Search results for "Multigene family"

showing 10 items of 134 documents

Phosphorylation of GAP-43 (growth-associated protein of 43 kDa) by conventional, novel and atypical isotypes of the protein kinase C gene family: dif…

1996

GAP-43 (growth-associated protein of 43 kDa; also known as neuromodulin, P-57, B-50 and F-1) is a neuronal calmodulin binding protein and a major protein kinase C (PKC) substrate in mammalian brain. Here we describe the phosphorylation by and the site specificity of different PKC isotypes. The conventional PKC beta 1 and the novel PKCs delta and epsilon effectively phosphorylated recombinant GAP-43 in vitro; atypical PKC zeta did not. The K(m) values (between 0.6 and 2.3 microM) were very low, demonstrating a high-affinity interaction between kinase and substrate. All PKC isotypes were shown to phosphorylate serine-41 in GAP-43. When using a 19-amino-acid oligopeptide based on the GAP-43 ph…

PhosphopeptidesCalmodulinMolecular Sequence DataNerve Tissue ProteinsPeptidePeptide MappingBiochemistrySubstrate SpecificityGAP-43 ProteinAmino Acid SequencePhosphorylationGap-43 proteinMolecular BiologyProtein Kinase CProtein kinase Cchemistry.chemical_classificationOligopeptideMembrane GlycoproteinsbiologyKinaseBinding proteinCell BiologyMolecular biologyRecombinant ProteinsIsoenzymesKineticsBiochemistrychemistryMultigene Familybiology.proteinPhosphorylationPeptidesOligopeptidesResearch ArticleBiochemical Journal
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Functional characterization of the plastidial 3-phosphoglycerate dehydrogenase family in Arabidopsis.

2013

This work contributes to unraveling the role of the phosphorylated pathway of serine (Ser) biosynthesis in Arabidopsis (Arabidopsis thaliana) by functionally characterizing genes coding for the first enzyme of this pathway, 3-phosphoglycerate dehydrogenase (PGDH). We identified two Arabidopsis plastid-localized PGDH genes (3-PGDH and EMBRYO SAC DEVELOPMENT ARREST9 [EDA9]) with a high percentage of amino acid identity with a previously identified PGDH. All three genes displayed a different expression pattern indicating that they are not functionally redundant. pgdh and 3-pgdh mutants presented no drastic visual phenotypes, but eda9 displayed delayed embryo development, leading to aborted emb…

PhysiologyMutantMolecular Sequence DataArabidopsisPlant SciencePlant RootsGene Expression Regulation EnzymologicSerineBiochemistry and MetabolismGene Expression Regulation PlantComplementary DNAArabidopsisGeneticsSerineArabidopsis thalianaMetabolomicsAmino Acid SequencePlastidsPhosphorylationGenePhosphoglycerate DehydrogenasePhylogenyTapetumMicroscopy ConfocalbiologySequence Homology Amino AcidArabidopsis ProteinsReverse Transcriptase Polymerase Chain ReactionGenetic Complementation Testfood and beveragesPlant Components Aerialbiology.organism_classificationPlants Genetically ModifiedPhenotypeIsoenzymesBiochemistryMultigene FamilyMutationSeedsPollenPlant physiology
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Molecular characterization and evolution of the protein phosphatase 2A B' regulatory subunit family in plants.

2002

Abstract Type 2A serine/threonine protein phosphatases (PP2A) are important components in the reversible protein phosphorylation events in plants and other organisms. PP2A proteins are oligomeric complexes constituted by a catalytic subunit and several regulatory subunits that modulate the activity of these phosphatases. The analysis of the complete genome of Arabidopsis allowed us to characterize four novel genes, AtB′ε, AtB′ζ,AtB′η, and AtB′θ, belonging to the PP2A B′ regulatory subunit family. Because four genes of this type had been described previously, this family is composed of eight members. Reverse transcriptase-polymerase chain reaction experiments showed thatAtB′ε mRNAs are prese…

