Search results for "mammalia"

showing 10 items of 304 documents

Deciliation: A stressful event for Paracentrotus lividus embryos.

1998

In this report, by using mono- and two-dimensional electrophoretic analysis, we demonstrate that deciliation on sea urchin embryos induces a stress response. Deciliation indeed causes not only the activation of ciliary subroutine, but also a transient decrease of bulk protein synthesis. This decrease is in agreement with our previous results on heat shock response in sea urchin, although deciliation does not induce the expression of the same main hsp set. We were able to characterize one main deciliation-stress protein of 40 kDa whose expression is transiently induced by deciliation and whose localisation is likely to be nuclear.

CytoplasmEmbryo NonmammalianBiophysicsBiochemistryParacentrotus lividusFight-or-flight responseMethionineStress Physiologicalbiology.animalProtein biosynthesisAnimalsRegenerationElectrophoresis Gel Two-DimensionalCiliaHeat shockMolecular BiologySea urchinCell NucleusSaline Solution HypertonicbiologyProteinsEmbryoCell BiologyGastrulaSea urchin embryobiology.organism_classificationMolecular biologyCell biologyProtein BiosynthesisSea UrchinsElectrophoresis Polyacrylamide GelBiochemical and biophysical research communications
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Determination of DNA single strand breaks and selective DNA amplification by N-nitrodimethylamine and analogs, and estimation of the indicator cells'…

1986

N-nitrodimethylamine is metabolized oxidatively to N-nitrohydroxymethylmethylamine, which decomposes to yield formaldehyde and N-nitromethylamine. All four compounds and N-nitromethylamine were tested for their ability to induce DNA single strand breaks in hepatocytes and in SV 40-transformed Chinese hamster embryo cell lines. Only the two monoalkylnitramines were positive. They induced single strand breaks in hepatocytes, but were not effective in the other cells. Formaldehyde and N-nitrohydroxymethylmethylamine were toxic to the cells. None of the compounds tested was able to induce selective DNA amplification in the two transformed cell lines. Enzymes involved in drug metabolism were ass…

DNA ReplicationCancer ResearchHamsterDNA Single-StrandedSimian virus 40BiologyChinese hamsterCell Linechemistry.chemical_compoundCricetulusCricetinaeFormaldehydeAnimalsEpoxide hydrolaseCells Culturedchemistry.chemical_classificationDose-Response Relationship DrugDNA replicationGene AmplificationGeneral Medicinebiology.organism_classificationCell Transformation ViralEmbryo MammalianRatsEnzymeOncologychemistryBiochemistryLiverCell cultureDrug metabolismDNADimethylaminesJournal of cancer research and clinical oncology
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Asynchronous replication dynamics of imprinted and non-imprinted chromosome regions in early mouse embryos.

2008

We have used interphase FISH to analyze the replication behavior of four imprinted chromosome regions (Snrpn, Zim1-Peg3, Dlk1-Gtl2, and Igf2r) and five non-imprinted regions in mouse one-cell to morula-stage embryos and embryonic fibroblasts. In general, imprinted chromosome regions showed the expected asynchronous pattern of replication throughout all analyzed stages of preimplantation development and in differentiated cells. The Dlk1-Gtl2 locus which is not expressed and Igf2r which is biallelically expressed in early embryos showed a relaxation of replication asynchrony at the morula stage. Asynchronous replication in zygotes and two-cell embryos was not specific to imprinted regions. Th…

DNA ReplicationMaleTranscriptional ActivationRNA UntranslatedTime FactorsSomatic cellZygoteEmbryonic DevelopmentLocus (genetics)BiologyGenomeMorulaChromosomesGenomic InstabilityEpigenesis GeneticGenomic ImprintingMiceChromosome regionsAnimalsImprinting (psychology)GeneCells CulturedIn Situ Hybridization FluorescenceGeneticsZygoteChromosome MappingCell BiologyEmbryo MammalianMice Inbred C57BLFertilizationembryonic structuresFemalePloidyCell DivisionExperimental cell research
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Analysis of the Ush2a Gene in Medaka Fish (Oryzias latipes)

