Search results for "Small"

showing 10 items of 2441 documents

Azure C Targets and Modulates Toxic Tau Oligomers.

2018

Alzheimer's disease (AD) is the most common age-related neurodegenerative disorder affecting millions of people worldwide. Therefore, finding effective interventions and therapies is extremely important. AD is one of over 20 different disorders known as tauopathies, characterized by the pathological aggregation and accumulation of tau, a microtubule-associated protein. Tau aggregates are heterogeneous and can be divided into two major groups: large metastable fibrils, including neurofibrillary tangles, and oligomers. The smaller, soluble and dynamic tau oligomers have been shown to be more toxic with more proficient seeding properties for the propagation of tau pathology as compared to the …

0301 basic medicineTau pathologyPhysiologyCognitive Neurosciencetau ProteinsFibrilBiochemistryOligomerAzure Stains03 medical and health scienceschemistry.chemical_compound0302 clinical medicineEffective interventionsAlzheimer DiseaseCell Line TumorHumansNeurofibrillary TanglesCell BiologyGeneral MedicineSmall molecule030104 developmental biologychemistryTauopathiesBiophysicsPaired helical filamentsDisease Progression030217 neurology & neurosurgeryACS chemical neuroscience
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Acute depletion of telomerase components DKC1 and NOP10 induces oxidative stress and disrupts ribosomal biogenesis via NPM1 and activation of the P53…

2020

Mutations in DKC1, NOP10, and TINF2 genes, coding for proteins in telomerase and shelterin complexes, are responsible for diverse diseases known as telomeropathies and ribosomopathies, including dyskeratosis congenita (DC, ORPHA 1775). These genes contribute to the DC phenotype through mechanisms that are not completely understood. We previously demonstrated in models of DC that oxidative stress is an early and independent event that occurs prior to telomere shortening. To clarify the mechanisms that induce oxidative stress, we silenced genes DKC1, NOP10, and TINF2 with siRNA technology. With RNA array hybridisation, we found several altered pathways for each siRNA model. Afterwards, we ide…

0301 basic medicineTelomeraseTelomere-Binding ProteinsCell Cycle ProteinsShelterin ComplexCell LineAdherens junction03 medical and health sciences0302 clinical medicineRibonucleoproteins Small NucleolarmedicineRNA Small InterferingMolecular BiologyTelomeraseTelomere ShorteningRibonucleoproteinChemistryRNANuclear ProteinsCell BiologyTelomereShelterinmedicine.diseaseCell biologyTelomereOxidative Stress030104 developmental biology030220 oncology & carcinogenesisMutationTumor Suppressor Protein p53NucleophosminRibosomesDyskeratosis congenitaBiogenesisBiochimica et biophysica acta. Molecular cell research
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Fasting regulates EGR1 and protects from glucose- and dexamethasone-dependent sensitization to chemotherapy

2017

Fasting reduces glucose levels and protects mice against chemotoxicity, yet drugs that promote hyperglycemia are widely used in cancer treatment. Here, we show that dexamethasone (Dexa) and rapamycin (Rapa), commonly administered to cancer patients, elevate glucose and sensitize cardiomyocytes and mice to the cancer drug doxorubicin (DXR). Such toxicity can be reversed by reducing circulating glucose levels by fasting or insulin. Furthermore, glucose injections alone reversed the fasting-dependent protection against DXR in mice, indicating that elevated glucose mediates, at least in part, the sensitizing effects of rapamycin and dexamethasone. In yeast, glucose activates protein kinase A (P…

