PCDH12 variants are associated with basal ganglia anomalies and exudative vitreoretinopathy
Andrea Accogli1, Charbel El Kosseifi2, Christine Saint-Martin3
1Department of Pediatrics, Division of Medical Genetics, McGill University Health Center, Montreal, Canada; Department of Human Genetics, McGill University Health Centre, Montreal, Quebec, Canada.
Insights
Protocadherin 12 (PCDH12) deficiency causes brain and eye abnormalities, including visual loss and developmental issues. This study identifies a new PCDH12 variant expanding the known spectrum of PCDH12-related disorders.
Area of Science:
- Neuroscience
- Developmental Biology
- Ophthalmology
Background:
- Protocadherin 12 (PCDH12) is vital for cell adhesion, vascular homeostasis, and angiogenesis.
- Its precise role in brain and eye development requires further elucidation.
Observation:
- Two siblings with a novel homozygous frameshift variant in PCDH12 presented with diencephalic-mesencephalic junction dysplasia.
- Brain MRI revealed dysmorphic basal ganglia and thalamus, cerebellar hypoplasia, and prominent perivascular spaces.
- The elder sibling experienced progressive monocular visual loss with exudative vitreoretinopathy, also noted mildly in the younger sibling.
Findings:
- The novel PCDH12 variant contributes to a spectrum of neurodevelopmental and ocular abnormalities.
- PCDH12 deficiency impacts both central nervous system and retinal vascular development.
Implications:
- This expands the clinical spectrum of PCDH12-related disorders, highlighting its significance in neuro-ocular development.
- Further research into PCDH12 function is crucial for understanding and potentially treating related conditions.
Abstract:
PCDH12 is a member of the non-clustered protocadherins that mediate cell-cell adhesion, playing crucial roles in many biological processes. Among these, PCDH12 promotes cell-cell interactions at inter-endothelial junctions, exerting essential functions in vascular homeostasis and angiogenesis. However, its exact role in eye vascular and brain development is not completely understood. To date, biallelic loss of function variants in PCDH12 have been associated with a neurodevelopmental disorder characterized by the typical neuroradiological findings of diencephalic-mesencephalic junction dysplasia and intracranial calcifications, whereas heterozygous variants have been recently linked to isolated brain calcifications in absence of cognitive impairment or other brain malformations. Recently, the phenotypic spectrum associated with PCDH12 deficiency has been expanded including cerebellar and eye abnormalities. Here, we report two female siblings harboring a novel frameshift homozygous variant (c.2169delT, p.(Val724TyrfsTer8)) in PCDH12. In addition to the typical diencephalic-mesencephalic junction dysplasia, brain MRI showed dysmorphic basal ganglia and thalamus that were reminiscent of a tubulin-like phenotype, mild cerebellar vermis hypoplasia and extensive prominence of perivascular spaces in both siblings. The oldest sister developed profound and progressive monocular visual loss and the eye exam revealed exudative vitreoretinopathy. Similar but milder eye changes were also noted in her younger sister. In summary, our report expands the clinical (brain and ocular) spectrum of PCDH12-related disorders and adds a further line of evidence underscoring the important role of PCDH12 in retinal vascular and brain development.
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