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1.
Hum Genet ; 136(2): 179-192, 2017 02.
Article de Anglais | MEDLINE | ID: mdl-27848077

RÉSUMÉ

The ubiquitin pathway is an enzymatic cascade including activating E1, conjugating E2, and ligating E3 enzymes, which governs protein degradation and sorting. It is crucial for many physiological processes. Compromised function of members of the ubiquitin pathway leads to a wide range of human diseases, such as cancer, neurodegenerative diseases, and neurodevelopmental disorders. Mutations in the thyroid hormone receptor interactor 12 (TRIP12) gene (OMIM 604506), which encodes an E3 ligase in the ubiquitin pathway, have been associated with autism spectrum disorder (ASD). In addition to autistic features, TRIP12 mutation carriers showed intellectual disability (ID). More recently, TRIP12 was postulated as a novel candidate gene for intellectual disability in a meta-analysis of published ID cohorts. However, detailed clinical information characterizing the phenotype of these individuals was not provided. In this study, we present seven novel individuals with private TRIP12 mutations including two splice site mutations, one nonsense mutation, three missense mutations, and one translocation case with a breakpoint in intron 1 of the TRIP12 gene and clinically review four previously published cases. The TRIP12 mutation-positive individuals presented with mild to moderate ID (10/11) or learning disability [intelligence quotient (IQ) 76 in one individual], ASD (8/11) and some of them with unspecific craniofacial dysmorphism and other anomalies. In this study, we provide detailed clinical information of 11 TRIP12 mutation-positive individuals and thereby expand the clinical spectrum of the TRIP12 gene in non-syndromic intellectual disability with or without ASD.


Sujet(s)
Trouble autistique/génétique , Protéines de transport/génétique , Variation génétique , Déficience intellectuelle/génétique , Ubiquitin-protein ligases/génétique , Adolescent , Trouble autistique/diagnostic , Séquence nucléotidique , Enfant , Études de cohortes , Femelle , Génome humain , Humains , Déficience intellectuelle/diagnostic , Caryotypage , Mâle , Mutation faux-sens , Phénotype , Protéolyse , Épissage des ARN , Analyse de séquence d'ADN
2.
Mol Psychiatry ; 21(1): 126-32, 2016 Jan.
Article de Anglais | MEDLINE | ID: mdl-25707398

RÉSUMÉ

Dual-specificity tyrosine-(Y)-phosphorylation-regulated kinase 1 A (DYRK1A) maps to the Down syndrome critical region; copy number increase of this gene is thought to have a major role in the neurocognitive deficits associated with Trisomy 21. Truncation of DYRK1A in patients with developmental delay (DD) and autism spectrum disorder (ASD) suggests a different pathology associated with loss-of-function mutations. To understand the phenotypic spectrum associated with DYRK1A mutations, we resequenced the gene in 7162 ASD/DD patients (2446 previously reported) and 2169 unaffected siblings and performed a detailed phenotypic assessment on nine patients. Comparison of our data and published cases with 8696 controls identified a significant enrichment of DYRK1A truncating mutations (P=0.00851) and an excess of de novo mutations (P=2.53 × 10(-10)) among ASD/intellectual disability (ID) patients. Phenotypic comparison of all novel (n=5) and recontacted (n=3) cases with previous case reports, including larger CNV and translocation events (n=7), identified a syndromal disorder among the 15 patients. It was characterized by ID, ASD, microcephaly, intrauterine growth retardation, febrile seizures in infancy, impaired speech, stereotypic behavior, hypertonia and a specific facial gestalt. We conclude that mutations in DYRK1A define a syndromic form of ASD and ID with neurodevelopmental defects consistent with murine and Drosophila knockout models.


Sujet(s)
Trouble autistique/génétique , Déficience intellectuelle/génétique , Mutation , Phénotype , Protein-Serine-Threonine Kinases/génétique , Protein-tyrosine kinases/génétique , Adolescent , Adulte , Enfant , Enfant d'âge préscolaire , Études de cohortes , Femelle , Retard de croissance intra-utérin/génétique , Humains , Mâle , Microcéphalie/génétique , Adulte d'âge moyen , Crises convulsives fébriles/génétique , Fratrie , Troubles de la parole/génétique , Stéréotypie/génétique , Syndrome , Jeune adulte ,
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