Search results for "SAC"

showing 10 items of 3337 documents

LC-MS/MS metodes izstrāde otrās izvēles prettuberkulozes zāļu vielu un to metabolītu kvantitatīvai noteikšanai asins plazmā

2022

LC-MS/MS metodes izstrāde otrās izvēles prettuberkulozes zāļu vielu un to metabolītu kvantitatīvai noteikšanai asins plazmā. Gukālova B., zinātniskā vadītāja Dr. chem. Grīnberga S. Maģistra darbs, 52 lappuses, 12 attēli, 11 tabulas, 7 pielikumi, 56 literatūras avoti. Latviešu valodā. Darbā apkopota literatūra par LC-MS/MS pielietošanas iespējām otrās izvēles prettuberkulozes zāļu vielu un to metabolītu kvantitatīvai noteikšanai, raksturotas bioloģisko paraugu sagatavošanas metodes. Darba gaitā tika pārbaudītas dažādas paraugu sagatavošanas metodes, veikta hromatogrāfisko un masspektrometrisko apstākļu pielāgošana kvantitatīvai prettuberkulozes zāļu un to metabolītu noteikšanai asins plazmā.…

DELAMANĪDSMETABOLĪTILINEZOLĪDSBEDAKVILĪNSLEVOFLOKSACĪNSĶīmija
researchProduct

Preservation of genetic and regulatory robustness in ancient gene duplicates of Saccharomyces cerevisiae

2014

[EN] Biological systems remain robust against certain genetic and environmental challenges. Robustness allows the exploration of ecological adaptations. It is unclear what factors contribute to increasing robustness. Gene duplication has been considered to increase genetic robustness through functional redundancy, accelerating the evolution of novel functions. However, recent findings have questioned the link between duplication and robustness. In particular, it remains elusive whether ancient duplicates still bear potential for innovation through preserved redundancy and robustness. Here we have investigated this question by evolving the yeast Saccharomyces cerevisiae for 2200 generations …

DNA Mutational AnalysisGenes FungalSaccharomyces cerevisiaeSaccharomyces cerevisiaeBiologyPolymorphism Single NucleotideGenome03 medical and health sciences0302 clinical medicineINDEL MutationStress PhysiologicalGene DuplicationGene duplicationDNA Mutational AnalysisGeneticsBiologyGeneGenetics (clinical)030304 developmental biologyGenetics0303 health sciencesModels GeneticResearchFungal geneticsRobustness (evolution)biology.organism_classificationAdaptation PhysiologicalPhenotypeEvolutionary biologyMutationChromosomes FungalDirected Molecular EvolutionGenome FungalAlgorithms030217 neurology & neurosurgeryGenome Research
researchProduct

The DNA topoisomerase II catalytic inhibitor merbarone is genotoxic and induces endoreduplication

2012

Abstract In the last years a number of reports have shown that the so-called topoisomerase II (topo II) catalytic inhibitors are able to induce DNA and chromosome damage, an unexpected result taking into account that they do not stabilize topo II-DNA cleavable complexes, a feature of topo II poisons such as etoposide and amsacrine. Merbarone inhibits the catalytic activity of topo II by blocking DNA cleavage by the enzyme. While it was first reported that merbarone does not induce genotoxic effects in mammalian cells, this has been challenged by reports showing that the topo II inhibitor induces efficiently chromosome and DNA damage, and the question as to a possible behavior as a topo II p…

DNA damageHealth Toxicology and MutagenesisTopoisomerase II; Catalytic inhibitor; Merbarone; DNA damage; Clastogens; EndoreduplicationCatalytic inhibitorCell Linechemistry.chemical_compoundCricetulusCricetinaeGeneticsmedicineEndoreduplicationAnimalsTopoisomerase II InhibitorsClastogenMolecular BiologyAmsacrineCell ProliferationbiologyDNA synthesisCell growthTopoisomeraseMerbaroneCell cycleEndoreduplicationThiobarbituratesMolecular biologyTopoisomerase IIchemistrybiology.proteinDNAmedicine.drugDNA Damage
researchProduct

Expression in Streptomyces lividans of Nonomuraea genes cloned in an artificial chromosome

2004

A bacterial artificial chromosomal library of Nonomuraea sp. ATCC39727 was constructed using Escherichia coli-Streptomyces artificial chromosome (ESAC) and screened for the presence of dbv genes known to be involved in the biosynthesis of the glycopeptide A40926. dbv genes were cloned as two large, partially overlapping, fragments and transferred into the host Streptomyces lividans, thus generating strains S. lividansColon, two colonsNmESAC50 and S. lividansColon, two colonsNmESAC57. The heterologous expression of Nonomuraea genes in S. lividans was successfully demonstrated by using combined RT-PCR and proteomic approaches. MALDI-TOF analysis revealed that a Nonomuraea ABC transporter is e…

