Search results for "030105 genetics & heredity"

showing 10 items of 119 documents

Clinical and neuroimaging findings in 33 patients with MCAP syndrome: A survey to evaluate relevant endpoints for future clinical trials

2021

Megalencephaly-CApillary malformation-Polymicrogyria (MCAP) syndrome results from somatic mosaic gain-of-function variants in PIK3CA. Main features are macrocephaly, somatic overgrowth, cutaneous vascular malformations, connective tissue dysplasia, neurodevelopmental delay, and brain anomalies. The objectives of this study were to describe the clinical and radiological features of MCAP, to suggest relevant clinical endpoints applicable in future trials of targeted drug therapy. Based on a French collaboration, we collected clinical features of 33 patients (21 females, 12 males, median age of 9.9 years) with MCAP carrying mosaic PIK3CA pathogenic variants. MRI images were reviewed for 21 pat…

AdultMale0301 basic medicinePediatricsmedicine.medical_specialtyCutis marmorataAdolescentClass I Phosphatidylinositol 3-KinasesNeuroimagingContext (language use)Skin Diseases Vascular030105 genetics & heredityCohort StudiesYoung Adult03 medical and health sciencesGeneticsPolymicrogyriamedicineHumansPROSAbnormalities MultipleTelangiectasisMegalencephalyChildMCAP syndromeGenetics (clinical)Chiari malformationClinical Trials as Topicbusiness.industryMacrocephalyPIK3CAmedicine.diseaseMagnetic Resonance ImagingMegalencephaly3. Good healthClinical trial030104 developmental biologyChild PreschoolPostnatal macrocephalyFemalemedicine.symptombusiness[SDV.MHEP]Life Sciences [q-bio]/Human health and pathologyForecastingVentriculomegalyClinical Genetics
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Chromosome 15q BP3 to BP5 deletion is a likely locus for speech delay and language impairment: Report on a four‐member family and an unrelated boy

2020

Abstract Background Deletions in chromosome 15q13 have been reported both in healthy people and individuals with a wide range of behavioral and neuropsychiatric disturbances. Six main breakpoint (BP) subregions (BP1‐BP6) are mapped to the 15q13 region and three further embedded BP regions (BP3‐BP5). The deletion at BP4‐BP5 is the rearrangement most frequently observed compared to other known deletions in BP3‐BP5 and BP3‐BP4 regions. Deletions of each of these three regions have previously been implicated in a variable range of clinical phenotypes, including minor dysmorphism, developmental delay/intellectual disability, epilepsy, autism spectrum disorders, behavioral disturbances, and speec…

AdultMale0301 basic medicinespeech delayAdolescentlcsh:QH426-470BP3-BP5 deletionspeech delay.Chromosome DisordersLocus (genetics)030105 genetics & heredity03 medical and health sciencesEpilepsySettore MED/38 - Pediatria Generale E SpecialisticaSeizuresIntellectual DisabilityIntellectual disabilitychromosome 15 q13GeneticsmedicineHumansLanguage Development DisordersChildMolecular BiologyGenetics (clinical)GeneticsChromosomes Human Pair 15business.industryBreakpointlanguage impairmentOriginal Articlesmedicine.diseasePhenotypePedigreeBP3‐BP5 deletiondevelopmental delayLanguage developmentlcsh:GeneticsPhenotype030104 developmental biologyBP3-BP5 deletion; chromosome 15 q13; developmental delay; language impairment; speech delaySpeech delayAutismFemaleOriginal ArticleChromosome Deletionmedicine.symptombusinessMolecular Genetics & Genomic Medicine
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Chest Radiograph as Diagnostic Clue in a Floppy Infant

2016

Chromosomes Human Pair 14Male0301 basic medicineThoraxmedicine.medical_specialtymedicine.diagnostic_testbusiness.industryInfant NewbornThoraxUniparental Disomy030105 genetics & heredityRespiration ArtificialInfant newbornKAGAMI-OGATA SYNDROMESurgery03 medical and health sciencesPediatrics Perinatology and Child HealthmedicineHumansMuscle HypotoniaAbnormalities MultipleRadiologyChest radiographFloppy InfantbusinessThe Journal of Pediatrics
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ATNX2 is not a regulatory gene in Italian amyotrophic lateral sclerosis patients with C9ORF72 GGGGCC expansion

