Search results for "Recessive"

showing 10 items of 85 documents

Autosomal Recessive Hypercholesterolemia

2018

Abstract Background Autosomal recessive hypercholesterolemia (ARH) is a rare lipid disorder characterized by premature atherosclerotic cardiovascular disease (ASCVD). There are sparse data for clinical management and cardiovascular outcomes in ARH. Objectives Evaluation of changes in lipid management, achievement of low-density lipoprotein cholesterol (LDL-C) goals and cardiovascular outcomes in ARH. Methods Published ARH cases were identified by electronic search. All corresponding authors and physicians known to treat these patients were asked to provide follow-up information, using a standardized protocol. Results We collected data for 52 patients (28 females, 24 males; 31.1 ± 17.1 years…

0301 basic medicinemedicine.medical_specialtyStatinAtherosclerotic cardiovascular diseasebusiness.industrymedicine.drug_class030204 cardiovascular system & hematologyLomitapide03 medical and health scienceschemistry.chemical_compound030104 developmental biology0302 clinical medicineEzetimibechemistryAutosomal Recessive HypercholesterolemiaInternal medicinemedicineEffective treatmentlipids (amino acids peptides and proteins)In patientCardiology and Cardiovascular MedicinebusinessCardiovascular outcomesmedicine.drugJournal of the American College of Cardiology
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CNGB3 mutations account for 50% of all cases with autosomal recessive achromatopsia

2005

Contains fulltext : 47591.pdf (Publisher’s version ) (Closed access) Achromatopsia is a congenital, autosomal recessively inherited disorder characterized by a lack of color discrimination, low visual acuity (<0.2), photophobia, and nystagmus. Mutations in the genes for CNGA3, CNGB3, and GNAT2 have been associated with this disorder. Here, we analyzed the spectrum and prevalence of CNGB3 gene mutations in a cohort of 341 independent patients with achromatopsia. In 163 patients, CNGB3 mutations could be identified. A total of 105 achromats carried apparent homozygous mutations, 44 were compound (double) heterozygotes, and 14 patients had only a single mutant allele. The derived CNGB3 mutatio…

AchromatopsiaGenetics and epigenetic pathways of disease [NCMLS 6]genetic structuresGATED CATION CHANNELCNGB3 mutationsNonsense mutationMutantCyclic Nucleotide-Gated Cation ChannelsColor Vision DefectsGenes RecessiveLocus (genetics)Gene mutationBiologyTOTAL COLOURBLINDNESSIon ChannelsCLONINGDogscyclic nucleotide-gated channelGNAT2GeneticsmedicineLOCUSAnimalsHumansMissense mutationNeurosensory disorders [UMCN 3.3]ACHM3 locusDog DiseasesAlleleAllelesGenetics (clinical)Geneticstotal colorblindnessGNAT2PHOTORECEPTORSDYSTROPHYmedicine.diseaseCONE DEGENERATIONGENEeye diseasesPhenotypeEvaluation of complex medical interventions [NCEBP 2]MutationRetinal Cone Photoreceptor Cellssense organsachromatopsiarod monochromacyALPHA-SUBUNIThuman activities
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Homozygous familial hypercholesterolemia in Italy: Clinical and molecular features

2020

Abstract Background and aims Homozygous familial hypercholesterolemia (HoFH) is a rare genetic disorder characterized by extremely elevated plasma levels of low density lipoprotein cholesterol (LDL-C) and high risk of premature atherosclerotic cardiovascular disease (ASCVD). HoFH is caused by pathogenic variants in several genes, such as LDLR, APOB and PCSK9, responsible for autosomal dominant hypercholesterolemia (ADH), and LDLRAP1 responsible for autosomal recessive hypercholesterolemia (ARH). Aim of this study was the review of the clinical and molecular features of patients with HoFH identified in Italy from 1989 to 2019. Methods Data were collected from lipid clinics and laboratories, …

