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1.
J Clin Invest ; 134(1)2024 Jan 02.
Article En | MEDLINE | ID: mdl-37962958

Pre-mRNA splicing is a highly coordinated process. While its dysregulation has been linked to neurological deficits, our understanding of the underlying molecular and cellular mechanisms remains limited. We implicated pathogenic variants in U2AF2 and PRPF19, encoding spliceosome subunits in neurodevelopmental disorders (NDDs), by identifying 46 unrelated individuals with 23 de novo U2AF2 missense variants (including 7 recurrent variants in 30 individuals) and 6 individuals with de novo PRPF19 variants. Eight U2AF2 variants dysregulated splicing of a model substrate. Neuritogenesis was reduced in human neurons differentiated from human pluripotent stem cells carrying two U2AF2 hyper-recurrent variants. Neural loss of function (LoF) of the Drosophila orthologs U2af50 and Prp19 led to lethality, abnormal mushroom body (MB) patterning, and social deficits, which were differentially rescued by wild-type and mutant U2AF2 or PRPF19. Transcriptome profiling revealed splicing substrates or effectors (including Rbfox1, a third splicing factor), which rescued MB defects in U2af50-deficient flies. Upon reanalysis of negative clinical exomes followed by data sharing, we further identified 6 patients with NDD who carried RBFOX1 missense variants which, by in vitro testing, showed LoF. Our study implicates 3 splicing factors as NDD-causative genes and establishes a genetic network with hierarchy underlying human brain development and function.


Neurodevelopmental Disorders , Spliceosomes , Humans , Spliceosomes/genetics , Gene Regulatory Networks , Neurodevelopmental Disorders/genetics , Mutation, Missense , RNA Splicing , RNA Splicing Factors/genetics , Nuclear Proteins/genetics , DNA Repair Enzymes/genetics
2.
Genet Med ; 23(7): 1202-1210, 2021 07.
Article En | MEDLINE | ID: mdl-33674768

PURPOSE: The variant spectrum and the phenotype of X-linked Kabuki syndrome type 2 (KS2) are poorly understood. METHODS: Genetic and clinical details of new and published individuals with pathogenic KDM6A variants were compiled and analyzed. RESULTS: Sixty-one distinct pathogenic KDM6A variants (50 truncating, 11 missense) from 80 patients (34 males, 46 females) were identified. Missense variants clustered in the TRP 2, 3, 7 and Jmj-C domains. Truncating variants were significantly more likely to be de novo. Thirteen individuals had maternally inherited variants and one had a paternally inherited variant. Neonatal feeding difficulties, hypoglycemia, postnatal growth retardation, poor weight gain, motor delay, intellectual disability (ID), microcephaly, congenital heart anomalies, palate defects, renal malformations, strabismus, hearing loss, recurrent infections, hyperinsulinism, seizures, joint hypermobility, and gastroesophageal reflux were frequent clinical findings. Facial features of over a third of patients were not typical for KS. Males were significantly more likely to be born prematurely, have shorter stature, and severe developmental delay/ID. CONCLUSION: We expand the KDM6A variant spectrum and delineate the KS2 phenotype. We demonstrate that the variability of the KS2 phenotypic depends on sex and the variant type. We also highlight the overlaps and differences between the phenotypes of KS2 and KS1.


Histone Demethylases/genetics , Intellectual Disability , Sex Characteristics , Abnormalities, Multiple , DNA-Binding Proteins/genetics , Face/abnormalities , Female , Genetic Association Studies , Hematologic Diseases , Humans , Infant, Newborn , Intellectual Disability/genetics , Male , Neoplasm Proteins/genetics , Phenotype , Vestibular Diseases
3.
Clin Genet ; 99(2): 259-268, 2021 02.
Article En | MEDLINE | ID: mdl-33131045