2015

Abstract There are indications that both familial amyotrophic lateral sclerosis (ALS) and sporadic ALS phenotype and prognosis are partly regulated by genetic and environmental factors, supporting the theory that ALS is a multifactorial disease. The aim of this article was to assess the role of ATXN2 intermediate length repeats in a large series of Italian and Sardinian ALS patients and controls carrying a pathogenetic C9ORF72 GGGGCC hexanucleotide repeat. A total of 1972 ALS cases were identified through the database of the Italian ALS Genetic consortium, a collaborative effort including 18 ALS centers throughout Italy. The study population included: (1) 276 Italian and 57 Sardinian ALS ca…

Male0301 basic medicineAgingC9ORF72Genetic Association Studie030105 genetics & heredityBiologySettore MED/03 - GENETICA MEDICA03 medical and health sciences0302 clinical medicineC9orf72medicineAlleleAmyotrophic lateral sclerosisAmyotrophic lateral sclerosiAgedAtaxin-2Regulator geneAmyotrophic lateral sclerosis; ATXN2; C9ORF72; Phenotype; Neuroscience (all); Medicine (all); Aging; Developmental Biology; Geriatrics and Gerontology; Neurology (clinical)GeneticsDNA Repeat ExpansionNeuroscience (all)ProteinMedicine (all)General NeuroscienceATXN2Middle AgedDNA Repeat Expansionmedicine.diseaseAmyotrophic lateral sclerosis3. Good healthC9orf72 ProteinAmyotrophic lateral sclerosis; ATXN2; C9ORF72; Phenotype; Neurology (clinical); Neuroscience (all); Aging; Developmental Biology; Geriatrics and GerontologyPhenotypeItalyPopulation studyFemaleSettore MED/26 - NeurologiaNeurology (clinical)Geriatrics and GerontologyTrinucleotide repeat expansion030217 neurology & neurosurgeryHumanDevelopmental Biology
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Variant recurrence in neurodevelopmental disorders: the use of publicly available genomic data identifies clinically relevant pathogenic missense var…

2019

Next-generation sequencing has revealed the major impact of de novo variants (DNVs) in developmental disorders (DD) such as intellectual disability, autism, and epilepsy. However, a substantial fraction of these predicted pathogenic DNVs remains challenging to distinguish from background DNVs, notably the missense variants acting via nonhaploinsufficient mechanisms on specific amino acid residues. We hypothesized that the detection of the same missense variation in at least two unrelated individuals presenting with a similar phenotype could be a powerful approach to reveal novel pathogenic variants. We looked for variations independently present in both our database of >1200 solo exomes and…

Male0301 basic medicineCandidate geneDevelopmental DisabilitiesMutation Missense030105 genetics & heredityBiology03 medical and health sciencesNeurodevelopmental disorderIntellectual DisabilityDatabases GeneticIntellectual disabilitymedicineHumansMissense mutationExomeGenetic Predisposition to DiseaseGenetic TestingAutistic DisorderGeneGenetics (clinical)Exome sequencingGeneticsComputational BiologyHigh-Throughput Nucleotide SequencingGenomicsSequence Analysis DNAmedicine.diseasePhenotype030104 developmental biologyNeurodevelopmental DisordersAutismFemaleTranscription FactorsGenetics in Medicine
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Novel Mutations in the NKX2.1 gene and the PAX8 gene in a Boy with Brain-Lung-Thyroid Syndrome

2017

Abstract Objective To elucidate the molecular mechanism which causes thyroid dysgenesis (TD) in a boy with brain-lung-thyroid syndrome. Design, patients, measurements We describe a patient with TD, respiratory disease and cerebral palsy who is heterozygous for mutations in two different genes, the PAX8 (p.E234K) and the NKX2.1 (p.A329GfsX108). In vitro studies were performed to functionally characterize these mutations. Congenital hypothyroidism (CH) was identified by neonatal screening associated with a hypoplastic thyroid gland. Postpartum he developed a brain-lung-thyroid syndrome with severe respiratory failure, symptomatic epilepsy and a considerable psychomotor retardation. The DNA-bi…

Male0301 basic medicineCandidate geneEndocrinology Diabetes and MetabolismThyroid Nuclear Factor 1030105 genetics & heredityBiologymedicine.disease_causeThyroid dysgenesisPAX8 Transcription Factor03 medical and health sciencesEndocrinologyChoreaCongenital HypothyroidismInternal MedicinemedicineHumansChildAthetosisGeneRespiratory Distress Syndrome NewbornMutationPsychomotor retardationGeneral Medicinemedicine.diseasePhenotypeCongenital hypothyroidismMutationCancer researchmedicine.symptomPAX8Experimental and Clinical Endocrinology & Diabetes
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Heterozygous HMGB1 loss-of-function variants are associated with developmental delay and microcephaly

