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David Geneviève

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Open access Aug 2026

Heterozygous Variants in LRP1 Cause a Neurodevelopmental Disorder With Congenital Heart Defects.

LRP1 encodes the low-density lipoprotein (LDL) receptor-related protein 1 (LRP1), a transmembrane protein involved in endocytosis and activation of multiple signaling pathways. LRP1 variants have been implicated in the pathogenesis of congenital heart defects (CHD), Alzheimer's disease, and neurodevelopmental disorders (NDD). Biallelic LRP1 variants have also been reported in two siblings with CHD, hypotonia, dysmorphology, corneal clouding, and ascites. However, conclusive evidence supporting the role of LRP1 in human disease is still lacking. Individuals with heterozygous variants in LRP1 (NM_002332.3) were identified through genetic testing. GeneMatcher facilitated identification of participants and international collaboration. Comprehensive clinical and genotypic data were collected. Fifteen participants with heterozygous predicted loss-of-function (pLOF) or missense variants in LRP1 were identified. The most common phenotypes include NDD, CHD, musculoskeletal and gastrointestinal issues, and dysmorphic features. CHD was more common in participants with pLOF variants. Our findings suggest that LRP1 haploinsufficiency is associated with a syndromic NDD. Phenotypic differences in cardiac and neurologic involvement between participants with pLOF and missense variants suggest the possibility of alternate disease mechanisms.

Alyssa L. Rippert, G. Arnadottir, Laura Bedinger et al. · 0 citations
Open access Jul 2026

Unveiling ocular developmental disorders through short-read whole-genome sequencing.

Congenital eye malformations represent a clinically and genetically heterogeneous group of disorders. Despite advances in genetic testing, fewer than half of affected patients receive a definitive molecular diagnosis. However, obtaining a molecular diagnosis is crucial for these patients and their families. Whole genome sequencing (WGS) is now standard practice in the genetic investigation of patients, but its contribution has not been extensively evaluated in patients with ocular malformations. In this work, we performed short-read WGS in a cohort of 100 families presenting with eye developmental disorders, including microphthalmia-anophthalmia spectrum (M/A), coloboma, anterior segment dysgenesis, congenital cataracts and/or foveal hypoplasia. Prior to WGS, 47 individuals had undergone targeted next-generation sequencing (NGS) of genes panels related to ocular development, 11 had chromosomal microarray analysis (CGH-array) and 20 had a combination of both. None had received a definitive genetic diagnosis. WGS identified a (likely) pathogenic variant in eighteen patients. In addition, candidate variants of uncertain significance were detected in nine patients. Notably, fourteen of these variants would have been missed by conventional genes panels or CGH-array, underscoring the broader diagnostic scope of WGS. Our findings demonstrate that short-read WGS significantly improves diagnostic yield in patients with congenital eye malformations, including those previously undiagnosed despite NGS panel testing. These results support the integration of WGS in the genetic evaluation of ocular developmental disorders.

Bertrand Chesneau, Timotéo Cousteix, Abdelhakim Bouazzaoui et al. · 1 citation · ⚡1

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