0301 basic medicineTime FactorsImmunology and Microbiology (all)Peptide Hormonesmedicine.medical_treatmentAMP-Activated Protein KinasesToxicologyPathology and Laboratory MedicineBiochemistryDexamethasoneMiceEndocrinologyAMP-activated protein kinaseAtrial natriuretic peptideNatriuretic Peptide BrainMedicine and Health SciencesNatriuretic peptideInsulinSmall interfering RNAsBiology (General)Statistical DatabiologyOrganic CompoundsGeneral NeuroscienceMonosaccharidesHeartFastingMetformin3. Good healthMetforminNucleic acidsChemistryPhysical SciencesFemaleAnatomyGeneral Agricultural and Biological SciencesStatistics (Mathematics)Atrial Natriuretic FactorResearch Articlemedicine.drugmedicine.medical_specialtyQH301-705.5medicine.drug_classCarbohydratesEGR1Antineoplastic AgentsCardiotoxinsGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesNatriuretic PeptideStress PhysiologicalInternal medicineGeneticsmedicineAnimalsNon-coding RNAProtein kinase AEarly Growth Response Protein 1Diabetic EndocrinologyNeuroscience (all)Biochemistry Genetics and Molecular Biology (all)Biology and life sciencesToxicityGeneral Immunology and MicrobiologyInsulinOrganic ChemistryChemical CompoundsCorrectionAMPKCyclic AMP-Dependent Protein KinasesHormonesGene regulationDietAtrial Natriuretic PeptideMice Inbred C57BLNeuroscience (all); Immunology and Microbiology (all); Biochemistry Genetics and Molecular Biology (all); Agricultural and Biological Sciences (all)Glucose030104 developmental biologyEndocrinologyAgricultural and Biological Sciences (all)CytoprotectionMetabolic DisordersHyperglycemiaCardiovascular Anatomybiology.proteinRNAGene expressionMathematicsPLOS Biology
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Preservation of Multiple Mammalian Tissues to Maximize Science Return from Ground Based and Spaceflight Experiments.

2016

Background Even with recent scientific advancements, challenges posed by limited resources and capabilities at the time of sample dissection continue to limit the collection of high quality tissues from experiments that can be conducted only infrequently and at high cost, such as in space. The resources and time it takes to harvest tissues post-euthanasia, and the methods and duration of long duration storage, potentially have negative impacts on sample quantity and quality, thereby limiting the scientific outcome that can be achieved. Objectives The goals of this study were to optimize methods for both sample recovery and science return from rodent experiments, with possible relevance to b…

0301 basic medicineTime FactorsPhysiologyMolecular biologyRNA Stabilitylcsh:MedicineBiochemistrylaw.inventionMice0302 clinical medicinelawSpecimen StorageBone MarrowImmune PhysiologyGene expressionFreezingMedicine and Health Scienceslcsh:ScienceMammalsMultidisciplinaryPreservation methodsLimitingEye MusclesGlutathioneEnzymesRNA isolation030220 oncology & carcinogenesisTissue and Organ HarvestingSmall IntestineSample collectionAnatomyResearch ArticleOcular AnatomyImmunologyRNA integrity numberBiologySpaceflightResearch and Analysis MethodsBiomolecular isolationSpecimen HandlingAndrology03 medical and health sciencesOcular SystemAnimalsHumansTime pointCryopreservationlcsh:RRNABiology and Life SciencesProteinsSpace FlightGastrointestinal Tract030104 developmental biologyMolecular biology techniquesStorage and HandlingImmune SystemEnzymologylcsh:QPeptidesDigestive SystemSpleenCatalasesPloS one
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PIWIL3 Forms a Complex with TDRKH in Mammalian Oocytes.

2019

P-element induced wimpy testis (PIWIs) are crucial guardians of genome integrity, particularly in germ cells. While mammalian PIWIs have been primarily studied in mouse and rat, a homologue for the human PIWIL3 gene is absent in the Muridae family, and hence the unique function of PIWIL3 in germ cells cannot be effectively modeled by mouse knockouts. Herein, we investigated the expression, distribution, and interaction of PIWIL3 in bovine oocytes. We localized PIWIL3 to mitochondria, and demonstrated that PIWIL3 expression is stringently controlled both spatially and temporally before and after fertilization. Moreover, we identified PIWIL3 in a mitochondrial-recruited three-membered complex…