2021

International audience; 13q12.3 microdeletion syndrome is a rare cause of syndromic intellectual disability. Identification and genetic characterization of patients with 13q12.3 microdeletion syndrome continues to expand the phenotypic spectrum associated with it. Previous studies identified four genes within the approximately 300 Kb minimal critical region including two candidate protein coding genes: KATNAL1 and HMGB1. To date, no patients carrying a sequence-level variant or a single gene deletion in HMGB1 or KATNAL1 have been described. Here we report six patients with loss-of-function variants involving HMGB1 and who had phenotypic features similar to the previously described 13q12.3 m…

Male0301 basic medicineHeterozygoteMicrocephalyAdolescentDNA Copy Number VariationsLanguage delay[SDV]Life Sciences [q-bio]KaryotypeInheritance Patternschemical and pharmacologic phenomena030105 genetics & heredityBiologydysmorphic featuresloss of function mutation03 medical and health sciencesExome SequencingIntellectual disabilityGeneticsmedicineHumansGenetic Predisposition to DiseaseHMGB1 ProteinChildGeneGenetic Association StudiesIn Situ Hybridization FluorescenceGenetics (clinical)Loss functionGeneticsHMGB1FaciesExonsdevelopmental disabilitiesMicrodeletion syndromemedicine.diseasePhenotypePhenotype030104 developmental biologyChild PreschoolMicrocephalyFemaleHaploinsufficiency
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Diagnostic strategy in segmentation defect of the vertebrae: a retrospective study of 73 patients

2018

BackgroundSegmentation defects of the vertebrae (SDV) are non-specific features found in various syndromes. The molecular bases of SDV are not fully elucidated due to the wide range of phenotypes and classification issues. The genes involved are in the Notch signalling pathway, which is a key system in somitogenesis. Here we report on mutations identified in a diagnosis cohort of SDV. We focused on spondylocostal dysostosis (SCD) and the phenotype of these patients in order to establish a diagnostic strategy when confronted with SDV.Patients and methodsWe used DNA samples from a cohort of 73 patients and performed targeted sequencing of the five known SCD-causing genes (DLL3,MESP2,LFNG,HES7…

Male0301 basic medicineOncologymedicine.medical_specialtyCandidate geneAdolescent030105 genetics & heredityspondylocostal dysostosisdiagnostic strategysegmentation defect of the vertebraewhole exome sequencingLFNG03 medical and health sciencesgene panelInternal medicineExome SequencingBasic Helix-Loop-Helix Transcription FactorsGeneticsmedicineHumansFLNBChildGenetics (clinical)Exome sequencingBone Diseases Developmentalbusiness.industryIntracellular Signaling Peptides and ProteinsGlycosyltransferasesInfantMembrane ProteinsRetrospective cohort studymedicine.diseasePhenotypeSpineSpondylocostal dysostosisPedigreePhenotype[SDV.GEN.GH]Life Sciences [q-bio]/Genetics/Human geneticsChild PreschoolMutationCohortFemaleT-Box Domain Proteinsbusiness
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Recognizable neonatal clinical features of aplasia cutis congenita

2020

Abstract Background Aplasia cutis congenita (ACC), classified in nine groups, is likely to be underreported, since milder isolated lesions in wellbeing newborns could often be undetected, and solitary lesions in the context of polymalformative syndromes could not always be reported. Regardless of form and cause, therapeutic options have in common the aim to restore the deficient mechanical and immunological cutaneous protection and to limit the risk of fluid leakage or rupture of the exposed organs. We aimed to review our institutional prevalence, comorbidities, treatment and outcome of newborns with ACC. Methods We conducted a retrospective study including all newborns affected by ACC and …

Male0301 basic medicinePediatricsmedicine.medical_specialtyMeningomyeloceleAbdominal compartment syndromeContext (language use)030105 genetics & heredityAplasia cutis congenita03 medical and health sciencesEctodermal DysplasiaPrevalenceHumansMedicineBody Weights and MeasuresRetrospective StudiesPregnancybusiness.industryResearchAbdominal wall defectInfant Newbornlcsh:RJ1-570Gestational agelcsh:PediatricsRetrospective cohort studyPrognosismedicine.diseaseSurvival RateAbdominal wall defectRetrospective study030104 developmental biologyItalyScalp defectFemaleApgar scoreJunctional epidermolysis bullosamedicine.symptombusiness
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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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