Search results for "nucleic acid"

showing 10 items of 810 documents

Distribution of the bilbo Non-LTR Retrotransposon in Drosophilidae and its Evolution in the Drosophila obscura Species Group

2001

The bilbo element is a non-LTR retrotransposon isolated from Drosophila subobscura. We conducted a distribution survey by Southern blot for 52 species of the family Drosophilidae, mainly from the obscura and melanogaster groups. Most of the analyzed species bear sequences homologous to bilbo from D. subobscura. In the obscura group, species from the same species subgroup also share similar Southern blot patterns. To investigate the phylogenetic relationship among these elements, we analyzed eight copies of a short sequence of the element from several species of the obscura group. The obtained phylogram agrees with the phylogeny of the species, which suggests vertical transmission of the ele…

RetroelementsbiologyPhylogenetic treeSpecies SubgroupNucleic Acid HybridizationGenes Insectbiology.organism_classificationDrosophila subobscuraEvolution MolecularBlotting SouthernEvolutionary biologyPhylogeneticsDrosophilidaeBotanyGeneticsAnimalsDrosophilaDrosophila (subgenus)Drosophila obscuraMolecular BiologyPhylogenyEcology Evolution Behavior and SystematicsSouthern blotMolecular Biology and Evolution
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ITS region of the rDNA of Pythium rhizosaccharum sp. nov. isolated from sugarcane roots: taxonomy and comparison with related species.

2003

Pythium rhizosaccharum (F-1244) was isolated from soil samples taken in the rhizosphere of sugarcane (Saccharum officinarum) in the north-eastern India. This species is characterized by its smooth-walled, spherical sporangia and rarely formed sexual structures. When formed, the antheridial branches wrap around the oogonia and soon disappear after fertilization. The internal transcribed spacer (ITS) region of its rDNA is comprised of 904 bases. The taxonomical description of this new species and its comparison with related species are given here, together with the nucleotide sequences of the ITS1 and ITS2, and the 5.8S gene of its ribosomal nuclear DNA.

RhizospherebiologyBase SequenceSporangiumMolecular Sequence DataPythiumRibosomal RNAbiology.organism_classificationMicrobiologyDNA RibosomalPlant RootsSaccharumSaccharum officinarumSequence Homology Nucleic AcidBotanyDNA Ribosomal SpacerGeneticsTaxonomy (biology)PythiumInternal transcribed spacerDNA FungalMolecular BiologyRibosomal DNASoil MicrobiologyFEMS microbiology letters
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Molecular cloning of the RPS0 gene from Candida tropicalis.

2001

The Saccharomyces cerevisiae RPS0 A and B genes encode proteins essential for maturation of the 40S ribosomal subunit precursors. We have isolated a homologue of the RPS0 gene from Candida tropicalis, which we named CtRPS0. The C. tropicalisRPS0 encodes a protein of 261 amino acid residues with a predicted molecular weight of 28.65 kDa and an isoelectric point of 4.79. CtRps0p displays significant amino acid sequence homology with Rps0p from C. albicans, S. cerevisiae, Neurospora crassa, Schizosaccharomyces pombe, Pneumocystis carinii and higher organisms, such as human, mouse and rat. CtRPS0 on a high copy number vector can complement the lethal phenotype linked to the disruption of both R…

Ribosomal ProteinsSaccharomyces cerevisiaeGenes FungalMolecular Sequence DataBioengineeringSaccharomyces cerevisiaeBiologyApplied Microbiology and BiotechnologyBiochemistryNeurospora crassaCandida tropicalisFungal ProteinsRibosomal proteinGeneticsAmino Acid SequenceCloning MolecularGeneSouthern blotCandidaGeneticsBase SequenceSequence Homology Amino AcidGenetic Complementation TestNucleic acid sequencebiology.organism_classificationSchizosaccharomyces pombeProtein Processing Post-TranslationalBiotechnologyYeast (Chichester, England)
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Full-genome sequencing of a Hungarian canine G3P[3] Rotavirus A strain reveals high genetic relatedness with a historic Italian human strain

2015

A canine Rotavirus A strain was identified in the fecal specimen of a young dog during 2012 in Hungary. The strain RVA/Dog-wt/HUN/135/2012/G3P[3] shared complete genotype constellation (G3-P[3]-I3-R3-C3-M3-A15-N2-T3-E3-H6) and high genome sequence similarity (nt, 98.8 %) with a historic human strain, RVA/Human-tc/ITA/PA260-97/1997/G3P[3]. This study provides evidence for the canine origin of the unusual NSP1 genotype, A15, and reinforces the hypothesis of direct interspecies transmission of canine rotaviruses to humans.