The CAMTA1-associated phenotype was initially defined in patients with intragenic deletions and duplications who showed nonprogressive congenital ataxia, with or without intellectual disability. Here, we describe 10 individuals with CAMTA1 variants: nine previously unreported (likely) pathogenic variants comprising one missense, four frameshift and four nonsense variants, and one missense variant of unknown significance. Six patients were diagnosed following whole exome sequencing and four individuals with exome-based targeted panel analysis. Most of them present with developmental delay, manifesting in speech and motor delay. Other frequent findings are hypotonia, cognitive impairment, cerebellar dysfunction, oculomotor abnormalities, and behavioral problems. Feeding problems occur more frequently than previously observed. In addition, we present a systematic review of 19 previously published individuals with causal variants, including copy number, truncating, and missense variants. We note a tendency of more severe cognitive impairment and recurrent dysmorphic features in individuals with a copy number variant. Pathogenic variants are predominantly observed in and near the N- and C- terminal functional domains. Clinical heterogeneity is observed, but 3'-terminal variants seem to associate with less pronounced cerebellar dysfunction.


Calcium-Binding Proteins/genetics , Nervous System Diseases/genetics , Trans-Activators/genetics , Adolescent , Child , Child, Preschool , Cognition Disorders/genetics , DNA Mutational Analysis , Developmental Disabilities/genetics , Female , Humans , Male , Phenotype
5.
Clin Genet ; 96(6): 493-505, 2019 12.
Article En | MEDLINE | ID: mdl-31397880

Pathogenic MAGEL2 variants result in the phenotypes of Chitayat-Hall syndrome (CHS), Schaaf-Yang syndrome (SYS) and Prader-Willi syndrome (PWS). We present five patients with mutations in MAGEL2, including the first patient reported with a missense variant, adding to the limited literature. Further, we performed a systematic review of the CHS and SYS literature, assess the overlap between CHS, SYS and PWS, and analyze genotype-phenotype correlations among them. We conclude that there is neither a clinical nor etiological difference between CHS and SYS, and propose that the two syndromes simply be referred to as MAGEL2-related disorders.


Abnormalities, Multiple/genetics , Proteins/genetics , Adult , Child, Preschool , Cluster Analysis , DNA Mutational Analysis , Female , Humans , Infant , Infant, Newborn , Male , Mutation/genetics , Young Adult
6.
Semin Reprod Med ; 31(4): 258-66, 2013 Jul.
Article En | MEDLINE | ID: mdl-23775381

Male-factor infertility is the cause of reproductive issues in many couples. For approximately 15% of these men, the origin of the infertility is genetic. These causes include both chromosomal and single-gene disorders frequently impacting spermatogenesis. By identifying the genetic mechanism behind the infertility, we determine the ability of the couple to use assisted reproduction technologies. Use of these methods has ignited a new spectrum of concerns for the genetic competence of the offspring. By knowing what specific genetic risks exist for the offspring of men with these particular disorders, we are able to use preimplantation genetic diagnosis to detect these problems.


Genetic Diseases, Inborn/physiopathology , Infertility, Male/etiology , Androgen-Insensitivity Syndrome/diagnosis , Androgen-Insensitivity Syndrome/genetics , Androgen-Insensitivity Syndrome/physiopathology , Androgen-Insensitivity Syndrome/therapy , Cystic Fibrosis/diagnosis , Cystic Fibrosis/genetics , Cystic Fibrosis/physiopathology , Cystic Fibrosis/therapy , Family Characteristics , Female , Genetic Diseases, Inborn/diagnosis , Genetic Diseases, Inborn/genetics , Genetic Diseases, Inborn/therapy , Humans , Infertility, Male/prevention & control , Klinefelter Syndrome/diagnosis , Klinefelter Syndrome/genetics , Klinefelter Syndrome/physiopathology , Klinefelter Syndrome/therapy , Male , Mutation , Preimplantation Diagnosis , Receptors, Androgen/genetics , Reproductive Techniques, Assisted , Severity of Illness Index , Translocation, Genetic , XYY Karyotype/diagnosis , XYY Karyotype/genetics , XYY Karyotype/physiopathology
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