Search results for "Gene Order"

showing 10 items of 26 documents

LPS challenge regulates gene expression and tissue localization of a Ciona intestinalis gene through an alternative polyadenylation mechanism.

2013

A subtractive hybridization strategy for the identification of differentially expressed genes was performed between LPS-challenged and naive Ciona intestinalis. This strategy allowed the characterization of two transcripts (Ci8short and Ci8long) generated by the use of two Alternative Polyadenylation sites. The Ci8long transcript contains a protein domain with relevant homology to several components of the Receptor Transporting Protein (RTP) family not present in the Ci8short mRNA. By means of Real Time PCR and Northern Blot, the Ci8short and Ci8long transcripts showed a different pattern of gene expression with the Ci8short mRNA being strongly activated after LPS injection in the pharynx. …

LipopolysaccharidesPolyadenylationCiona intestinaliSettore BIO/05 - Zoologialcsh:MedicineGene ExpressionBiochemistryGene expressionGene Orderlcsh:Science3' Untranslated RegionsPhylogenyIn Situ HybridizationRegulation of gene expressionMultidisciplinaryInnate ImmunityCiona intestinalisPhylogeneticsProtein TransportCytochemistryResearch ArticleDNA ComplementaryMolecular Sequence DataImmunologyIn situ hybridizationBiologyPolyadenylationModel OrganismsGeneticsAnimalsCiona intestinalisEvolutionary SystematicsNorthern blotAmino Acid SequenceRNA MessengerBiologyEvolutionary BiologyBase SequenceThree prime untranslated regionlcsh:RImmunityComputational BiologyProteinsImmune Defensebiology.organism_classificationMolecular biologyGenesinflammationSuppression subtractive hybridizationlcsh:Q5' Untranslated RegionsCiona intestinalis; inflammationSequence AlignmentPloS one
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The DYRK1A gene is a cause of syndromic intellectual disability with severe microcephaly and epilepsy.

2012

Background DYRK1A plays different functions during development, with an important role in controlling brain growth through neuronal proliferation and neurogenesis. It is expressed in a gene dosage dependent manner since dyrk1a haploinsufficiency induces a reduced brain size in mice, and DYRK1A overexpression is the candidate gene for intellectual disability (ID) and microcephaly in Down syndrome. We have identified a 69 kb deletion including the 5′ region of the DYRK1A gene in a patient with growth retardation, primary microcephaly, facial dysmorphism, seizures, ataxic gait, absent speech and ID. Because four patients previously reported with intragenic DYRK1A rearrangements or 21q22 microd…

MaleCandidate geneDown syndromeMicrocephalyAdolescentGenotypeBiologyProtein Serine-Threonine KinasesBioinformaticsFrameshift mutationEpilepsyAngelman syndromeIntellectual DisabilityGene OrderGeneticsmedicineHumansChildGenetics (clinical)GeneticsEpilepsyBase SequenceFaciesElectroencephalographySyndromeProtein-Tyrosine Kinasesmedicine.diseasePhenotypeChild PreschoolSpeech delayMutationMicrocephalyFemalemedicine.symptomHaploinsufficiencyJournal of medical genetics
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Functional analysis of splicing mutations in MYO7A and USH2A genes.

2010

Usher syndrome is defined by the association of sensorineural hearing loss, retinitis pigmentosa and variable vestibular dysfunction. Many disease-causative mutations have been identified in MYO7A and USH2A genes, which play a major role in Usher syndrome type I and type II, respectively. The pathogenic nature of mutations that lead to premature stop codons is not questioned; nevertheless, additional studies are needed to verify the pathogenicity of some changes such as those putatively involved in the splice process. Five putative splice-site variants were detected in our cohort of patients: c.2283-1G>T and c.5856G>A in MYO7A and c.1841-2A>G, c.2167+5G>A and c.5298+1G>C in the USH2A gene. …

