0000000000824690

AUTHOR

André Reis

0000-0002-6301-6363

showing 8 related works from this author

Further delineation of the female phenotype with KDM5C disease causing variants: 19 new individuals and review of the literature.

2020

X-linked intellectual disability (XLID) is a genetically heterogeneous condition involving more than 100 genes. To date, 35 pathogenic variants have been reported in the lysine specific demethylase 5C (KDM5C) gene. KDM5C variants are one of the major causes of moderate to severe XLID. Affected males present with short stature, distinctive facial features, behavioral disorders, epilepsy, and spasticity. For most of these variants, related female carriers have been reported, but phenotypic descriptions were poor. Here, we present clinical and molecular features of 19 females carrying 10 novel heterozygous variants affecting KDM5C function, including five probands with de novo variants. Four h…

0301 basic medicineProbandAdultMaleHeterozygoteX-linked intellectual disabilityGenetic counselingDisease030105 genetics & heredityBiologyShort stature03 medical and health sciencesYoung AdultGenes X-LinkedIntellectual DisabilityIntellectual disabilityGeneticsmedicineHumans10. No inequalityExomeGenetics (clinical)GeneticsHistone DemethylasesEpilepsyGenetic heterogeneityGenetic Variationmedicine.disease3. Good health030104 developmental biologyPhenotypeChild PreschoolMental Retardation X-LinkedFemalemedicine.symptomClinical geneticsREFERENCES
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TALPID3 controls centrosome and cell polarity and the human ortholog KIAA0586 is mutated in Joubert syndrome (JBTS23)

2015

Joubert syndrome (JBTS) is a severe recessive neurodevelopmental ciliopathy which can affect several organ systems. Mutations in known JBTS genes account for approximately half of the cases. By homozygosity mapping and whole-exome sequencing, we identified a novel locus, JBTS23, with a homozygous splice site mutation in KIAA0586 (alias TALPID3), a known lethal ciliopathy locus in model organisms. Truncating KIAA0586 mutations were identified in two additional patients with JBTS. One mutation, c.428delG (p.Arg143Lysfs*4), is unexpectedly common in the general population and may be a major contributor to JBTS. We demonstrate KIAA0586 protein localization at the basal body in human and mouse p…

QH301-705.5chickenSciencePopulationCell Cycle ProteinsBiologymedicine.disease_causeRetinaGeneral Biochemistry Genetics and Molecular BiologyJoubert syndromeMiceTalpid3CerebellumJoubert syndromeCiliogenesismedicineAnimalsHumansBasal bodyAbnormalities MultiplehumanEye AbnormalitiesBiology (General)Human Biology and MedicineeducationmouseGeneticsMutationeducation.field_of_studyGeneral Immunology and MicrobiologyGeneral NeuroscienceCiliumQRGeneral MedicineKidney Diseases Cysticmedicine.diseaseKIAA05863. Good healthDisease Models Animalcell polarityCiliopathyDevelopmental Biology and Stem CellsciliopathycentrosomeCentrosomeMutationMedicineResearch ArticleeLife
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Bainbridge-Ropers syndrome caused by loss-of-function variants in ASXL3: a recognizable condition

2016

International audience; Truncating ASXL3 mutations were first identified in 2013 by Bainbridge et al. as a cause of syndromic intellectual disability in four children with similar phenotypes using whole-exome sequencing. The clinical features - postulated by Bainbridge et al. to be overlapping with Bohring-Opitz syndrome - were developmental delay, severe feeding difficulties, failure to thrive and neurological abnormalities. This condition was included in OMIM as 'Bainbridge-Ropers syndrome' (BRPS, #615485). To date, a total of nine individuals with BRPS have been published in the literature in four reports (Bainbridge et al., Dinwiddie et al, Srivastava et al. and Hori et al.). In this re…

Male0301 basic medicinemedicine.medical_specialtyMicrocephalyfamilyAdolescentphenotypeDevelopmental DisabilitiesSevere muscular hypotoniaMedizinTrigonocephaly030105 genetics & heredityBiologyArticle03 medical and health sciencesIntellectual disabilityGeneticsmedicineHumansCraniofacial[ SDV.GEN.GH ] Life Sciences [q-bio]/Genetics/Human geneticsnovo frameshift mutationgenedisordersGenetics (clinical)GeneticsInfantSyndromemedicine.diseaseDermatologyFailure to Thrive030104 developmental biology[SDV.GEN.GH]Life Sciences [q-bio]/Genetics/Human geneticsintellectual disabilityChild Preschoolbohring-opitz syndromeMutationFailure to thriveMedical geneticsFemalemedicine.symptomBohring–Opitz syndromeTranscription Factors
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Author response: TALPID3 controls centrosome and cell polarity and the human ortholog KIAA0586 is mutated in Joubert syndrome (JBTS23)

2015

CentrosomeCell polaritymedicineBiologymedicine.diseaseJoubert syndromeCell biology
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Expanding the Phenotype Associated with NAA10-Related N-Terminal Acetylation Deficiency

