Search results for "exome sequencing"

showing 10 items of 154 documents

Further delineation of a rare recessive encephalomyopathy linked to mutations in GFER thanks to data sharing of whole exome sequencing data

2017

Background Alterations in GFER gene have been associated with progressive mitochondrial myopathy, congenital cataracts, hearing loss, developmental delay, lactic acidosis and respiratory chain deficiency in 3 siblings born to consanguineous Moroccan parents by homozygosity mapping and candidate gene approach (OMIM#613076). Next generation sequencing recently confirmed this association by the finding of compound heterozygous variants in 19-year-old girl with a strikingly similar phenotype, but this ultra-rare entity remains however unknown from most of the scientific community. Materials and methods Whole exome sequencing was performed as part of a "diagnostic odyssey" for suspected mitochon…

AdultMale0301 basic medicineHeterozygoteCandidate geneAdolescentdata sharingMitochondrial diseaseCompound heterozygosityBioinformaticsYoung Adult03 medical and health sciencesMitochondrial myopathyMitochondrial EncephalomyopathiesExome SequencingGeneticsHumansMedicineGenetic Predisposition to DiseaseOxidoreductases Acting on Sulfur Group Donorswhole-exome sequencingChildExomeCytochrome ReductasesGenetics (clinical)Exome sequencing[SDV.GEN]Life Sciences [q-bio]/Geneticsbusiness.industryGFERDisease gene identificationmedicine.diseasePedigree3. Good health030104 developmental biologymitochondrial conditionMutationCongenital cataractsFemale[ SDV.GEN ] Life Sciences [q-bio]/GeneticsbusinessClinical Genetics
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Phenotype and natural history of inherited neuropathies caused byHSJ1c.352+1G>A mutation

2015

Mutations in the HSJ1 ( Heat-Shock Protein J1 ) gene, also called DNAJB2 (DnaJ (Hsp40) homologue, subfamily B, member 2), have been recently described as a cause of hereditary neuropathies. The HSJ1 c.352+1G>A mutation in homozygote state has been reported as the causative mutation in a single family with autosomal recessive distal hereditary motor neuropathy (dHMN).1 Since then, two other families with different HSJ1 mutations have been described: one with a dHMN phenotype and the other with a Charcot-Marie-Tooth disease type 2 (CMT2) phenotype.2 We identified the HSJ1 c.352+1G>A mutation in 10 patients who underwent long-lasting follow-up. We describe their phenotype and clinical evolutio…

AdultMale0301 basic medicineNeural ConductionCell Cycle ProteinsNeurological examinationDisease03 medical and health sciencessymbols.namesake0302 clinical medicineCharcot-Marie-Tooth DiseasemedicineHumansGeneHeat-Shock ProteinsExome sequencingAdaptor Proteins Signal TransducingGenetic testingGeneticsSanger sequencingmedicine.diagnostic_testbusiness.industryNuclear ProteinsMiddle AgedPhenotypePsychiatry and Mental healthPhenotype030104 developmental biologySpainMutationMutation (genetic algorithm)symbolsFemaleSurgeryNeurology (clinical)Hereditary Sensory and Motor Neuropathybusiness030217 neurology & neurosurgeryJournal of Neurology, Neurosurgery & Psychiatry
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Hereditary angioedema with a mutation in the plasminogen gene

2017

Background Hereditary angioedema (HAE) with normal C1-INH (HAEnCI) may be linked to specific mutations in the coagulation factor 12 (FXII) gene (HAE-FXII) or functional mutations in other genes that are still unknown. We sought to identify and characterize a hitherto unknown type of HAE with normal C1-INH and without mutation in the F12 gene. Methods The study comprised analysis of whole-exome sequencing, Sanger sequencing, and clinical data of patients. Results We detected a mutation in the plasminogen (PLG) gene in patients with HAEnCI. The mutation c.9886A>G was located in exon 9 leading to the missense mutation p.Lys330Glu (K330E) in the kringle 3 domain of the PLG protein. The mutation…

AdultMale0301 basic medicinePathologymedicine.medical_specialtyAdolescentImmunologyMutation MissenseGene mutationBiologyYoung Adult03 medical and health sciencesExonsymbols.namesake0302 clinical medicineGermanyExome SequencingmedicineHumansImmunology and AllergyMissense mutationChildExome sequencingAgedSanger sequencingAngioedemas HereditaryAutosomal dominant traitPlasminogenMiddle Agedmedicine.disease030104 developmental biology030228 respiratory systemChild PreschoolMutationMutation (genetic algorithm)Hereditary angioedemasymbolsFemaleAllergy
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A constitutive BCL2 down-regulation aggravates the phenotype of PKD1-mutant-induced polycystic kidney disease