2013

Patients suffering from Usher syndrome (USH) exhibit sensorineural hearing loss, retinitis pigmentosa (RP) and, in some cases, vestibular dysfunction. USH is the most common genetic disorder affecting hearing and vision and is included in a group of hereditary pathologies associated with defects in ciliary function known as ciliopathies. This syndrome is clinically classified into three types: USH1, USH2 and USH3. USH2 accounts for well over one-half of all Usher cases and mutations in the USH2A gene are responsible for the majority of USH2 cases, but also for atypical Usher syndrome and recessive non-syndromic RP. Because medaka fish (Oryzias latypes) is an attractive model organism for ge…

DNA ComplementaryEmbryo NonmammalianTime FactorsUsher syndromeOryziasved/biology.organism_classification_rank.speciesMolecular Sequence DataOryziaslcsh:MedicineCiliopathiesRetinaMorpholinosEvolution MolecularRetinitis pigmentosamedicineotorhinolaryngologic diseasesAnimalsHumansAmino Acid SequenceModel organismlcsh:ScienceZebrafishIn Situ HybridizationRegulation of gene expressionGeneticsExtracellular Matrix ProteinsMultidisciplinarybiologyved/biologylcsh:RGenetic disorderGene Expression Regulation Developmentalmedicine.diseasebiology.organism_classificationPhenotypeEar Innerlcsh:Qsense organsResearch ArticlePLoS ONE
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Expression profiling of uniparental mouse embryos is inefficient in identifying novel imprinted genes

2006

AbstractImprinted genes are expressed from only one allele in a parent-of-origin-specific manner. We here describe a systematic approach to identify novel imprinted genes using quantification of allele-specific expression by Pyrosequencing, a highly accurate method to detect allele-specific expression differences. Sixty-eight candidate imprinted transcripts mapping to known imprinted chromosomal regions were selected from a recent expression profiling study of uniparental mouse embryos and analyzed. Three novel imprinted transcripts encoding putative non-protein-coding RNAs were identified on the basis of parent-of-origin-specific monoallelic expression in E11.5 (C57BL/6 × Cast/Ei)F1 and in…

DNA ComplementaryTranscription GeneticGenomic imprintingMouseParthenogenesisGene ExpressionGenomicsMice Inbred StrainsUniparental embryoBiologyPolymorphism Single NucleotideChromosomesMicePregnancyDatabases GeneticGeneticsAnimalsRNA MessengerAlleleGeneAllelesCrosses GeneticGeneticsModels GeneticChromosome MappingGenetic VariationPyrosequencingEmbryoParthenogenesisDNAEmbryo MammalianGene expression profilingGene expression profilingMice Inbred C57BLPyrosequencingRNAFemaleGenomic imprintingPrader-Willi SyndromeSoftwareGenomics
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Targeted disruption of the peroxisomal thiolase B gene in mouse: a new model to study disorders related to peroxisomal lipid metabolism

2004

The peroxisomal beta-oxidation system consists of four steps catalysed by three enzymes: acyl-CoA oxidase, 3-hydroxyacyl-CoA hydratase/3-hydroxyacyl-CoA dehydrogenase (multifunctional enzyme) and thiolase. In humans, thiolase activity is encoded by one gene, whereas in rodents, three enzymes encoded by three distinct genes (i.e. thiolase A, thiolase B and SCP2/thiolase) catalyse the thiolase activity. So far, acyl-CoA oxidase- and multifunctional enzyme-deficient patients have been identified and knock-out mice for these genes have been produced. Conversely, no isolated thiolase-deficient patient has been found, and no thiolase (A or B)-deficient mice have been generated. Hence, to better u…

DehydrogenaseBiologymedicine.disease_causeBiochemistryGene Expression Regulation EnzymologicPeroxisomal DisordersMiceStructure-Activity RelationshipPeroxisomesmedicineAnimalsHumansRNA MessengerGeneHydro-LyasesSCP2chemistry.chemical_classificationMutationOxidase testThiolaseStem Cells3-Hydroxyacyl CoA DehydrogenasesGeneral MedicinePeroxisomeAcetyl-CoA C-AcyltransferaseEmbryo MammalianLipid MetabolismMolecular biologyMice Mutant StrainsMice Inbred C57BLDisease Models AnimalPhenotypeEnzymechemistryBiochemistryAcyl-CoA OxidaseBiochimie
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A Polyphenylene Dendrimer Drug Transporter with Precisely Positioned Amphiphilic Surface Patches