MaleGenotypeUsher syndromeRNA SplicingBiologyMyosinsmedicine.disease_causeExonChlorocebus aethiopsGene OrderGeneticsmedicineotorhinolaryngologic diseasesAnimalsHumansspliceGeneGenetics (clinical)GeneticsMutationExtracellular Matrix Proteinsmedicine.diseaseStop codonMyosin VIIaRNA splicingCOS CellsMutationFemaleRNA Splice SitesUsher SyndromesMinigeneClinical genetics
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Baraitser-Winter cerebrofrontofacial syndrome : Delineation of the spectrum in 42 cases

2015

International audience; Baraitser-Winter, Fryns-Aftimos and cerebrofrontofacial syndrome types 1 and 3 have recently been associated with heterozygous gain-of-function mutations in one of the two ubiquitous cytoplasmic actin-encoding genes ACTB and ACTG1 that encode beta- and gamma-actins. We present detailed phenotypic descriptions and neuroimaging on 36 patients analyzed by our group and six cases from the literature with a molecularly proven actinopathy (9 ACTG1 and 33 ACTB). The major clinical anomalies are striking dysmorphic facial features with hypertelorism, broad nose with large tip and prominent root, congenital non-myopathic ptosis, ridged metopic suture and arched eyebrows. Iris…

MaleMicrocephalyPathologyCraniofacial abnormality[SDV]Life Sciences [q-bio]MedizinGYRAL MALFORMATIONSCraniofacial AbnormalitiesFUNCTIONAL DIVERSITY0302 clinical medicinePtosisGene OrderGenetics(clinical)HypertelorismNon-U.S. Gov'tChildGenetics (clinical)ArthrogryposisDystonia0303 health sciencesResearch Support Non-U.S. Gov'tAnatomy3. Good healthPhenotypeChild PreschoolFemalemedicine.symptomAbnormalitiesMultipleRare cancers Radboud Institute for Health Sciences [Radboudumc 9]Adultmedicine.medical_specialtyAPPARENTLY UNDESCRIBED SYNDROMEAdolescentLissencephalyBiologyResearch SupportArticle03 medical and health sciencesYoung AdultSDG 3 - Good Health and Well-beingmedicineGeneticsJournal ArticleHumansAbnormalities MultiplePreschool030304 developmental biologySHALLOW ORBITSNeurodevelopmental disorders Donders Center for Medical Neuroscience [Radboudumc 7]GAMMA-ACTINPachygyriaFaciesmedicine.diseaseIRIS COLOBOMAActinsBETA-ACTINAbnormalities Multiple; Actins; Adolescent; Adult; Amino Acid Substitution; Child; Child Preschool; Craniofacial Abnormalities; Facies; Female; Gene Order; Genetic Loci; Humans; Male; Mutation; Phenotype; Young AdultAmino Acid SubstitutionGenetic LociFACIAL SYNDROMEMutation030217 neurology & neurosurgeryMENTAL-RETARDATIONGROWTH-RETARDATION
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In-Frame Mutations in Exon 1 of SKI Cause Dominant Shprintzen-Goldberg Syndrome

2012

International audience; Shprintzen-Goldberg syndrome (SGS) is characterized by severe marfanoid habitus, intellectual disability, camptodactyly, typical facial dysmorphism, and craniosynostosis. Using family-based exome sequencing, we identified a dominantly inherited heterozygous in-frame deletion in exon 1 of SKI. Direct sequencing of SKI further identified one overlapping heterozygous in-frame deletion and ten heterozygous missense mutations affecting recurrent residues in 18 of the 19 individuals screened for SGS; these individuals included one family affected by somatic mosaicism. All mutations were located in a restricted area of exon 1, within the R-SMAD binding domain of SKI. No mut…