2017

IF 5.340; International audience; The main identified function of BCL2 protein is to prevent cell death by apoptosis. Mice knock-out for Bcl2 demonstrate growth retardation, severe polycystic kidney disease (PKD), gray hair and lymphopenia, and die prematurely after birth. Here, we report a 40-year-old male referred to for abdominal and thoracic aortic dissection with associated aortic root aneurysm, PKD, lymphocytopenia with a history of T cell lymphoblastic lymphoma, white hair since the age of 20, and learning difficulties. PKD, which was also detected in the father and sister, was related to an inherited PKD1 mutation. The combination of PKD with gray hair and lymphocytopenia was also r…

AdultMale0301 basic medicineTRPP Cation Channelsphenotypebcl2 geneBiologymicro rnaMice03 medical and health sciencesdown-regulationsymptom aggravating factorshemic and lymphatic diseasest-lymphocyteGene expressionGeneticsmedicinePolycystic kidney diseaseAnimalsHumansGenetic Predisposition to Disease[ SDV.GEN.GH ] Life Sciences [q-bio]/Genetics/Human geneticsgenesMolecular BiologyGeneGenetics (clinical)Exome sequencingMice KnockoutPKD1apoptosisExonsGeneral MedicinePolycystic Kidney Autosomal Dominantmedicine.diseasePhenotypePedigreeUp-Regulation3. Good healthMicroRNAs030104 developmental biologyMRNA SequencingProto-Oncogene Proteins c-bcl-2[SDV.GEN.GH]Life Sciences [q-bio]/Genetics/Human geneticsImmunologyCancer researchLymphocytopeniapolycystic kidney diseasesbcl-2 proteinHuman Molecular Genetics
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Phenotype associated with TAF2 biallelic mutations: a clinical description of four individuals and review of the literature

2021

International audience; Transcription factor IID is a multimeric protein complex that is essential for the initiation of transcription by RNA polymerase II. One of its critical components, the TATA-binding protein-associated factor 2, is encoded by the gene TAF2. Pathogenic variants of this gene have been shown to be responsible for the Mental retardation, autosomal recessive 40 syndrome. This syndrome is characterized by severe intellectual disability, postnatal microcephaly, pyramidal signs and thin corpus callosum. Until now, only three families have been reported separately. Here we report four individuals, from two unrelated families, who present with severe intellectual disability and…

AdultMaleAdolescentFoot Deformities CongenitalDevelopmental DisabilitiesAutosomal recessiveIntellectual disabilityPostnatal microcephaly[SDV.GEN] Life Sciences [q-bio]/GeneticsBiologyCorpus Callosum03 medical and health sciencesNeurodevelopmental disorderNeurodevelopmental disorderIntellectual disabilityGeneticsmedicineHumansMissense mutationGlobal developmental delayTAF2ChildGeneAllelesGenetics (clinical)Exome sequencing030304 developmental biologyGeneticsTATA-Binding Protein Associated Factors0303 health sciences[SDV.GEN]Life Sciences [q-bio]/Genetics030305 genetics & heredityGeneral Medicinemedicine.diseasePhenotypeChild PreschoolTAF2MicrocephalyFemaleTranscription Factor TFIID
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Both rare and de novo copy number variants are prevalent in agenesis of the corpus callosum but not in cerebellar hypoplasia or polymicrogyria.

2013

Agenesis of the corpus callosum (ACC), cerebellar hypoplasia (CBLH), and polymicrogyria (PMG) are severe congenital brain malformations with largely undiscovered causes. We conducted a large-scale chromosomal copy number variation (CNV) discovery effort in 255 ACC, 220 CBLH, and 147 PMG patients, and 2,349 controls. Compared to controls, significantly more ACC, but unexpectedly not CBLH or PMG patients, had rare genic CNVs over one megabase (p = 1.48×10−3; odds ratio [OR] = 3.19; 95% confidence interval [CI] = 1.89–5.39). Rare genic CNVs were those that impacted at least one gene in less than 1% of the combined population of patients and controls. Compared to controls, significantly more AC…

AdultMaleCancer ResearchMicrocephalycongenital hereditary and neonatal diseases and abnormalitiesAdolescentDNA Copy Number Variationslcsh:QH426-470Developmental DisabilitiesPopulationGenome-wide association studyBiologyNervous System MalformationsCorpus callosumPolymorphism Single Nucleotide03 medical and health sciences0302 clinical medicineCerebellummental disordersGeneticsPolymicrogyriamedicineHumansCopy-number variationChildAgenesis of the corpus callosumeducationMolecular BiologyGenetics (clinical)Ecology Evolution Behavior and SystematicsExome sequencing030304 developmental biologyGenetics0303 health scienceseducation.field_of_studyGenome HumanInfant NewbornInfantMiddle Agedmedicine.disease3. Good healthMalformations of Cortical Developmentlcsh:GeneticsChild PreschoolFemaleAgenesis of Corpus Callosum030217 neurology & neurosurgeryResearch ArticleGenome-Wide Association StudyPLoS Genetics
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The EGR2 gene is involved in axonal Charcot-Marie-Tooth disease