0301 basic medicineTransposable elementendocrine systemCytoplasmArgininetransposonMutagenesis (molecular biology technique)Piwi-interacting RNAEmbryonic DevelopmentmammalpiRNABiologyMitochondrionArginineArticle03 medical and health sciences0302 clinical medicinemedicineAnimalsAmino Acid SequenceRNA Small Interferingoocytelcsh:QH301-705.5GeneGene knockoutMuridaegenomic integrityPIWIRNA-Binding ProteinsGeneral Medicinebiology.organism_classificationOocyteCell biologyMitochondriaProtein Transport030104 developmental biologymedicine.anatomical_structurelcsh:Biology (General)Argonaute ProteinsExoribonucleasesDNA Transposable ElementsOocytesCattle030217 neurology & neurosurgeryFunction (biology)Protein BindingCells
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Co-chaperone Hsp70/Hsp90-organizing protein (Hop) is required for transposon silencing and Piwi-interacting RNA (piRNA) biogenesis

2017

Piwi-interacting RNAs (piRNAs) are 26–30-nucleotide germ line-specific small non-coding RNAs that have evolutionarily conserved function in mobile genetic element (transposons) silencing and maintenance of genome integrity. Drosophila Hsp70/90-organizing protein homolog (Hop), a co-chaperone, interacts with piRNA-binding protein Piwi and mediates silencing of phenotypic variations. However, it is not known whether Hop has a direct role in piRNA biogenesis and transposon silencing. Here, we show that knockdown of Hop in the germ line nurse cells (GLKD) of Drosophila ovaries leads to activation of transposons. Hop GLKD females can lay eggs at the same rate as wild-type counterparts, but the e…

0301 basic medicineTransposable elementendocrine systemPiwi-interacting RNABiologyBiochemistryGenomic InstabilityHop (networking)Animals Genetically Modified03 medical and health sciences0302 clinical medicineAnimalsDrosophila ProteinsGene silencingGene SilencingRNA Small InterferingMolecular BiologyJanus KinasesGeneticsGene knockdownurogenital systemOvaryRNACell BiologyPhenotypeDrosophila melanogasterGerm Cells030104 developmental biologyAccelerated CommunicationsArgonaute ProteinsDNA Transposable ElementsFemale030217 neurology & neurosurgeryBiogenesisDNA DamageTranscription FactorsJournal of Biological Chemistry
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piRNA cluster database: a web resource for piRNA producing loci

2015

Piwi proteins and their guiding small RNAs, termed Piwi-interacting (pi-) RNAs, are essential for silencing of transposons in the germline of animals. A substantial fraction of piRNAs originates from genomic loci termed piRNA clusters and sequences encoded in these piRNA clusters determine putative targets for the Piwi/piRNA system. In the past decade, studies of piRNA transcriptomes in different species revealed additional roles for piRNAs beyond transposon silencing, reflecting the astonishing plasticity of the Piwi/piRNA system along different phylogenetic branches. Moreover, piRNA transcriptomes can change drastically during development and vary across different tissues. Since piRNA clu…

0301 basic medicineTransposable elementendocrine systemSmall RNAPiwi-interacting RNABiologycomputer.software_genreGenomeGermlineMice03 medical and health sciencesGeneticsDatabase IssueAnimalsHumansRasiRNARNA Small InterferingInternetDatabasePhylogenetic treeurogenital systemRNA030104 developmental biologyGenetic LociDatabases Nucleic AcidcomputerNucleic Acids Research
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MicroRNAs miR-19, miR-340, miR-374 and miR-542 regulate MID1 protein expression.

2018

The MID1 ubiquitin ligase activates mTOR signaling and regulates mRNA translation. Misregulation of MID1 expression is associated with various diseases including midline malformation syndromes, cancer and neurodegenerative diseases. While this indicates that MID1 expression must be tightly regulated to prevent disease states specific mechanisms involved have not been identified. We examined miRNAs to determine mechanisms that regulate MID1 expression. MicroRNAs (miRNA) are small non-coding RNAs that recognize specific sequences in their target mRNAs. Upon binding, miRNAs typically downregulate expression of these targets. Here, we identified four miRNAs, miR-19, miR-340, miR-374 and miR-542…