RotavirusSettore MED/07 - Microbiologia E Microbiologia ClinicaGenotype constellationMolecular Sequence DataGenome ViralBiologymedicine.disease_causeGenomeRotavirus InfectionsViral ProteinsDogsPhylogenetic analysiGeneticPhylogeneticsZoonosiSequence Homology Nucleic AcidRotavirusSemiconductor sequencingVirologyGenotypeGeneticsmedicineAnimalsHumansDog DiseasesMolecular BiologyPhylogenyGeneticsWhole genome sequencingHungaryNSP1Base SequenceStrain (biology)General MedicineIon semiconductor sequencingVirologyItaly
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Role of Pir1 in the construction of the Candida albicans cell wall

2004

Searches in a Candida albicans database (http://genolist.pasteur.fr/CandidaDB/) identified two Individual Protein Files (IPF 15363 and 19968) whose deduced amino acid sequences showed 42 % and 45 % homology with Saccharomyces cerevisiae Pir4. The two DNA sequences are alleles of the same gene (CaPIR1) but IPF 19968 has a deletion of 117 bases. IPF 19968 encodes a putative polypeptide of 364 aa, which is highly O-glycosylated and has an N-mannosylated chain, four cysteine residues and seven repeats. Both alleles are expressed under different growth conditions and during wall construction by regenerating protoplasts. The heterozygous mutant cells are elongated, form clumps of several cells an…

Saccharomyces cerevisiae Proteinsbeta-GlucansSequence Homology Amino AcidSaccharomyces cerevisiaeNucleic acid sequenceSaccharomyces cerevisiaeBiologybiology.organism_classificationMicrobiologyHomology (biology)EpitopeCorpus albicansFungal ProteinsBiochemistryCell WallCandida albicansAmino Acid SequenceCandida albicansGenePeptide sequenceGlycoproteins
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The Lsm1-7/Pat1 complex binds to stress-activated mRNAs and modulates the response to hyperosmotic shock.

2018

RNA-binding proteins (RBPs) establish the cellular fate of a transcript, but an understanding of these processes has been limited by a lack of identified specific interactions between RNA and protein molecules. Using MS2 RNA tagging, we have purified proteins associated with individual mRNA species induced by osmotic stress, STL1 and GPD1. We found members of the Lsm1-7/Pat1 RBP complex to preferentially bind these mRNAs, relative to the non-stress induced mRNAs, HYP2 and ASH1. To assess the functional importance, we mutated components of the Lsm1-7/Pat1 RBP complex and analyzed the impact on expression of osmostress gene products. We observed a defect in global translation inhibition under…

Saccharomyces cerevisiae Proteinslcsh:QH426-470Gene ExpressionSaccharomyces cerevisiaeBiochemistryOsmotic PressureOsmotic ShockGeneticsRNA MessengerCellular Stress ResponsesGlycerol-3-Phosphate Dehydrogenase (NAD+)Biology and life sciencesMessenger RNAMembrane Transport ProteinsRNA-Binding ProteinsProteinsCell BiologyRepressor ProteinsNucleic acidslcsh:GeneticsRibonucleoproteinsRNA Cap-Binding ProteinsCell ProcessesProtein BiosynthesisPolyribosomesRNAProtein TranslationCellular Structures and OrganellesRibosomesProtein BindingResearch ArticlePLoS genetics
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Molecular cloning and characterization of a Candida albicans gene coding for cytochrome c haem lyase and a cell wall-related protein.

1998

Immunoscreening of a Candida albicans cDNA library with a monoclonal antibody (mAb 4C12) recognizing an epitope present in high-molecular-weight mannoprotein (HMWM) components specific for the mycelial cell walls (a 180 kDa component and a polydispersed 260 kDa species) resulted in the isolation of the gene CaCYC3 encoding for cytochrome c haem lyase (CCHL). The CaCYC3 gene was transcribed preferentially in mycelial cells in which two mRNA transcripts of 0.8 and 1 kb were found. The nucleotide and the deduced amino acid sequences of this gene displayed 45% homology and 46% identity, respectively, to the Saccharomyces cerevisiae CYC3 gene and shared common features with other reported genes …

Saccharomyces cerevisiaeBlotting WesternGenes FungalMolecular Sequence DataFluorescent Antibody TechniqueLyasesSaccharomyces cerevisiaeMolecular cloningMicrobiologyHomology (biology)Fungal ProteinsCell WallImmunoscreeningSequence Homology Nucleic AcidCandida albicansAmino Acid SequenceRNA MessengerCloning MolecularCandida albicansMolecular BiologyGeneMembrane GlycoproteinsbiologyBase SequencecDNA libraryRNA FungalSequence Analysis DNALyasebiology.organism_classificationBlotting NorthernMolecular biologyMitochondriaBiochemistrySequence AlignmentMolecular microbiology
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A natural A/T-rich sequence from the yeast FBP1 gene exists as a cruciform in Escherichia coli cells.