2015

Background and purpose A three-generation family affected by axonal Charcot−Marie−Tooth disease (CMT) was investigated with the aim of discovering genetic defects and to further characterize the phenotype. Methods The clinical, nerve conduction studies and muscle magnetic resonance images of the patients were reviewed. A whole exome sequencing was performed and the changes were investigated by genetic studies, in silico analysis and luciferase reporter assays. Results A novel c.1226G>A change (p.R409Q) in the EGR2 gene was identified. Patients presented with a typical, late-onset axonal CMT phenotype with variable severity that was confirmed in the ancillary tests. The in silico studies sho…

AdultMaleEarly Growth Response Protein 2In silicomedicine.disease_causeCharcot-Marie-Tooth diseaseSeverity of Illness Indexhereditary motor sensory neuropathywhole exome sequencingYoung AdultCharcot-Marie-Tooth DiseasemedicineEGR2 geneHumansExomeeducationGeneExomeExome sequencingEarly Growth Response Protein 2Genetic testingAgedGeneticsAged 80 and overeducation.field_of_studyMutationmedicine.diagnostic_testbusiness.industryMiddle AgedPhenotypeAxonsPedigreePhenotypeNeurologyMutationFemaleNeurology (clinical)business
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Truncating mutations in the last exon of NOTCH2 cause a rare skeletal disorder with osteoporosis.

2010

Hajdu-Cheney syndrome is a rare autosomal dominant skeletal disorder with facial anomalies, osteoporosis and acro-osteolysis. We sequenced the exomes of six unrelated individuals with this syndrome and identified heterozygous nonsense and frameshift mutations in NOTCH2 in five of them. All mutations cluster to the last coding exon of the gene, suggesting that the mutant mRNA products escape nonsense-mediated decay and that the resulting truncated NOTCH2 proteins act in a gain-of-function manner.

AdultMaleHeterozygoteHajdu–Cheney syndromeAdolescentmedia_common.quotation_subjectNonsenseMolecular Sequence DataBiologymedicine.disease_causeHajdu-Cheney SyndromeFrameshift mutationExonYoung AdultRare DiseasesSkeletal disorderGeneticsmedicineHumansAmino Acid SequenceReceptor Notch2Frameshift MutationGeneExome sequencingmedia_commonGeneticsMutationBase SequenceDNAExonsMiddle Agedmedicine.diseasePedigreeCodon NonsenseChild PreschoolMutationFemaleSignal TransductionNature genetics
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Deciphering exome sequencing data: Bringing mitochondrial DNA variants to light

2019

The expanding use of exome sequencing (ES) in diagnosis generates a huge amount of data, including untargeted mitochondrial DNA (mtDNA) sequences. We developed a strategy to deeply study ES data, focusing on the mtDNA genome on a large unspecific cohort to increase diagnostic yield. A targeted bioinformatics pipeline assembled mitochondrial genome from ES data to detect pathogenic mtDNA variants in parallel with the "in-house" nuclear exome pipeline. mtDNA data coming from off-target sequences (indirect sequencing) were extracted from the BAM files in 928 individuals with developmental and/or neurological anomalies. The mtDNA variants were filtered out based on database information, cohort …

AdultMaleMitochondrial DNAAtaxiaAdolescentDevelopmental Disabilities[SDV]Life Sciences [q-bio]BiologyDNA MitochondrialGenomeHaplogroupYoung Adult03 medical and health sciencesExome SequencingGeneticsmedicineHumansChildExomeGenetics (clinical)Exome sequencingComputingMilieux_MISCELLANEOUSAged030304 developmental biologyAged 80 and overGenetics0303 health sciences030305 genetics & heredityInfant NewbornComputational BiologyGenetic VariationInfantMiddle AgedPhenotypeEarly DiagnosisChild PreschoolFemaleNervous System Diseasesmedicine.symptom
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Hearing impairment as an early sign of alpha-mannosidosis in children with a mild phenotype: Report of seven new cases.

2019

Alpha-mannosidosis (AM) is a very rare (prevalence: 1/500000 births) autosomal recessive lysosomal storage disorder. It is characterized by multi-systemic involvement associated with progressive intellectual disability, hearing loss, skeletal anomalies, and coarse facial features. The spectrum is wide, from very severe and lethal to a milder phenotype that usually progresses slowly. AM is caused by a deficiency of lysosomal alpha-mannosidase. A diagnosis can be established by measuring the activity of lysosomal alpha-mannosidase in leucocytes and screening for abnormal urinary excretion of mannose-rich oligosaccharides. Genetic confirmation is obtained with the identification of MAN2B1 muta…

AdultMalePediatricsmedicine.medical_specialtyAdolescentHearing lossAlpha-mannosidosisUrinary systemYoung Adultalpha-MannosidaseIntellectual DisabilityIntellectual disabilityExome SequencingGeneticsmedicineHumansChildHearing LossGenetics (clinical)Exome sequencingCoarse facial featuresbusiness.industrySiblingsEnzyme replacement therapymedicine.diseaseHypotoniaPhenotypeChild Preschoolalpha-MannosidosisFemalemedicine.symptombusinessLysosomesAmerican journal of medical genetics. Part A
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