0301 basic medicineUntranslated regionSmall interfering RNAPhysiologymetabolism [Microtubule Proteins]Alzheimer's DiseaseBiochemistryImmune PhysiologyMedicine and Health SciencesSmall interfering RNAsmetabolism [Transcription Factors]3' Untranslated RegionsImmune System ProteinsMultidisciplinarybiologyReverse Transcriptase Polymerase Chain ReactionMessenger RNAQRNuclear ProteinsNeurodegenerative DiseasesTranslation (biology)EnzymesUbiquitin ligaseCell biologyNucleic acidsNeurologyMicrotubule ProteinsMedicineOxidoreductasesLuciferasemetabolism [Nuclear Proteins]Research ArticleScienceUbiquitin-Protein LigasesImmunologyTransfectionResearch and Analysis MethodsReal-Time Polymerase Chain ReactionAntibodies03 medical and health sciencesMental Health and PsychiatrymicroRNAGeneticsHumansddc:610Non-coding RNAMolecular Biology TechniquesMolecular BiologyMessenger RNABiology and life sciencesThree prime untranslated regionHEK 293 cellsProteinsGene regulationphysiology [MicroRNAs]MicroRNAs030104 developmental biologyHEK293 CellsEnzymologybiology.proteinRNAProtein TranslationDementiaGene expressionTranscription FactorsMid1 protein human
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Targeting Nonsense: Optimization of 1,2,4-Oxadiazole TRIDs to Rescue CFTR Expression and Functionality in Cystic Fibrosis Cell Model Systems

2020

Cystic fibrosis (CF) patients develop a severe form of the disease when the cystic fibrosis transmembrane conductance regulator (CFTR) gene is affected by nonsense mutations. Nonsense mutations are responsible for the presence of a premature termination codon (PTC) in the mRNA, creating a lack of functional protein. In this context, translational readthrough-inducing drugs (TRIDs) represent a promising approach to correct the basic defect caused by PTCs. By using computational optimization and biological screening, we identified three new small molecules showing high readthrough activity. The activity of these compounds has been verified by evaluating CFTR expression and functionality after…

0301 basic medicineYellow fluorescent proteinCystic Fibrosisnonsense mutationCystic Fibrosis Transmembrane Conductance RegulatorCystic fibrosislcsh:Chemistry0302 clinical medicinelcsh:QH301-705.5SpectroscopyCells CulturedbiologyChemistryGeneral MedicineSmall moleculeCystic fibrosis transmembrane conductance regulatorComputer Science ApplicationsCell biologyCodon Nonsense030220 oncology & carcinogenesisNonsense mutationContext (language use)Settore BIO/11 - Biologia MolecolareCatalysisArticleInorganic Chemistry03 medical and health sciencesmedicineHumansRNA MessengerPhysical and Theoretical ChemistryMolecular BiologyGeneMessenger RNAOrganic ChemistryoxadiazolesSettore CHIM/06 - Chimica Organicapremature termination codonmedicine.diseaseSettore CHIM/08 - Chimica FarmaceuticaSettore BIO/18 - Genetica030104 developmental biologyGene Expression Regulationlcsh:Biology (General)lcsh:QD1-999translational readthrough inducing drugsProtein BiosynthesisMutationbiology.proteingenetic disorderInternational Journal of Molecular Sciences
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Quadruplex detection in human cells

2020

Abstract The precise detection of both DNA and RNA quadruplexes in human cells remains challenging. Efforts are being invested to design, synthesize and operate molecular tools to track and detect quadruplexes in cells. Such probes now have sufficient molecular specificity and suitable spectroscopic properties to shed light on quadruplexes in their cellular context, thus providing reliable details about their existence in cells. Herein, the most important steps in this line of development are summarized, from the very first attempts with organometallic complexes to the development of immunodetection technologies; and from in vitro to live-cell investigations performed with cell-permeable qu…

0301 basic medicine[SDV.GEN]Life Sciences [q-bio]/Genetics[SDV.IB.IMA]Life Sciences [q-bio]/Bioengineering/ImagingRNAContext (language use)Computational biology[CHIM.THER]Chemical Sciences/Medicinal Chemistry[SDV.BC]Life Sciences [q-bio]/Cellular BiologyMolecular systems010402 general chemistry01 natural sciencesSmall molecule0104 chemical sciences03 medical and health scienceschemistry.chemical_compound030104 developmental biologychemistryheterocyclic compounds[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyDNAComputingMilieux_MISCELLANEOUS
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