MaleModels Molecularmedicine.disease_cause[SDV.BBM.BM] Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyMarfan SyndromeArachnodactylyExon0302 clinical medicineGene OrderMissense mutationGenetics(clinical)Child[ SDV.GEN.GH ] Life Sciences [q-bio]/Genetics/Human geneticsGenetics (clinical)Exome sequencingGenes DominantGenetics0303 health sciencesMutationShprintzen–Goldberg syndromeExonsPhenotypePedigreeDNA-Binding ProteinsPhenotypeChild PreschoolFemalemedicine.symptomAdultAdolescentMolecular Sequence Data[ SDV.BBM.BM ] Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyBiology[SDV.GEN.GH] Life Sciences [q-bio]/Genetics/Human genetics03 medical and health sciencesCamptodactylyCraniosynostosesYoung Adultstomatognathic systemReportProto-Oncogene ProteinsmedicineGeneticsHumansAmino Acid Sequence030304 developmental biologyFacies[SDV.BBM.BM]Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologymedicine.diseaseMolecular biologyProtein Structure TertiaryArachnodactyly[SDV.GEN.GH]Life Sciences [q-bio]/Genetics/Human geneticsMutationSequence Alignmenthuman activities030217 neurology & neurosurgery
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Platyzoan mitochondrial genomes.

2012

Platyzoa is a putative lophotrochozoan (spiralian) subtaxon within the protostome clade of Metazoa, comprising a range of biologically diverse, mostly small worm-shaped animals. The monophyly of Platyzoa, the relationships between the putative subgroups Platyhelminthes, Gastrotricha and Gnathifera (the latter comprising at least Gnathostomulida, "Rotifera" and Acanthocephala) as well as some aspects of the internal phylogenies of these subgroups are highly debated. Here we review how complete mitochondrial (mt) genome data contribute to these debates. We highlight special features of the mt genomes and discuss problems in mtDNA phylogenies of the clade. Mitochondrial genome data seem to be …

Mitochondrial DNARotiferaZoologyGenomeDNA MitochondrialAcanthocephalaEvolution MolecularMonophylyGene OrderGeneticsAnimalsSpiraliaCladeMolecular BiologyEcology Evolution Behavior and SystematicsPhylogenyPhylogenetic treebiologySequence Analysis DNAbiology.organism_classificationInvertebratesEvolutionary biologyGenetic CodePlatyhelminthsGenome MitochondrialProtostomePlatyzoaMolecular phylogenetics and evolution
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Mitochondrial genome sequence and gene order of Sipunculus nudus give additional support for an inclusion of Sipuncula into Annelida.

2010

Abstract Background Mitochondrial genomes are a valuable source of data for analysing phylogenetic relationships. Besides sequence information, mitochondrial gene order may add phylogenetically useful information, too. Sipuncula are unsegmented marine worms, traditionally placed in their own phylum. Recent molecular and morphological findings suggest a close affinity to the segmented Annelida. Results The first complete mitochondrial genome of a member of Sipuncula, Sipunculus nudus, is presented. All 37 genes characteristic for metazoan mtDNA were detected and are encoded on the same strand. The mitochondrial gene order (protein-coding and ribosomal RNA genes) resembles that of annelids, b…

Mitochondrial DNAlcsh:QH426-470Nematodalcsh:BiotechnologyAnnelidaBiologyGenomeDNA MitochondrialEvolution MolecularPhylogeneticslcsh:TP248.13-248.65ddc:570Sipunculus nudusGene OrderGeneticsAnimalsGeneInstitut für Biochemie und BiologiePhylogenyGeneticsSipunculaExpressed Sequence TagsAnnelidPhylogenetic treeSequence Analysis DNAbiology.organism_classificationlcsh:GeneticsGenes MitochondrialGenome MitochondrialBiotechnologyResearch ArticleBMC genomics
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Metallothionein Gene Family in the Sea Urchin Paracentrotus lividus: Gene Structure, Differential Expression and Phylogenetic Analysis

2017

Metallothioneins (MT) are small and cysteine-rich proteins that bind metal ions such as zinc, copper, cadmium, and nickel. In order to shed some light on MT gene structure and evolution, we cloned seven Paracentrotus lividus MT genes, comparing them to Echinodermata and Chordata genes. Moreover, we performed a phylogenetic analysis of 32 MTs from different classes of echinoderms and 13 MTs from the most ancient chordates, highlighting the relationships between them. Since MTs have multiple roles in the cells, we performed RT-qPCR and in situ hybridization experiments to understand better MT functions in sea urchin embryos. Results showed that the expression of MTs is regulated throughout de…