2016

International audience; N-terminal acetylation is a common protein modification in eukaryotes associated with numerous cellular processes. Inherited mutations in NAA10, encoding the catalytic subunit of the major N-terminal acetylation complex NatA have been associated with diverse, syndromic X-linked recessive disorders, whereas de novo missense mutations have been reported in one male and one female individual with severe intellectual disability but otherwise unspecific phenotypes. Thus, the full genetic and clinical spectrum of NAA10 deficiency is yet to be delineated. We identified three different novel and one known missense mutation in NAA10, de novo in 11 females, and due to maternal…

0301 basic medicineMaleModels MolecularMicrocephalyMutation MissenseBiologyGermlineKEY WORDS: NAA1003 medical and health sciencesGermline mutationGenes X-LinkedIntellectual disabilityGeneticsmedicineMissense mutationHumansGenetic Predisposition to DiseaseN-Terminal Acetyltransferase EGenetics (clinical)Genetic Association StudiesGerm-Line MutationN-Terminal Acetyltransferase AResearch ArticlesGeneticsX-linked[SDV.GEN]Life Sciences [q-bio]/GeneticsRegional Council of BurgundyMosaicismN-terminal acetylationAcetylationmedicine.diseasePhenotypePedigreeOgden SyndromeX‐linked030104 developmental biologyNAA10intellectual disabilityN‐terminal acetylationContract grant sponsors: Dijon University HospitalFemale[ SDV.GEN ] Life Sciences [q-bio]/GeneticsNAA15Research ArticleHuman Mutation
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NDST1 missense mutations in autosomal recessive intellectual disability.

2014

NDST1 was recently proposed as a candidate gene for autosomal recessive intellectual disability in two families. It encodes a bifunctional GlcNAc N-deacetylase/N-sulfotransferase with important functions in heparan sulfate biosynthesis. In mice, Ndst1 is crucial for embryonic development and homozygous null mutations are perinatally lethal. We now report on two additional unrelated families with homozygous missense NDST1 mutations. All mutations described to date predict the substitution of conserved amino acids in the sulfotransferase domain, and mutation modeling predicts drastic alterations in the local protein conformation. Comparing the four families, we noticed significant overlap in …

AdultMaleModels MolecularCandidate geneAdolescentGenotypeProtein ConformationDNA Mutational AnalysisMutation MissenseGenes RecessiveBiologyBioinformaticsPolymorphism Single NucleotideAnimals Genetically ModifiedEpilepsyConsanguinityYoung AdultProtein structureIntellectual DisabilityIntellectual disabilityGeneticsmedicineMissense mutationAnimalsHumansChildGenetics (clinical)GeneticsGene knockdownMuscular hypotoniaBehavior AnimalComputational BiologyFaciesHigh-Throughput Nucleotide Sequencingmedicine.diseasePhenotypePedigreePhenotypeChild PreschoolGene Knockdown TechniquesDrosophilaFemaleSulfotransferasesGenome-Wide Association StudyAmerican journal of medical genetics. Part A
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Congenital nephrosis, mesangial sclerosis, and distinct eye abnormalities with microcoria: An autosomal recessive syndrome

2004

We observed the occurrence of congenital nephrotic syndrome (CNS) and distinct ocular anomalies in two unrelated families. Eleven children from both families presented with a similar course of renal disease starting with nephrotic syndrome and renal failure prenatally or immediately after birth that resulted in death before the age of 2 months. Kidney histopathology showed diffuse mesangial sclerosis (DMS). Clinically obvious eye abnormalities were recognized in six of the eight patients in whom sufficient clinical data were available. Ocular anomalies included enlarged or large appearing corneae in some cases suggesting buphthalmos, and extremely narrow, nonreactive pupils (microcoria). Pa…

medicine.medical_specialtyPathologygenetic structuresbusiness.industryNephrosisGlomerulonephritisMicrocoriamedicine.diseaseeye diseasesLenticonusBuphthalmosEndocrinologyMaldevelopmentInternal medicineGeneticsmedicinesense organsbusinessCongenital nephrotic syndromeNephrotic syndromeGenetics (clinical)American Journal of Medical Genetics Part A
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Expanding the clinical spectrum of COL1A1 mutations in different forms of glaucoma

2016

Background Primary congenital glaucoma (PCG) and early onset glaucomas are one of the major causes of children and young adult blindness worldwide. Both autosomal recessive and dominant inheritance have been described with involvement of several genes including CYP1B1, FOXC1, PITX2, MYOC and PAX6. However, mutations in these genes explain only a small fraction of cases suggesting the presence of further candidate genes. Methods To elucidate further genetic causes of these conditions whole exome sequencing (WES) was performed in an Italian patient, diagnosed with PCG and retinal detachment, and his unaffected parents. Sanger sequencing of the complete coding region of COL1A1 was performed in…

MaleEarly onset glaucomaCOL1A1AdolescentPAX6 Transcription Factorgenetic structures-Collagen Type IMedizinische FakultätHumansGenetics(clinical)Pharmacology (medical)Exomeddc:610Eye ProteinsCongenital glaucomaGlycoproteinsMedicine(all)Homeodomain ProteinsResearchWhole exome sequencingForkhead Transcription FactorsGlaucomaSequence Analysis DNAOsteogenesis Imperfectaeye diseasesCollagen Type I alpha 1 ChainCytoskeletal ProteinsCytochrome P-450 CYP1B1MutationOsteogenesis imperfectasense organsTranscription Factors
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