Adult0301 basic medicinemedicine.medical_specialtyCandidate geneCandidate geneGenotype-phenotype correlationApolipoprotein BCandidate genes; Genotype-phenotype correlations; Homozygous familial hypercholesterolemia; Pathogenic variantsHomozygous familial hypercholesterolemiaGenotype-phenotype correlationsFamilial hypercholesterolemia030204 cardiovascular system & hematologyCompound heterozygosityCandidate genesHyperlipoproteinemia Type II03 medical and health sciences0302 clinical medicineInternal medicinemedicineHumansbiologybusiness.industryPCSK9HomozygoteGenetic disorderPathogenic variantsCandidate genes; Genotype-phenotype correlations; Homozygous familial hypercholesterolemia; Pathogenic variants;medicine.diseasePhenotype030104 developmental biologyEndocrinologyItalyReceptors LDLAutosomal Recessive HypercholesterolemiaMutationLDL receptorbiology.proteinlipids (amino acids peptides and proteins)Proprotein Convertase 9Cardiology and Cardiovascular Medicinebusiness
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Genotype and phenotype analysis of Friedreich's ataxia compound heterozygous patients

2000

Friedreich's ataxia is caused by mutations in the FRDA gene that encodes frataxin, a nuclear-encoded mitochondrial protein. Most patients are homozygous for the expansion of a GAA triplet repeat within the FRDA gene, but a few patients show compound heterozygosity for a point mutation and the GAA-repeat expansion. We analyzed DNA samples from a cohort of 241 patients with autosomal recessive or isolated spinocerebellar ataxia for the GAA triplet expansion. Patients heterozygous for the GAA expansion were screened for point mutations within the FRDA coding region. Molecular analyses included the single-strand conformation polymorphism analysis, direct sequencing, and linkage analysis with FR…

AdultHeterozygotecongenital hereditary and neonatal diseases and abnormalitiesAtaxiaGenotypeGenetic LinkageDNA Mutational AnalysisGenes RecessiveCompound heterozygosityLoss of heterozygosityTrinucleotide RepeatsIron-Binding ProteinsGenotypeGeneticsmedicineHumansPoint MutationAge of OnsetAlleleChildAllelesPolymorphism Single-Stranded ConformationalGenetics (clinical)Family HealthGeneticsbiologynutritional and metabolic diseasesmedicine.diseasePedigreePhosphotransferases (Alcohol Group Acceptor)PhenotypeFriedreich AtaxiaChild PreschoolFrataxinbiology.proteinSpinocerebellar ataxiamedicine.symptomTrinucleotide Repeat ExpansionTrinucleotide repeat expansionMicrosatellite Repeats
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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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Frequency and phenotype of SPG11 and SPG15 in complicated hereditary spastic paraplegia

2009

Background: Hereditary spastic paraplegias (HSP) are clinically and genetically highly heterogeneous. Recently, two novel genes, SPG11 ( spatacsin ) and SPG15 ( spastizin ), associated with autosomal recessive HSP, were identified. Clinically, both are characterised by complicated HSP and a rather similar phenotype consisting of early onset spastic paraplegia, cognitive deficits, thin corpus callosum (TCC), peripheral neuropathy and mild cerebellar ataxia. Objective: To compare the frequency of SPG11 and SPG15 in patients with early onset complicated HSP and to further characterise the phenotype of SPG11 and SPG15. Results: A sample of 36 index patients with early onset complicated HSP and …

AdultMaleAdolescentHereditary spastic paraplegiaGenes RecessiveCompound heterozygosityCorpus callosumCorpus CallosumYoung AdultGene FrequencyIntellectual DisabilitySpasticHumansMedicineMutation frequencyAllele frequencyGenetic Association StudiesPolymorphism GeneticCerebellar ataxiaSpastic Paraplegia Hereditarybusiness.industryProteinsmedicine.diseasePhenotypePsychiatry and Mental healthPhenotypeMutationImmunologyFemaleSurgeryNeurology (clinical)medicine.symptomCarrier ProteinsbusinessNeuroscienceJournal of Neurology, Neurosurgery &amp; Psychiatry
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Further evidence that D90A-SOD1 mutation is recessively inherited in ALS patients in Italy.

2008

Mutations in the Cu/Zn superoxide dismutase 1 (SOD1) gene have been reported to cause adult-onset autosomal dominant amyotrophic lateral sclerosis (FALS). In sporadic cases (SALS), de novo mutations in the SOD1 gene have occasionally been observed. All the SOD1 mutations are autosomal dominantly inherited with the exception of D90A. To date, in Italy, only two sporadic ALS cases carrying the D90A mutation have been reported in a homozygous state. We investigated for the presence of this mutation in 169 unrelated ALS patients from southern Italy. The genetic analysis revealed three ALS patients (1.8%) with mild phenotype carrying the homozygous D90A mutation.

