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Updated: Jul 8, 2025

Functional Characterization of Endogenously Expressed Human RYR1 Variants
Published on: June 9, 2021
LRP4 site-specific variants in the third β-propeller domain causes congenital myasthenic syndrome type 17
Tariq Al Jabry1, Nadia Al-Hashmi2, Basem Abdelhadi2
1Department of Genetics, College of Medicine and Health Sciences, Sultan Qaboos University, Muscat, Oman.
Abstract:
LRP4 is expressed in many organs. It mediates SOST-dependent inhibition of bone formation and acts as an inhibitor of WNT signaling. It is also a postsynaptic end plate cell surface receptor at the neuromuscular junction and is central to its development, maintenance, and function. Pathogenic variants of LRP4 that specifically affect the canonical WNT signaling pathway are known to be associated with Cenani-Lenz syndactyly syndrome or the overlapping condition sclerosteosis. However, site-specific pathogenic variants of LRP4 have been associated with the congenital myasthenic syndrome (CMS) type 17 with no abnormal bone phenotype. Only two studies reported biallelic variants of LRP4 associated with CMS17 that presented during childhood. All three reported variants (NM_002334.4: p.Glu1233Ala, p.Glu1233Lys, or p.Arg1277His) are located within the 3'-edge of the third β-propeller domain of LRP4. We report on a patient with a biallelic variant of the LRP4 gene presenting with a severe and neonatal lethal phenotype; we also provide a literature review of the previously reported patients. A female neonate, born to healthy consanguineous parents, presented with severe hypotonia, congenital diaphragmatic hernia, pulmonary hypertension, and progressive hypoxemia. Two of her siblings presented with a similar condition in the past, and all three died shortly after birth. Clinical exome sequencing revealed homozygosity for the pathogenic variant NM_002334.4:c.3698A > C (p.[Glu1233Ala]).
Insights
This study identifies a novel biallelic LRP4 gene variant (p.Glu1233Ala) causing a severe, neonatal lethal phenotype. This expands the known spectrum of LRP4-related neuromuscular disorders.
Area of Science:
- Genetics
- Molecular Biology
- Developmental Biology
Background:
- Low-density lipoprotein receptor-related protein 4 (LRP4) is crucial for neuromuscular junction development and function.
- Pathogenic LRP4 variants are linked to syndromic conditions like Cenani-Lenz syndrome and congenital myasthenic syndrome (CMS) type 17.
- Previous CMS17 cases involved variants in the LRP4 β-propeller domain, presenting in childhood.
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