1993

Abstract Palindromic or semipalindromic sequences can adopt cruciform structures in DNA in vitro. It has been demonstrated in some cases that A/T-rich cruciforms exist also in vivo in Escherichia coli. The biological function of those structures is not understood although putative cruciforms have been found in interesting locations on replication origins, operators, or transcriptional termination regions. Here we show by means of the use of structure-dependent nucleases that the 3′ end of the yeast FBP1 gene contains a stable cruciform both in vitro and in E. coli cells and that in both cases, its extrusion depends on the DNA supercoiling state.

Saccharomyces cerevisiaeGenes FungalMolecular Sequence DataDNA RecombinantSaccharomyces cerevisiaeOrigin of replicationmedicine.disease_causechemistry.chemical_compoundmedicineEscherichia coliMolecular BiologyGeneEscherichia coliPalindromic sequenceGeneticsEndodeoxyribonucleasesbiologyBase SequenceDNA Superhelicalbiology.organism_classificationCell biologychemistryCruciformDNA supercoilNucleic Acid ConformationDNAPlasmid
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Centromeric heterochromatin and satellite DNA in the Chironomus plumosus species group

1994

Species of the Chironomus plumosus group display significant differences in their amount of centromeric heterochromatin. A tandem-repetitive satellite-like DNA has been isolated from C. plumosus. This DNA accounts for a major part of the centromeric heterochromatin. The DNA element has a Sau3AI restriction site ("Sau elements") and a monomer length of 165 or 166 bp. It is A-T rich (73%) and reveals a moderate DNA curvature, as shown by gel migration and computer analysis. The chromosomal localization and genomic organization of Sau elements were studied in 24 Chironomus species by in situ hybridization and (or) Southern analysis. The DNA is predominantly located in the centromeric regions …

Satellite DNACentromereMolecular Sequence DataIn situ hybridizationDNA SatelliteChironomidaechemistry.chemical_compoundSpecies SpecificityHeterochromatinCentromereGeneticsAnimalsChironomus plumosusCloning MolecularDeoxyribonucleases Type II Site-SpecificMolecular BiologyIn Situ HybridizationPhylogenyGenomic organizationGeneticsBase SequencebiologySequence Analysis DNAGeneral Medicinebiology.organism_classificationMolecular biologyRestriction sitechemistryNucleic Acid ConformationChironomusDNABiotechnologyGenome
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Partial Methylation at Am100 in 18S rRNA of Baker's Yeast Reveals Ribosome Heterogeneity on the Level of Eukaryotic rRNA Modification

2014

Ribosome heterogeneity is of increasing biological significance and several examples have been described for multicellular and single cells organisms. In here we show for the first time a variation in ribose methylation within the 18S rRNA of Saccharomyces cerevisiae. Using RNA-cleaving DNAzymes, we could specifically demonstrate that a significant amount of S. cerevisiae ribosomes are not methylated at 2'-O-ribose of A100 residue in the 18S rRNA. Furthermore, using LC-UV-MS/MS of a respective 18S rRNA fragment, we could not only corroborate the partial methylation at A100, but could also quantify the methylated versus non-methylated A100 residue. Here, we exhibit that only 68% of A100 in t…

Science5.8S ribosomal RNAYeast and Fungal ModelsSaccharomyces cerevisiaeMycologyBiologyMethylationBiochemistryMicrobiologyMolecular GeneticsModel OrganismsMolecular cell biologyRRNA modification23S ribosomal RNANucleic Acidsddc:570GeneticsEukaryotic Small Ribosomal SubunitBiologyNucleic Acid ComponentsGeneticsMultidisciplinaryQRTranslation (biology)DNAMethylationRibosomal RNAYeastRNA processingBiochemistryRNA RibosomalRibosome SubunitsMedicineRNARibosomesResearch ArticlePLoS ONE
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