
pmid: 30487245
pmc: PMC6581149
Background Putative nucleotidyltransferase MAB21L1 is a member of an evolutionarily well-conserved family of the male abnormal 21 (MAB21)-like proteins. Little is known about the biochemical function of the protein; however, prior studies have shown essential roles for several aspects of embryonic development including the eye, midbrain, neural tube and reproductive organs. Objective A homozygous truncating variant in MAB21L1 has recently been described in a male affected by intellectual disability, scrotal agenesis, ophthalmological anomalies, cerebellar hypoplasia and facial dysmorphism. We employed a combination of exome sequencing and homozygosity mapping to identify the underlying genetic cause in subjects with similar phenotypic features descending from five unrelated consanguineous families. Results We identified four homozygous MAB21L1 loss of function variants (p.Glu281fs*20, p.Arg287Glufs*14 p.Tyr280* and p.Ser93Serfs*48) and one missense variant (p.Gln233Pro) in 10 affected individuals from 5 consanguineous families with a distinctive autosomal recessive neurodevelopmental syndrome. Cardinal features of this syndrome include a characteristic facial gestalt, corneal dystrophy, hairy nipples, underdeveloped labioscrotal folds and scrotum/scrotal agenesis as well as cerebellar hypoplasia with ataxia and variable microcephaly. Conclusion This report defines an ultrarare but clinically recognisable Cerebello-Oculo-Facio-Genital syndrome associated with recessive MAB21L1 variants. Additionally, our findings further support the critical role of MAB21L1 in cerebellum, lens, genitalia and as craniofacial morphogenesis.
Male, Models, Molecular, Genetics and heredity, 610, Consanguinity, Pontocerebellar hypoplasia, All institutes and research themes of the Radboud University Medical Center, Loss of Function Mutation, Rad A., Altunoglu U., Miller R., Maroofian R., James K. N. , Caglayan A. O. , Najafi M., Stanley V., Boustany R., YEŞİL G., et al., -MAB21L1 loss of function causes a syndromic neurodevelopmental disorder with distinctive cerebellar, ocular, craniofacial and genital features (COFG syndrome)-, JOURNAL OF MEDICAL GENETICS, cilt.56, ss.332-339, 2019, Humans, Abnormalities, Multiple, Genetic Predisposition to Disease, Child, Genetic Association Studies, MAB21L1, Homeodomain Proteins, Medicine; Genetics and heredity, Developmental Defects, Homozygote, Brain, Facies, Infant, Radboudumc 11: Renal disorders RIMLS: Radboud Institute for Molecular Life Sciences, Cerebello-Oculo-Facio-genital (COFG) syndrome; Corneal dystrophy; MAB21L1; Pontocerebellar hypoplasia; Scrotal/labial aplasia, Magnetic Resonance Imaging, Pedigree, Phenotype, Neurodevelopmental Disorders, Cerebello-Oculo-Facio-genital (COFG) syndrome, Child, Preschool, Medicine, Scrotal/labial aplasia, Female, Corneal dystrophy
Male, Models, Molecular, Genetics and heredity, 610, Consanguinity, Pontocerebellar hypoplasia, All institutes and research themes of the Radboud University Medical Center, Loss of Function Mutation, Rad A., Altunoglu U., Miller R., Maroofian R., James K. N. , Caglayan A. O. , Najafi M., Stanley V., Boustany R., YEŞİL G., et al., -MAB21L1 loss of function causes a syndromic neurodevelopmental disorder with distinctive cerebellar, ocular, craniofacial and genital features (COFG syndrome)-, JOURNAL OF MEDICAL GENETICS, cilt.56, ss.332-339, 2019, Humans, Abnormalities, Multiple, Genetic Predisposition to Disease, Child, Genetic Association Studies, MAB21L1, Homeodomain Proteins, Medicine; Genetics and heredity, Developmental Defects, Homozygote, Brain, Facies, Infant, Radboudumc 11: Renal disorders RIMLS: Radboud Institute for Molecular Life Sciences, Cerebello-Oculo-Facio-genital (COFG) syndrome; Corneal dystrophy; MAB21L1; Pontocerebellar hypoplasia; Scrotal/labial aplasia, Magnetic Resonance Imaging, Pedigree, Phenotype, Neurodevelopmental Disorders, Cerebello-Oculo-Facio-genital (COFG) syndrome, Child, Preschool, Medicine, Scrotal/labial aplasia, Female, Corneal dystrophy
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