AdultMaleGenotypeSOD1DNA Mutational AnalysisGenes RecessiveBiologyGenetic analysisSuperoxide dismutaseSuperoxide Dismutase-1GenotypemedicineHumansGenetic Predisposition to DiseaseAmyotrophic lateral sclerosisGeneDe novo mutationsAgedGeneticsSuperoxide DismutaseAmyotrophic Lateral SclerosisSOD1; SLA;General MedicineSOD1Middle Agedmedicine.diseaseMolecular biologyNeurologyItalyMutation (genetic algorithm)Mutationbiology.proteinFemaleNeurology (clinical)SLA
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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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Recessive multiple epiphyseal dysplasia (rMED): phenotype delineation in eighteen homozygotes for DTDST mutation R279W.

2003

Multiple epiphyseal dysplasia (MED) is a generalised skeletal dysplasia that although relatively mild is associated with significant morbidity. Joint pain, joint deformity, waddling gait, and short stature are the main clinical signs and symptoms. In the past, the disorder was subdivided into the milder Ribbing type, usually with flattened epiphyses,1 and the more severe Fairbank type with round epiphyses,2 but many cases were not classifiable as clearly either type.3 MED can be caused by mutations in at least six separate genes: COMP ,4–7 collagen IX ( COL9A1 , COL9A2 , and COL9A3 ),8–13 matrilin 3 ( MATN3 ),15 and the sulphate transporter, DTDST ( DTDST/SLC26A2 ). We have previously repor…

AdultMalePathologymedicine.medical_specialtyAdolescentAnion Transport ProteinsGenes RecessiveBiologySLC26A2ArginineOsteochondrodysplasiasShort statureMultiple epiphyseal dysplasiaGeneticsmedicineHumansChildGenetics (clinical)GeneticsAchondrogenesisSulfatesPoint mutationHomozygoteTryptophanChromosome MappingMembrane Transport ProteinsBiological TransportMiddle Agedmedicine.diseasePhenotypeGenetic defects of metabolism [UMCN 5.1]Amino Acid SubstitutionDysplasiaSulfate TransportersMutation (genetic algorithm)MutationMutation testingbiology.proteinFemalemedicine.symptomCarrier ProteinsLetter to JMGJournal of medical genetics
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Autosomal recessive hypercholesterolemia in a Sicilian kindred harboring the 432insA mutation of the ARH gene

2003

Abstract We describe a Sicilian family presenting a recessive form of hypercholesterolemia harboring a mutation of the autosomal recessive hypercholesterolemia (ARH) gene. In two of the three sibs, a 26-year-old male and a 22-year-old female, a severe hypercholesterolemia was diagnosed with very high levels of plasma cholesterol (15.9 and 12.2 mmol/l, respectively); tendon xanthomatas and xanthelasms were present and in the male proband was documented a diffuse coronary atherosclerotic disease with a rapid and fatal progression. Both the parents had normal or slightly increased levels of plasma cholesterol. All causes of secondary hypercholesterolemia were ruled out as well as an involvemen…

AdultMaleProbandHeterozygotemedicine.medical_specialtyApolipoprotein BDNA Mutational AnalysisMolecular Sequence DataGenes RecessiveARH geneCoronary AngiographyRisk AssessmentGenetic determinismHyperlipoproteinemia Type IIInternal medicinemedicineHumansPoint MutationRNA MessengerSicilyGeneAdaptor Proteins Signal TransducingHypolipidemic AgentsGeneticsBase SequencebiologySiblingsCoronary StenosisHeterozygote advantageAutosomal recessive hypercholesterolemiaPedigreeAdaptor Proteins Vesicular TransportTreatment OutcomeEndocrinologyAutosomal Recessive HypercholesterolemiaMutationLDL receptorMutation (genetic algorithm)biology.proteinFemalelipids (amino acids peptides and proteins)Cardiology and Cardiovascular MedicineFollow-Up StudiesAtherosclerosis
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