Models Molecular0301 basic medicineProtein Conformationmetallothionein; multigene families; evolution; metal; echinoderms; embryonic development; gene expressionCatalysiGene OrderMetallothioneinSea urchinPhylogenySpectroscopyPhylogenetic treebiologyEchinodermMetalGene Expression Regulation DevelopmentalComputer Science Applications1707 Computer Vision and Pattern RecognitionExonsGeneral MedicineAnatomyMultigene familiemultigene familiesComputer Science ApplicationsCell biologymedicine.anatomical_structureMetalsMultigene FamilyParacentrotusEchinoderms; Embryonic development; Evolution; Gene expression; Metal; Metallothionein; Multigene families; Catalysis; Molecular Biology; Computer Science Applications1707 Computer Vision and Pattern Recognition; Spectroscopy; Physical and Theoretical Chemistry; Organic Chemistry; Inorganic ChemistryMesenchymeSettore BIO/11 - Biologia MolecolareIn situ hybridizationArticleCatalysisParacentrotus lividusInorganic Chemistry03 medical and health sciencesbiology.animalevolutionmedicineAnimalsGene familyProtein Interaction Domains and MotifsAmino Acid SequencePhysical and Theoretical ChemistryGeneMolecular BiologydevelopmentechinodermsOrganic Chemistrybiology.organism_classificationmetallothioneinAlternative Splicing030104 developmental biologyGene Expression RegulationEmbryonic developmentgene expression
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Comparative genomic sequencing reveals a strikingly similar architecture of a conserved syntenic region on human chromosome 11p15.3 (including gene S…

2001

Comparative genomics is a superior way to identify phylogenetically conserved features like genes or regions involved in gene regulation. The comparison of extended orthologous chromosomal regions should also reveal other characteristic traits essential for chromosome or gene function. In the present study we have sequenced and compared a region of conserved synteny from human chromosome 11p15.3 and mouse chromosome 7. In human, this region is known to contain several genes involved in the development of various disorders like Beckwith-Wiedemann overgrowth syndrome and other tumor diseases. Furthermore, in the neighboring chromosome region 11p15.5 extensive imprinting of genes has been repo…

Molecular Sequence DataeducationGenomicsBiologyChromosomesContig MappingMiceGene OrderGeneticsAnimalsHumansCloning MolecularMolecular BiologyGeneConserved SequenceGenetics (clinical)Repetitive Sequences Nucleic AcidSyntenyRegulation of gene expressionChromosome 7 (human)Comparative genomicsGeneticsChromosomes Human Pair 11Tumor Suppressor ProteinsGenomic sequencingChromosomeSequence Analysis DNAGC Rich SequenceDNA-Binding ProteinsCytogenetic and Genome Research
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Germline correction of an epimutation related to Silver-Russell syndrome.

2015

Like genetic mutations, DNA methylation anomalies or epimutations can disrupt gene expression and lead to human diseases. However, unlike genetic mutations, epimutations can in theory be reverted through developmental epigenetic reprograming, which should limit their transmission across generations. Following the request for a parental project of a patient diagnosed with Silver-Russell syndrome (SRS), and the availability of both somatic and spermatozoa DNA from the proband and his father, we had the exceptional opportunity to evaluate the question of inheritance of an epimutation. We provide here for the first time evidence for efficient reversion of a constitutive epimutation in the sperm…

ProbandAdultMaleGenetic counselingRussell-Silver SyndromeBiologymedicine.disease_causeGermlineEpigenesis GeneticGenomic ImprintingGene OrderGeneticsmedicineHumansExomeEpigeneticsPromoter Regions GeneticMolecular BiologyGenetics (clinical)GeneticsMutationSilver–Russell syndromeHigh-Throughput Nucleotide SequencingGeneral MedicineDNA Methylationmedicine.diseaseSilver-Russell SyndromeGerm CellsPhenotypeGene Expression RegulationGenetic LociDNA methylationCpG IslandsFemaleRNA Long NoncodingHuman molecular genetics
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