
Purpose of the Study:
- To investigate the role of cilia in the pathogenesis of SBDs and congenital heart disease (CHD).
- To identify novel genetic factors contributing to SBDs and CHD through a mouse mutagenesis screen.
- To develop new mouse models for studying human ciliopathies and related developmental anomalies.
Main Methods:
- Utilized a mouse mutagenesis screen focused on congenital heart disease (CHD) using noninvasive fetal echocardiography.
- Analyzed genetic mutations associated with cilia structure and function in identified SBD and CHD models.
- Leveraged findings from large-scale mouse forward genetic screens for developmental phenotypes.
Main Results:
- The screen identified a significant enrichment of pathogenic mutations in genes critical for motile and primary cilia function.
- These findings underscore the involvement of cilia in diverse developmental anomalies.
- Novel mutant mouse models were generated for studying ciliopathies and SBDs.
Conclusions:
- The cilium plays a fundamental role in the pathogenesis of a wide spectrum of SBDs and CHD.
- Cilia-related genes are implicated in various, seemingly distinct, ciliopathies.
- The developed mouse models offer valuable tools for future research into SBDs, CHD, and ciliopathies.
Abstract:
Structural birth defect (SBD) is a major cause of morbidity and mortality in the newborn period. Although the etiology of SBD is diverse, a wide spectrum of SBD associated with ciliopathies points to the cilium as having a central role in the pathogenesis of SBDs. Ciliopathies are human diseases arising from disruption of cilia structure and/or function. They are associated with developmental anomalies in one or more organ systems and can involve defects in motile cilia, such as those in the airway epithelia or from defects in nonmotile (primary cilia) that have sensory and cell signaling function. Availability of low cost next generation sequencing has allowed for explosion of new knowledge in genetic etiology of ciliopathies. This has led to the appreciation that many genes are shared in common between otherwise clinically distinct ciliopathies. Further insights into the relevance of the cilium in SBD has come from recovery of pathogenic mutations in cilia-related genes from many large-scale mouse forward genetic screens with differing developmental phenotyping focus. Our mouse mutagenesis screen for congenital heart disease (CHD) using noninvasive fetal echocardiography has yielded a marked enrichment for pathogenic mutations in genes required for motile or primary cilia function. These novel mutant mouse models will be invaluable for modeling human ciliopathies and further interrogating the role of the cilium in the pathogenesis of SBD and CHD. Overall, these findings suggest a central role for the cilium in the pathogenesis of a wide spectrum of developmental anomalies associated with CHD and SBDs.
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