DNA BacterialChromosomal library of Nonomuraea sp. ATCC39727Escherichia coli–Streptomyces artificial chromosome (ESAC)RT-PCRMolecular cloningApplied Microbiology and BiotechnologyStreptomycesGenetic analysisThiostreptonchemistry.chemical_compoundActinomycetalesChromosomes ArtificialCloning MolecularA40926GeneRegulator geneGeneticsGenomic LibrarybiologyMALDI-TOF mass spectrometryPromoterGeneral Medicinebiology.organism_classificationStreptomycesdbv gene cluster2D-PAGEchemistryGenes BacterialHeterologous expressionHeterologous expressionPulsed field gel electrophoresidalbavancinBiotechnologyApplied Microbiology and Biotechnology
researchProduct

Cloning and characterization of the genes encoding the malolactic enzyme and the malate permease of Leuconostoc oenos

1996

Using degenerated primers from conserved regions of the protein sequences of malic enzymes, we amplified a 324-bp DNA fragment by PCR from Leuconostoc oenos and used this fragment as a probe for screening a Leuconostoc oenos genomic bank. Of the 2,990 clones in the genomic bank examined, 7 with overlapping fragments were isolated by performing colony hybridization experiments. Sequencing 3,453 bp from overlapping fragments revealed two open reading frames that were 1,623 and 942 nucleotides long and were followed by a putative terminator structure. The first deduced protein (molecular weight, 59,118) is very similar (level of similarity, 66%) to the malolactic enzyme of Lactococcus lactis; …

DNA BacterialMalolactic enzymeLeuconostoc oenosMolecular Sequence DataRestriction MappingMalatesBiological Transport ActiveOrganic Anion TransportersSaccharomyces cerevisiaeBiologyPolymerase Chain ReactionApplied Microbiology and BiotechnologyMalate dehydrogenaseOpen Reading FramesBacterial ProteinsMalate DehydrogenaseGene cluster[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyEscherichia coliLeuconostocAmino Acid SequenceCloning MolecularMalate transportDNA PrimersGenomic organizationBase SequenceSequence Homology Amino AcidEcologyLactococcus lactisNucleic acid sequenceMembrane Transport Proteinsbiology.organism_classificationMolecular biologymalate permeaseMolecular WeightOpen reading frameBiochemistryGenes BacterialLeuconostocResearch ArticleFood ScienceBiotechnologyApplied and Environmental Microbiology
researchProduct

Yeast Population Dynamics during the Fermentation and Biological Aging of Sherry Wines

2001

ABSTRACTMolecular and physiological analyses were used to study the evolution of the yeast population, from alcoholic fermentation to biological aging in the process of “fino” sherry wine making. The four races of “flor”Saccharomyces cerevisiae (beticus, cheresiensis, montuliensis, androuxii) exhibited identical restriction patterns for the region spanning the internal transcribed spacers 1 and 2 (ITS-1 and ITS-2) and the 5.8S rRNA gene, but this pattern was different, from those exhibited by non-florS. cerevisiaestrains. This flor-specific pattern was detected only after wines were fortified, never during alcoholic fermentation, and all the strains isolated from the velum exhibited the typ…

DNA BacterialRestriction MappingPopulationFlorWineSaccharomyces cerevisiaeEthanol fermentationBiologyDNA MitochondrialApplied Microbiology and BiotechnologyIndustrial MicrobiologyDNA Ribosomal SpacerBotanyFood scienceeducationEcosystemWineeducation.field_of_studyEcologyAging of winefood and beveragesPhysiology and BiotechnologyYeastRNA Ribosomal 5.8SYeast in winemakingKaryotypingFermentationFermentationPolymorphism Restriction Fragment LengthFood ScienceBiotechnologyApplied and Environmental Microbiology
researchProduct

A real-time PCR assay for detection and quantification of 2-branched (1,3)-β-D–glucan producing lactic acid bacteria in cider

2010

28 p.-1 fig.-4 tab.