PhysiologyProtein subunitMolecular Sequence DataArabidopsisPlant ScienceGene Expression Regulation EnzymologicEvolution MolecularGene Expression Regulation PlantArabidopsisGeneticsPhosphoprotein PhosphatasesArabidopsis thalianaProtein phosphorylationAmino Acid SequenceProtein Phosphatase 2GenePeptide sequencePhylogenyGenomic organizationGeneticsExpressed Sequence TagsbiologySequence Homology Amino AcidOryzaProtein phosphatase 2Plantsbiology.organism_classificationIsoenzymesBiochemistryMultigene FamilyResearch ArticlePlant physiology
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Evolutionary and structural analyses of GDAP1, involved in Charcot-Marie-Tooth disease, characterize a novel class of glutathione transferase-related…

2003

Mutations in the Ganglioside-induced differentiation-associated protein-1 (GDAP1) gene cause autosomal recessive Charcot-Marie-Tooth disease type 4A. The protein encoded by GDAP1 shows clear similarity to glutathione transferases (also known as glutathione S-transferases or GSTs). The human genome contains a paralog of GDAP1 called GDAP1L1. Using comparative genomics, we show that orthologs of GDAP1 and GDAP1L1 are found in mammals, birds, amphibians, and fishes. Likely orthologs of those genes in invertebrates and a low but consistent similarity with some plant and eubacterial genes have also been found. We demonstrate that GDAP1 and GDAP1L1 do not belong to any of the known classes of GST…

Protein ConformationMolecular Sequence DataSequence alignmentNerve Tissue ProteinsBiologyEvolution MolecularProtein structurePhylogeneticsCharcot-Marie-Tooth DiseaseDatabases GeneticGeneticsCluster AnalysisHumansAmino Acid SequenceMolecular BiologyPeptide sequenceGeneEcology Evolution Behavior and SystematicsPhylogenyGlutathione TransferaseComparative genomicsGeneticsTransmembrane domainMultigene FamilyHuman genomeSequence AlignmentMolecular biology and evolution
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A Genomic, Transcriptomic and Proteomic Look at the GE2270 Producer Planobispora rosea, an Uncommon Actinomycete.

2015

We report the genome sequence of Planobispora rosea ATCC 53733, a mycelium-forming soil-dweller belonging to one of the lesser studied genera of Actinobacteria and producing the thiopeptide GE2270. The P. rosea genome presents considerable convergence in gene organization and function with other members in the family Streptosporangiaceae, with a significant number (44%) of shared orthologs. Patterns of gene expression in P. rosea cultures during exponential and stationary phase have been analyzed using whole transcriptome shotgun sequencing and by proteome analysis. Among the differentially abundant proteins, those involved in protein metabolism are particularly represented, including the G…

ProteomeSequence analysislcsh:MedicineGenomicsBiologyGenomePeptides Cyclic03 medical and health sciencesBacterial ProteinsPlanobispora roseaActinomycetalesGenomic libraryAgricultural and Biological Sciences (all); Biochemistry Genetics and Molecular Biology (all); Medicine (all)lcsh:ScienceGeneProteomic Look030304 developmental biologyWhole genome sequencingGenetics0303 health sciencesMultidisciplinaryBiochemistry Genetics and Molecular Biology (all)030306 microbiologyShotgun sequencingSequence Analysis RNAMedicine (all)lcsh:RUncommon Actinomycete.High-Throughput Nucleotide SequencingGenomicsRNA BacterialThiazolesGlucoseTranscriptomicAgricultural and Biological Sciences (all)Multigene FamilyProteomeGenomiclcsh:QTranscriptomeGenome BacterialMetabolic Networks and PathwaysResearch ArticlePLoS ONE
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Salmonella enterica serotype Typhimurium DT 104 antibiotic resistance genomic island I in serotype paratyphi B

2002

We have identified Salmonella genomic island I (SGI1) in an isolate of Salmonella enterica serotype Paratyphi B. This antibiotic-resistance gene cluster, which confers multidrug resistance, has been previously identified in S. enterica serotype Typhimurium phage types DT 104 and DT 120 and in S. enterica serotype Agona.

