0000000000244141

AUTHOR

Jamel Chelly

showing 7 related works from this author

Expanding the clinical phenotype of patients with a ZDHHC9 mutation.

2013

In 2007, 250 families with X-linked intellectual disability (XLID) were screened for mutations in genes on the X-chromosome, and in 4 of these families, mutations in the ZDHHC9 gene were identified. The ID was either isolated or associated with a marfanoid habitus. ZDHHC9 encodes a palmitoyl transferase that catalyzes the posttranslational modification of NRAS and HRAS. Since this first description, no additional patient with a ZDHHC9 mutation has been reported in the literature. Here, we describe a large family in which we identified a novel pathogenic ZDHHC9 nonsense mutation (p.Arg298*) by parallel sequencing of all X-chromosome exons. The mutation cosegregated with the clinical phenotyp…

AdultMaleAdolescentX-linked intellectual disabilityGenetic counselingNonsense mutationNeuropsychological TestsBioinformaticsYoung AdultFatal OutcomeGenes X-LinkedIntellectual DisabilityIntellectual disabilityGeneticsmedicineHumansHRASChildGenetics (clinical)GeneticsMassive parallel sequencingAcrocyanosisbusiness.industryBrainFaciesmedicine.diseaseMagnetic Resonance ImagingPedigreePhenotypeMutation (genetic algorithm)MutationbusinessAcyltransferasesAmerican journal of medical genetics. Part A
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Correction: The landscape of epilepsy-related GATOR1 variants

2019

International audience; The original version of this article contained an error in the spelling of the author Erik H. Niks, which was incorrectly given as Erik Niks. This has now been corrected in both the PDF and HTML versions of the article.

0303 health sciencesbusiness.industryPublished ErratumMEDLINEmedicine.diseasecomputer.software_genreSpelling03 medical and health sciencesEpilepsy0302 clinical medicine[SDV.GEN.GH]Life Sciences [q-bio]/Genetics/Human geneticsmedicineArtificial intelligencebusinessPsychologycomputer030217 neurology & neurosurgeryGenetics (clinical)Natural language processing030304 developmental biology
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The landscape of epilepsy-related GATOR1 variants

2019

Purpose:\ud \ud To define the phenotypic and mutational spectrum of epilepsies related to DEPDC5, NPRL2 and NPRL3 genes encoding the GATOR1 complex, a negative regulator of the mTORC1 pathway.\ud \ud Methods:\ud \ud We analyzed clinical and genetic data of 73 novel probands (familial and sporadic) with epilepsy-related variants in GATOR1-encoding genes and proposed new guidelines for clinical interpretation of GATOR1 variants.\ud \ud Results:\ud \ud The GATOR1 seizure phenotype consisted mostly in focal seizures (e.g., hypermotor or frontal lobe seizures in 50%), with a mean age at onset of 4.4 years, often sleep-related and drug-resistant (54%), and associated with focal cortical dysplasia…

Male0301 basic medicineProbandDEPDC5SUDEP030105 genetics & heredityBioinformaticsLoss of Function Mutation/geneticsEpilepsyINDEL MutationLoss of Function MutationmTORC1 pathwayGenetics(clinical)ChildGenetics (clinical)Multiprotein Complexes/geneticsBrugada SyndromeDNA Copy Number VariationBrugada syndromeINDEL Mutation/geneticsGTPase-Activating ProteinsNPRL3SeizureDEPDC5PhenotypePedigree3. Good healthBrugada Syndrome/geneticsChild PreschoolFemaleHumanSignal TransductionDNA Copy Number VariationsAdolescentSeizures/complicationsMechanistic Target of Rapamycin Complex 1/geneticsDNA Copy Number Variations/geneticsMechanistic Target of Rapamycin Complex 1Tumor Suppressor Proteins/geneticsArticleFocal cortical dysplasia03 medical and health sciencesSeizuresGTPase-Activating Proteins/geneticsmedicineHumansGenetic Predisposition to DiseaseDEPDC5; Focal cortical dysplasia; Genetic focal epilepsy; mTORC1 pathway; SUDEPGenetic focal epilepsyEpilepsy/complicationsRepressor Proteins/geneticsEpilepsybusiness.industryGTPase-Activating ProteinTumor Suppressor ProteinsInfant NewbornCorrectionInfantRepressor ProteinCortical dysplasiamedicine.diseaseddc:616.8Repressor Proteins030104 developmental biologyFrontal lobe seizures[SDV.GEN.GH]Life Sciences [q-bio]/Genetics/Human geneticsMultiprotein ComplexesMultiprotein ComplexeSignal Transduction/geneticsHuman medicinebusiness
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WD40-repeat 47 is essential for brain development via microtubule-mediated processes and autophagy

