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Biallelic ABCA13 Loss-of-Function Variants in a Child With Neurodevelopmental Delay: A Case Report.

Created on 04 Sep 2026

Authors

Maya Atanasoska, Lubomir Balabanski, Daniela Avdjieva-Tzavella, Tsvetina Veleva, Slavyana Yaneva Staykova, Irena Bradinova, Draga Toncheva, Radoslava Vazharova

Published in

Clinical genetics. Sep 03, 2026. Epub Sep 03, 2026.

Abstract

ABCA13 encodes ATP-binding cassette subfamily A member 13, one of the largest members of the ABC transporter family. Rare ABCA13 variants have been reported in neuropsychiatric and neurodevelopmental phenotypes, including schizophrenia, bipolar disorder, autism spectrum disorder, intellectual disability, and developmental delay; however, the mode of inheritance remains uncertain, and most published cases have focused on heterozygous variants in the context of a possible dominant or susceptibility model. We report a 5-year-old boy with neurodevelopmental delay, skeletal foot deformities, nonspecific dysmorphic features, convergent strabismus, and behavioral abnormalities. Initial genome sequencing analysis was nondiagnostic. Reanalysis after 6 months identified two rare predicted loss-of-function variants in ABCA13 in trans: c.2510del, p.(Leu837TyrfsTer21), a frameshift variant, and c.12064C>T, p.(Arg4022Ter), a nonsense variant previously reported in a patient with unexplained intellectual disability. The identification of compound heterozygous predicted loss-of-function variants supports the possibility that biallelic disruption of ABCA13 may contribute to neurodevelopmental disease, whereas previously reported heterozygous variants may represent incompletely penetrant risk alleles, susceptibility factors, or candidate findings rather than fully penetrant dominant causes. This case expands the emerging clinical and genetic spectrum associated with ABCA13 and supports further evaluation of a recessive model in patients with intellectual disability and neurodevelopmental delay.

PMID:
42692849
Bibliographic data and abstract were imported from PubMed on 04 Sep 2026.

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