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Updated: Nov 1, 2025

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Published on: September 8, 2023
Nonlethal presentations of CYP26B1-related skeletal anomalies and multiple synostoses syndrome
Katheryn Grand1, Cara M Skraban2,3, Jennifer L Cohen4
1Division of Medical Genetics, Cedars Sinai Medical Center, Los Angeles, California, USA.
Abstract:
Retinoic acid exposures as well as defects in the retinoic acid-degrading enzyme CYP26B1 have teratogenic effects on both limb and craniofacial skeleton. An initial report of four individuals described a syndrome of fetal and infantile lethality with craniosynostosis and skeletal anomalies caused by homozygous pathogenic missense variants in CYP26B1. In contrast, a 22-year-old female was reported with a homozygous missense pathogenic variant in CYP26B1 with complex multisuture craniosynostosis and intellectual disability, suggesting that in some cases, biallelic pathogenic variants of CYP26B1 may be compatible with life. Here we describe four additional living individuals from two families with compound heterozygous pathogenic missense variants in CYP26B1. Structural assessment of these additional missense variants places them further from the catalytic site and supports a model consistent with milder nonlethal disease. In addition to previously reported findings of multisuture craniosynostosis, conductive hearing loss, joint contractures, long slender fingers, camptodactly, broad fingertips, and developmental delay/intellectual disability, skeletal imaging in our cases also revealed gracile long bones, gracile ribs, radioulnar synostosis, and carpal and/or tarsal fusions. These individuals broaden the phenotypic range of biallelic pathogenic variants in CYPB26B1 and most significantly clarify that mortality can range from perinatal lethality to survival into adulthood.
Insights
Genetic variants in the retinoic acid-degrading enzyme CYP26B1 cause skeletal and craniofacial anomalies. This study shows that different CYP26B1 variants can lead to a range of outcomes, from lethal to nonlethal conditions compatible with adult survival.
Area of Science:
- Genetics
- Developmental Biology
- Skeletal Biology
Background:
- Retinoic acid signaling is crucial for embryonic development, particularly for limb and craniofacial structures.
- Defects in CYP26B1, an enzyme that degrades retinoic acid, are linked to severe skeletal and craniofacial abnormalities.
- Previous studies reported lethal outcomes for homozygous CYP26B1 variants, with one case suggesting survival into adulthood.
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