Purpose: To describe the clinical, imaging, electrophysiologic, and genetic characteristics associated with a novel homozygous VSX2 missense variant presenting with retinal and lenticular abnormalities.Methods: A case series of five affected individuals from four unrelated families with early-onset visual impairment and nystagmus was evaluated. All patients underwent detailed ophthalmic examination, multimodal retinal imaging including fundus photography and fundus autofluorescence, and full-field electroretinography (ERG). Genetic analysis was performed to identify the underlying molecular defect.Results: All affected individuals demonstrated superior lens subluxation, frequently associated with early-onset cataract. Fundus examination revealed myopic tessellated fundi, tilted optic discs, peripheral avascular retina, and circular macular excavations resembling pseudocoloboma. Fundus autofluorescence imaging demonstrated a characteristic triangular hypoautofluorescent pattern along the optic fissure, with hyperautofluorescent borders in four eyes. Full-field ERG revealed severe generalized retinal dysfunction in all evaluated eyes. Genetic analysis identified a homozygous VSX2 missense variant (c.575T>C; p.Ile192Thr) in exon 3, with unaffected parents being heterozygous carriers, consistent with autosomal recessive inheritance. The variant lies within the highly conserved homeodomain and is predicted to disrupt DNA binding and transcriptional regulation of retinal developmental genes.Conclusion: This novel VSX2 variant is associated with a distinctive phenotype characterized by pan-retinal dysfunction and anterior segment abnormalities without classic microphthalmia, expanding the phenotypic spectrum of VSX2-associated disease and highlighting the importance of recognizing this entity for timely diagnosis and management.
Naveen et al. (Thu,) studied this question.