Search results for "Nail patella"

showing 4 items of 4 documents

9q33.3q34.11 microdeletion: new contiguous gene syndrome encompassing STXBP1, LMX1B and ENG genes assessed using reverse phenotyping

2016

International audience; The increasing use of array-CGH in malformation syndromes with intellectual disability could lead to the description of new contiguous gene syndrome by the analysis of the gene content of the microdeletion and reverse phenotyping. Thanks to a national and international call for collaboration by Achropuce and Decipher, we recruited four patients carrying de novo overlapping deletions of chromosome 9q33.3q34.11, including the STXBP1, the LMX1B and the ENG genes. We restrained the selection to these three genes because the effects of their haploinsufficency are well described in the literature and easily recognizable clinically. All deletions were detected by array-CGH …

0301 basic medicineMale[ SDV.MHEP.PED ] Life Sciences [q-bio]/Human health and pathology/PediatricsHaploinsufficiencycerebral hypomyelinationwest-syndromeBioinformaticsCraniofacial Abnormalities0302 clinical medicineIntellectual disabilitySTXBP1ChildGenetics (clinical)Nail patella syndromeGeneticsEndoglinSyndrome3. Good healthdevelopmental delayPhenotypeintellectual disabilityMedical geneticsFemaleChromosome DeletionHaploinsufficiencyChromosomes Human Pair 9medicine.medical_specialtyAdolescentLIM-Homeodomain ProteinsBiologyContiguous gene syndromeArticle03 medical and health sciencesMunc18 ProteinsGenetic linkageGeneticsmedicineHumansde-novo mutations[SDV.MHEP.PED]Life Sciences [q-bio]/Human health and pathology/PediatricsdiseaseEpilepsyinfantile epileptic encephalopathyassociationdeletionsmedicine.diseaseHuman genetics030104 developmental biologynail-patella syndrome030217 neurology & neurosurgeryTranscription Factors
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Mutations in LMX1B cause abnormal skeletal patterning and renal dysplasia in nail patella syndrome

1998

The LIM-homeodomain protein Lmxlb plays a central role in dorso-ventral patterning of the vertebrate limb1. Targeted disruption of Lmxlb results in skeletal defects including hypoplas-tic nails, absent patellae and a unique form of renal dysplasia (see accompanying manuscript by H. Chen et al.; ref. 2). These features are reminiscent of the dominantly inherited skeletal malformation nail patella syndrome (NFS). We show that LMX1B maps to the NFS locus and that three independent NFS patients carry de novo heterozygous mutations in this gene. Functional studies show that one of these mutations disrupts sequence-specific DNA binding, while the other two mutations result in premature terminatio…

HeterozygotePathologymedicine.medical_specialtyLIM-Homeodomain ProteinsMolecular Sequence DataLocus (genetics)BiologyKidneyBone and BonesMiceGene mappingNail-Patella SyndromeGeneticsmedicineAnimalsHumansAmino Acid SequenceGeneBody PatterningNail patella syndromeHomeodomain ProteinsGeneticsBase SequenceDysostosismedicine.diseasePhenotypeRenal dysplasiaMutationHomeotic geneTranscription FactorsNature Genetics
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Mutation Analysis of LMX1B Gene in Nail-Patella Syndrome Patients

1998

SummaryNail-patella syndrome (NPS), a pleiotropic disorder exhibiting autosomal dominant inheritance, has been studied for >100 years. Recent evidence shows that NPS is the result of mutations in the LIM-homeodomain gene LMX1B. To determine whether specific LMX1B mutations are associated with different aspects of the NPS phenotype, we screened a cohort of 41 NPS families for LMX1B mutations. A total of 25 mutations were identified in 37 families. The nature of the mutations supports the hypothesis that NPS is the result of haploinsufficiency for LMX1B. There was no evidence of correlation between aspects of the NPS phenotype and specific mutations.

inorganic chemicalsGenotype-phenotype correlationDNA Mutational AnalysisLIM-Homeodomain ProteinsHomeodomainHaploinsufficiencyHeteroduplex AnalysisBiologymedicine.disease_causeGenetic determinismNail patellaNail-Patella SyndromeGenotypemental disordersmedicineGeneticsAnimalsHumansInsulinGenetics(clinical)Promoter Regions GeneticGeneGenetics (clinical)health care economics and organizationsNail patella syndromeGenes DominantGeneticsFamily HealthHomeodomain ProteinsMutationLMX1B.technology industry and agricultureDNArespiratory systemmedicine.diseasePhenotypeRatsPhenotypeMutationCancer researchMutation testingHaploinsufficiencyResearch ArticleTranscription FactorsThe American Journal of Human Genetics
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Regulation of glomerular basement membrane collagen expression by LMX1B contributes to renal disease in nail patella syndrome.

2001

Basement membrane (BM) morphogenesis is critical for normal kidney function. Heterotrimeric type IV collagen, composed of different combinations of six alpha-chains (1-6), is a major matrix component of all BMs (ref. 2). Unlike in other BMs, glomerular BM (GBM) contains primarily the alpha 3(IV) and alpha 4(IV) chains, together with the alpha 5(IV) chain. A poorly understood, coordinated temporal and spatial switch in gene expression from ubiquitously expressed alpha 1(IV) and alpha 2(IV) collagen to the alpha 3(IV), alpha 4(IV) and alpha 5(IV) chains occurs during normal embryogenesis of GBM (ref. 4). Structural abnormalities of type IV collagen have been associated with diverse biological…

medicine.medical_specialtyTranscription GeneticCellular differentiationKidney GlomerulusLIM-Homeodomain ProteinsMolecular Sequence DataBiologyBasement MembraneType IV collagenMiceNail-Patella SyndromeInternal medicineGeneticsmedicineGoodpasture syndromeAnimalsRenal InsufficiencyAlport syndromeNail patella syndromeBasement membraneRegulation of gene expressionHomeodomain ProteinsGlomerular basement membranemedicine.diseaseMolecular biologyMice Mutant StrainsExtracellular Matrixmedicine.anatomical_structureEndocrinologyGene Expression RegulationCollagenTranscription FactorsNature genetics
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