2017

Erreur dates et n° de conférence dans l'url https://hal.archives-ouvertes.fr/hal-02378786.; International audience

[SDV] Life Sciences [q-bio][SDV]Life Sciences [q-bio][SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC][SDV.BC]Life Sciences [q-bio]/Cellular Biology[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition[SDV.BC] Life Sciences [q-bio]/Cellular BiologyComputingMilieux_MISCELLANEOUS
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Mutations in theERCC2(XPD) gene associated with severe fetal ichthyosis and dysmorphic features

2016

0301 basic medicineGeneticsFetusbusiness.industryIchthyosisObstetrics and Gynecology030105 genetics & hereditymedicine.disease03 medical and health sciencesText miningMedicineERCC2businessGeneGenetics (clinical)Prenatal Diagnosis
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Oligophrenin 1 mutations frequently cause X-linked mental retardation with cerebellar hypoplasia

2005

Background: Mutations of oligophrenin 1, one of the first genes identified in nonspecific X-linked mental retardation (MRX), have been described in patients with moderate to severe cognitive impairment and predominant cerebellar hypoplasia, in the vermis. Objective: To further delineate the phenotypic and mutational spectrum of the syndrome, by screening oligophrenin 1 in two cohorts of male patients with mental retardation (MR) with or without known posterior fossa anomalies. Methods: Clinical examination, cognitive testing, MRI studies, and mutational analysis (denaturing gradient gel electrophoresis and direct sequencing) on blood lymphocytes were performed in 213 unrelated affected indi…

AdultMaleCerebellumAdolescentGenotypeDNA Mutational AnalysisNonsense mutationNervous System Malformationsmedicine.disease_causeCohort StudiesExonCerebellar DiseasesCerebellummedicineHumansGenetic TestingChildCerebellar hypoplasiaGeneticsMutationSplice site mutationGTPase-Activating ProteinsNuclear Proteinsmedicine.diseaseMagnetic Resonance ImagingHypoplasiaPedigreeDevelopmental disorderAlternative SplicingCytoskeletal ProteinsPhenotypemedicine.anatomical_structureFacial AsymmetryCodon NonsenseChild PreschoolMutationMental Retardation X-LinkedRNA Splice SitesNeurology (clinical)PsychologyGene DeletionNeurology
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Am J Hum Genet

2019

ZMIZ1 is a coactivator of several transcription factors, including p53, the androgen receptor, and NOTCH1. Here, we report 19 subjects with intellectual disability and developmental delay carrying variants in ZMIZ1. The associated features include growth failure, feeding difficulties, microcephaly, facial dysmorphism, and various other congenital malformations. Of these 19, 14 unrelated subjects carried de novo heterozygous single-nucleotide variants (SNVs) or single-base insertions/deletions, 3 siblings harbored a heterozygous single-base insertion, and 2 subjects had a balanced translocation disrupting ZMIZ1 or involving a regulatory region of ZMIZ1. In total, we identified 13 point mutat…

0301 basic medicineMaleMicrocephaly[SDV]Life Sciences [q-bio]Developmental DisabilitiesAucunBiology030226 pharmacology & pharmacyTransactivation03 medical and health sciencesMiceNeurodevelopmental disorder0302 clinical medicineReportIntellectual DisabilityCoactivatormedicineGeneticsAnimalsHumansPoint MutationAlleleChildExomeGenetics (clinical)Alleles030304 developmental biologyGenetics0303 health sciencesPoint mutationCorrectionInfantSyndromemedicine.diseaseAndrogen receptor030104 developmental biologyChild PreschoolFemale030217 neurology & neurosurgeryTranscription Factors
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