2014

The design and synthesis of a polyphenylene dendrimer (PPD 3) with discrete binding sites for lipophilic guest molecules and characteristic surface patterns is presented. Its semi-rigidity in combination with a precise positioning of hydrophilic and hydrophobic groups at the periphery yields a refined architecture with lipophilic binding pockets that accommodate defined numbers of biologically relevant guest molecules such as fatty acids or the drug doxorubicin. The size, architecture, and surface textures allow to even penetrate brain endothelial cells that are a major component of the extremely tight blood-brain barrier. In addition, low to no toxicity is observed in in vivo studies using…

DendrimersScaffoldEmbryo NonmammalianMaterials sciencePolymersStereochemistryBiomedical EngineeringPharmaceutical ScienceChemistry Techniques SyntheticBlood–brain barrierCell LineBiomaterialsMiceIn vivoDendrimerAmphiphilemedicineAnimalsHumansMoleculeTissue DistributionBinding siteZebrafishDrug CarriersBrainEndothelial CellsTransportermedicine.anatomical_structureDoxorubicinDrug DesignBiophysicsHydrophobic and Hydrophilic InteractionsAdvanced Healthcare Materials
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Three-dimensional visualization of the human embryo: a potential revolution in prenatal diagnosis

1996

Diagnostic Imagingmedicine.medical_specialtyPregnancyRadiological and Ultrasound Technologybusiness.industryObstetricsObstetrics and GynecologyGestational ageGestational AgePrenatal diagnosisEmbryoGeneral MedicineEmbryo Mammalianmedicine.diseaseUltrasonography PrenatalReproductive MedicinePregnancyThree dimensional visualizationImage Processing Computer-AssistedMedical imagingHumansMedicineFemaleRadiology Nuclear Medicine and imagingbusinessUltrasound in Obstetrics and Gynecology
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Cellular Plasticity in the Adult Murine Piriform Cortex: Continuous Maturation of Dormant Precursors Into Excitatory Neurons

2017

Neurogenesis in the healthy adult murine brain is based on proliferation and integration of stem/progenitor cells and is thought to be restricted to 2 neurogenic niches: the subventricular zone and the dentate gyrus. Intriguingly, cells expressing the immature neuronal marker doublecortin (DCX) and the polysialylated-neural cell adhesion molecule reside in layer II of the piriform cortex. Apparently, these cells progressively disappear along the course of ageing, while their fate and function remain unclear. Using DCX-CreERT2/Flox-EGFP transgenic mice, we demonstrate that these immature neurons located in the murine piriform cortex do not vanish in the course of aging, but progressively res…

Doublecortin Domain Proteins0301 basic medicineDoublecortin ProteinCognitive NeuroscienceCell PlasticityGreen Fluorescent ProteinsSubventricular zoneMice TransgenicNerve Tissue ProteinsNeural Cell Adhesion Molecule L1Piriform CortexBiologyMice03 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineCortex (anatomy)Piriform cortexNeuroplasticitymedicineAnimalsNeuronsGlutamate DecarboxylaseStem CellsDentate gyrusNeuropeptidesNeurogenesisGene Expression Regulation DevelopmentalEmbryo MammalianCell biologyDoublecortinMice Inbred C57BL030104 developmental biologymedicine.anatomical_structureBromodeoxyuridinenervous systemSialic Acidsbiology.proteinTBR1Calcium-Calmodulin-Dependent Protein Kinase Type 2Microtubule-Associated Proteins030217 neurology & neurosurgeryCerebral Cortex
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How is the inner circadian clock controlled by interactive clock proteins?

2015

AbstractMost internationally travelled researchers will have encountered jetlag. If not, working odd hours makes most of us feel somehow dysfunctional. How can all this be linked to circadian rhythms and circadian clocks? In this review, we define circadian clocks, their composition and underlying molecular mechanisms. We describe and discuss recent crystal structures of Drosophila and mammalian core clock components and the enormous impact they had on the understanding of circadian clock mechanisms. Finally, we highlight the importance of circadian clocks for the daily regulation of human/mammalian physiology and show connections to overall fitness, health and disease.

Drosophila and mammalian clock proteinCircadian rhythmCircadian clock mechanismProtein ConformationCircadian clockBiophysicsCLOCK Proteins3D crystal structureCell BiologyBiologyBiochemistryBacterial circadian rhythmsCell biologyStructural BiologyCircadian ClocksGeneticsAnimalsHumansCLOCK ProteinsCircadian rhythmOscillating geneMolecular BiologyNeuroscienceFEBS Letters
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