Neuropathological hallmarks of fetal hydrocephalus linked to CCDC88C pathogenic variants
Florent Marguet1, Myriam Vezain2, Pascale Marcorelles3
1UNIROUEN, INSERM U1245, Rouen University Hospital, Department of Pathology, Normandie Univ, 76000, Rouen, France.
Insights
This study reveals the neuropathology of congenital hydrocephalus linked to CCDC88C gene variants. Novel CCDC88C mutations cause severe brain malformations and associated developmental defects in fetuses.
Area of Science:
- Neuroscience
- Genetics
- Developmental Biology
Background:
- Congenital hydrocephalus is a complex condition with limited known genetic causes, particularly for isolated cases.
- While four genes are linked to congenital hydrocephalus, the neuropathology associated with CCDC88C variants remains largely unexplored.
Observation:
- The study details the neuropathology of two fetuses with severe ventriculomegaly, both from a family with novel compound heterozygous pathogenic variants in the CCDC88C gene.
- Brain lesions included aqueductal and medullary canal atresia-forking, periventricular neuronal heterotopias, and choroid plexus hydrops.
- The second fetus also exhibited lumbar myelomeningocele, diaphragmatic hernia, and renal agenesis.
Findings:
- Pathogenic variants in CCDC88C, encoding DAPLE, disrupt ependymal cell planar polarity by inhibiting Wnt signaling.
- CCDC88C interacts with MPDZ and PARD3, genes also implicated in neurodevelopmental defects.
- The observed malformations align with disruptions in planar cell polarity pathways crucial for organogenesis.
Implications:
- These findings expand the genetic understanding of congenital hydrocephalus and associated developmental disorders.
- CCDC88C variants should be considered in cases of isolated hydrocephalus and when brain lesions are accompanied by malformations potentially linked to planar cell polarity defects.
- This research highlights the critical role of CCDC88C in fetal development and provides insights for future genetic diagnostics and counseling.
Abstract:
The prevalence of congenital hydrocephalus has been estimated at 1.1 per 1000 infants when including cases diagnosed before 1 year of age after exclusion of neural tube defects. Classification criteria are based either on CSF dynamics, pathophysiological mechanisms or associated lesions. Whereas inherited syndromic hydrocephalus has been associated with more than 100 disease-causing genes, only four genes are currently known to be linked to congenital hydrocephalus either isolated or as a major clinical feature: L1CAM, AP1S2, MPDZ and CCDC88C. In the past 10 years, pathogenic variants in CCDC88C have been documented but the neuropathology remains virtually unknown. We report the neuropathology of two foetuses from one family harbouring two novel compound heterozygous pathogenic variants in the CCDC88C gene: a maternally inherited indel in exon 22, c.3807_3809delinsACCT;p.(Gly1270Profs*53) and a paternally inherited deletion of exon 23, c.3967-?_c.4112-?;p.(Leu1323Argfs*10). Medical termination of pregnancy was performed at 18 and 23 weeks of gestation for severe bilateral ventriculomegaly. In both fetuses, brain lesions consisted of multifocal atresia-forking along the aqueduct of Sylvius and the central canal of the medulla, periventricular neuronal heterotopias and choroid plexus hydrops. The second fetus also presented lumbar myelomeningocele, left diaphragmatic hernia and bilateral renal agenesis. CCDC88C encodes the protein DAPLE which contributes to ependymal cell planar polarity by inhibiting the non-canonical Wnt signaling pathway and interacts with MPDZ and PARD3. Interestingly, heterozygous variants in PARD3 result in neural tube defects by defective tight junction formation and polarization process of the neuroepithelium. Besides, during organ formation Wnt signalling is a prerequisite for planar cell polarity pathway activation, and mutations in planar cell polarity genes lead to heart, lung and kidney malformations. Hence, candidate variants in CCDC88C should be carefully considered whether brain lesions are isolated or associated with malformations suspected to result from disorders of planar cell polarity.
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