DNA Bacterialbeta-GlucansFood spoilageMicrobiologyMelting curve analysisMicrobiologyPolysaccharidesLactobacillus(13)(12)--D-glucanLactic acid bacteriaFood sciencePediococcusOenococcusOenococcus oeniDNA PrimersbiologyBacteriaSpoilageReverse Transcriptase Polymerase Chain ReactionAlcoholic BeveragesGeneral MedicineAmpliconbiology.organism_classificationBacterial Typing TechniquesLactobacillusCidersGenes BacterialGlucosyltransferasesFood MicrobiologyPediococcusProteoglycansOenococcusBacteriaFood ScienceReal-time PCR
researchProduct

DNA Relatedness among Aeromonas allosaccharophila Strains and DNA Hybridization Groups of the Genus Aeromonas

1995

The genomic relatedness among three Aeromonas allosaccharophila strains, including the type strain, and other Aeromonas type and reference strains that were assigned to DNA hybridization groups was estimated by DNA-DNA hybridization (competition procedure using a membrane method). All A. allosaccharophila strains were highly related (70 to 100%) to strains 289T (= CECT 4199T) and ATCC 35942. Type strains of other validated Aeromonas species, reference strains of DNA groups 8 and 11, and the Aeromonas sp. strain ATCC 43946 (enteric group 501) were 0 to 41% related to A. allosaccharophila 289T and ATCC 35942. The G+Cs content of A. allosaccharophila strains were in the range 55.9 to 57.3 mol%…

DNA BacterialbiologyDNA–DNA hybridizationImmunologyNucleic Acid Hybridizationbiology.organism_classificationMicrobiologyAeromonas allosaccharophilaMicrobiologyNucleic acid thermodynamicschemistry.chemical_compoundAeromonaschemistryVibrionaceaeAnimalsAeromonasGenetic variabilityBacteriaDNAInternational Journal of Systematic Bacteriology
researchProduct

Identification of the mstE Gene Encoding a Glucose-inducible, Low Affinity Glucose Transporter in Aspergillus nidulans

2006

The mstE gene encoding a low affinity glucose transporter active during the germination of Aspergillus nidulans conidia on glucose medium has been identified. mstE expression also occurs in hyphae, is induced in the presence of other repressing carbon sources besides glucose, and is dependent on the function of the transcriptional repressor CreA. The expression of MstE and its subcellular distribution have been studied using a MstE-sGFP fusion protein. Concordant with data on mstE expression, MstE-sGFP is synthesized in the presence of repressing carbon sources, and fluorescence at the periphery of conidia and hyphae is consistent with MstE location in the plasma membrane. Deletion of mstE …

DNA ComplementaryDatabases FactualMonosaccharide Transport ProteinsRecombinant Fusion ProteinsGlucose uptakeGenes FungalGreen Fluorescent ProteinsMolecular Sequence DataHyphaeRepressorBiochemistryAspergillus nidulansSubstrate SpecificityFungal ProteinsCell membraneAspergillus nidulansGene Expression Regulation FungalmedicineAmino Acid SequenceMolecular BiologyGenePhylogenyExpressed Sequence TagsFungal proteinbiologyCell MembranefungiGlucose transporterCell BiologySpores FungalBlotting Northernbiology.organism_classificationFusion proteinRepressor ProteinsKineticsGlucosemedicine.anatomical_structureMicroscopy FluorescenceBiochemistryGene DeletionJournal of Biological Chemistry
researchProduct

Tonoplast subcellular localization of maize cytochrome b5 reductases

2000

Plant cytochrome b 5 reductases (b 5 R) are assumed to be part of an ER-associated redox chain that oxidizes NADH to provide electrons via cytochrome b5 (cyt b 5 ) to ER-associated fatty acyl desaturase and related hydroxylases, as in mammalian cells. Here we report on cDNA cloning of a novel maize b 5 R, NFR II, strongly related to a previously cloned cDNA, NFR I (Bagnaresi et al., 1999, Biochem, J. 338, 499-5051. Maize b 5 R isoforms are produced by a small multi-gene family. The NFR cDNAs were shown to encode active b 5 Rs by heterologous expression in yeast. Both reductases, in addition to Fe 3+ -chelates, efficiently reduced Cu 2+ -chelates. Using a polyclonal antibody able to recogniz…

DNA ComplementaryMolecular Sequence DataSaccharomyces cerevisiaePlant ScienceMolecular cloningBiologyPlant RootsZea maysIsozymeGene Expression Regulation EnzymologicComplementary DNACytochrome b5GeneticsAmino Acid SequenceMicroscopy ImmunoelectronCytochrome ReductasesCytochrome b5 reductaseSequence Homology Amino AcidCytochrome bSequence Analysis DNACell BiologySubcellular localizationMolecular biologyIsoenzymesBiochemistryVacuolesHeterologous expressionSequence AlignmentCytochrome-B(5) ReductaseThe Plant Journal
researchProduct