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1.
Brain Commun ; 5(5): fcad222, 2023.
Article de Anglais | MEDLINE | ID: mdl-37794925

RÉSUMÉ

LNPK encodes a conserved membrane protein that stabilizes the junctions of the tubular endoplasmic reticulum network playing crucial roles in diverse biological functions. Recently, homozygous variants in LNPK were shown to cause a neurodevelopmental disorder (OMIM#618090) in four patients displaying developmental delay, epilepsy and nonspecific brain malformations including corpus callosum hypoplasia and variable impairment of cerebellum. We sought to delineate the molecular and phenotypic spectrum of LNPK-related disorder. Exome or genome sequencing was carried out in 11 families. Thorough clinical and neuroradiological evaluation was performed for all the affected individuals, including review of previously reported patients. We identified 12 distinct homozygous loss-of-function variants in 16 individuals presenting with moderate to profound developmental delay, cognitive impairment, regression, refractory epilepsy and a recognizable neuroimaging pattern consisting of corpus callosum hypoplasia and signal alterations of the forceps minor ('ear-of-the-lynx' sign), variably associated with substantia nigra signal alterations, mild brain atrophy, short midbrain and cerebellar hypoplasia/atrophy. In summary, we define the core phenotype of LNPK-related disorder and expand the list of neurological disorders presenting with the 'ear-of-the-lynx' sign suggesting a possible common underlying mechanism related to endoplasmic reticulum-phagy dysfunction.

2.
J Med Genet ; 57(10): 717-724, 2020 10.
Article de Anglais | MEDLINE | ID: mdl-32152250

RÉSUMÉ

BACKGROUND: Rare variants in hundreds of genes have been implicated in developmental delay (DD), intellectual disability (ID) and neurobehavioural phenotypes. TNRC6B encodes a protein important for RNA silencing. Heterozygous truncating variants have been reported in three patients from large cohorts with autism, but no full phenotypic characterisation was described. METHODS: Clinical and molecular characterisation was performed on 17 patients with TNRC6B variants. Clinical data were obtained by retrospective chart review, parent interviews, direct patient interaction with providers and formal neuropsychological evaluation. RESULTS: Clinical findings included DD/ID (17/17) (speech delay in 94% (16/17), fine motor delay in 82% (14/17) and gross motor delay in 71% (12/17) of subjects), autism or autistic traits (13/17), attention deficit and hyperactivity disorder (ADHD) (11/17), other behavioural problems (7/17) and musculoskeletal findings (12/17). Other congenital malformations or clinical findings were occasionally documented. The majority of patients exhibited some dysmorphic features but no recognisable gestalt was identified. 17 heterozygous TNRC6B variants were identified in 12 male and five female unrelated subjects by exome sequencing (14), a targeted panel (2) and a chromosomal microarray (1). The variants were nonsense (7), frameshift (5), splice site (2), intragenic deletions (2) and missense (1). CONCLUSIONS: Variants in TNRC6B cause a novel genetic disorder characterised by recurrent neurocognitive and behavioural phenotypes featuring DD/ID, autism, ADHD and other behavioural abnormalities. Our data highly suggest that haploinsufficiency is the most likely pathogenic mechanism. TNRC6B should be added to the growing list of genes of the RNA-induced silencing complex associated with ID/DD, autism and ADHD.


Sujet(s)
Trouble déficitaire de l'attention avec hyperactivité/génétique , Trouble autistique/génétique , Prédisposition génétique à une maladie , Protéines de liaison à l'ARN/génétique , Trouble déficitaire de l'attention avec hyperactivité/complications , Trouble déficitaire de l'attention avec hyperactivité/anatomopathologie , Trouble autistique/complications , Trouble autistique/anatomopathologie , Enfant , Enfant d'âge préscolaire , Incapacités de développement/génétique , Incapacités de développement/anatomopathologie , Femelle , Hétérozygote , Humains , Déficience intellectuelle/complications , Déficience intellectuelle/génétique , Déficience intellectuelle/anatomopathologie , Troubles du développement du langage/génétique , Troubles du développement du langage/anatomopathologie , Mâle , Troubles des habiletés motrices/génétique , Troubles des habiletés motrices/anatomopathologie , Mutation/génétique , Phénotype ,
3.
Prenat Diagn ; 36(13): 1211-1216, 2016 Dec.
Article de Anglais | MEDLINE | ID: mdl-27859473

RÉSUMÉ

OBJECTIVES: The phenotype for 10q22q23 duplication is diverse, ranging from intellectual disability and dysmorphism to normal development. Interpreting the clinical significance of the duplication identified in this region is difficult, especially in the prenatal setting. This study aimed to characterize the prenatal findings associated with this submicroscopic imbalance and discuss the dilemmas in predicting the phenotype of 10q22q23 duplications. METHODS: This is a retrospective study of three cases of 10q22q23 duplications diagnosed prenatally by chromosomal microarray analysis. Detailed pregnancy outcome and pediatric follow-up were documented. RESULTS: The genotypic and phenotypic features of the reported cases were discussed. 10q22q23 duplications are associated with an unpredictable and variable phenotypic outcome. Despite there was no phenotype found to be shared by 50% of the duplication cases, congenital heart defects, hypotelorism, and developmental delays including speech and motor delay seem to be more common. CONCLUSIONS: The phenotype of 10q22q23 duplication is highly variable prenatally and postnatally. Identification of additional affected individuals with similar duplications is needed to provide further insights into the pathogenesis of this microduplication. © 2016 John Wiley & Sons, Ltd.


Sujet(s)
Duplication chromosomique/génétique , Chromosomes humains de la paire 10/génétique , Phénotype , Diagnostic prénatal/méthodes , Malformations/génétique , Incapacités de développement/génétique , Maladies chez les jumeaux/génétique , Femelle , Retard de croissance intra-utérin/génétique , Génotype , Humains , Hybridation fluorescente in situ , Analyse sur microréseau , Mesure de la clarté nucale , Grossesse , Grossesse gémellaire/génétique , Études rétrospectives , Échographie prénatale
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