Salmonella typhimuriumCanadaSalmonella genomic island I[SDV]Life Sciences [q-bio]lcsh:MedicineMicrobial Sensitivity Testslcsh:Infectious and parasitic diseasesantibiotiqueDrug Resistance Multiple BacterialHumanslcsh:RC109-216SerotypingComputingMilieux_MISCELLANEOUSlcsh:RDispatchsérotypegène de résistancePhysical Chromosome MappingTyphimurium DT 104Electrophoresis Gel Pulsed-FieldParatyphi BBlotting SouthernPhenotypeItalyGenes BacterialMultigene Familyilot génomiqueFrancesalmonella enterica
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Genome wide survey of the Toll-like receptor family in the Mediterranean sea urchin

Toll-like receptors (TLRs) represent a conserved family of proteins widely expressed in eukaryotes. They play crucial roles in the innate immune system recognizing different pathogen-associated molecular patterns. In mammals the TLR family comprises 10-13 members, while a huge number of TLR-like genes were recovered in S.purpuratus[1-3]. The Paracentrotus lividus genome project recently generated a new highquality assembly of the genome that represents a valuable resource also for clarifying the evolutionary origin of immune system. In order to identify TLR genes in P.lividus, a genome wide survey was carried out and BLAT searches retrieved 119 TLR genes (PlivTLRs). Ab initio gene predictio…

Settore BIO/11 - Biologia MolecolareMultigene family Toll like receptor immunity sea urchin bioinformatics
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Structure, organization and expression of two clustered cuticle protein genes during the metamorphosis of an insect, Tenebrio molitor.

1998

A 4-kb DNA segment of Tenebrio molitor (Insecta, Coleoptera) genomic DNA containing two larval-pupal cuticular genes has been cloned and sequenced. These genes, transcribed in opposite directions, are related in DNA sequence and the proteins encoded are very similar. Each of them contains a single intron located inside the sequence encoding the signal peptide, and a conserved sequence at -200 bp from the mRNA start position. These similarities in sequence suggest that these genes have evolved by duplication followed by diversification and that they are members of a family of genes with a common ancestry. They are the first example of clustered genes in Tenebrio molitor.

Signal peptideDNA ComplementaryMolecular Sequence DataGenes InsectBiologyBiochemistryDNA sequencingConserved sequenceEvolution MolecularGene duplicationAnimalsAmino Acid SequenceTenebrioPeptide sequenceGeneIn Situ HybridizationGeneticsBase SequenceSequence Homology Amino AcidfungiIntronMetamorphosis BiologicalGene Expression Regulation DevelopmentalIntronsgenomic DNAMultigene FamilyInsect ProteinsEuropean journal of biochemistry
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A systems biology perspective on cholangiocellular carcinoma development: focus on MAPK-signaling and the extracellular environment.

2008

Background/Aims Multiple genes have been implicated in cholangiocellular carcinoma (CCC) development. However, the overall neoplastic risk is likely associated with a much lower number of critical physiological pathways. Methods To investigate this hypothesis, we extracted all published genetic associations for the development of CCC from PubMed (genetic association studies, but also studies associating genes and CCC in general, i.e. functional studies in cell lines, genetic studies in humans, knockout mice etc.) and integrated CCC microarray data. Results We demonstrated the MAPK pathway was consistently enriched in CCC. Comparing our data to genetic associations in HCC often successfully …

SorafenibMAPK/ERK pathwayNiacinamideMAP Kinase Signaling SystemPyridinesSystems biologyAntineoplastic AgentsOncogenomicsBiologyCholangiocarcinomaMiceDatabases GeneticmedicineAnimalsHumansGeneOligonucleotide Array Sequence AnalysisHepatologyMicroarray analysis techniquesKinasePhenylurea CompoundsSystems BiologyBenzenesulfonatesComputational BiologySorafenibBiological EvolutionBile Ducts IntrahepaticBile Duct NeoplasmsMultigene FamilyImmunologyKnockout mouseCancer researchExtracellular Spacemedicine.drugJournal of hepatology
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Characterization of Streptomyces venezuelae ATCC 10595 rRNA gene clusters and cloning of rrnA

1996

Streptomyces venezuelae ATCC 10595 harbors seven rRNA gene clusters which can be distinguished by BglII digestion. The three rRNA genes present in each set are closely linked with the general structure 16S-23S-5S. We cloned rrnA and sequenced the 16S-23S spacer region and the region downstream of the 5S rRNA gene. No tRNA gene was found in these regions.

Streptomyces venezuelaeMolecular Sequence Data5.8S ribosomal RNADNA RibosomalMicrobiology18S ribosomal RNA5S ribosomal RNASpecies SpecificityRibosomal protein23S ribosomal RNARNA Ribosomal 16SCloning MolecularInternal transcribed spacerMolecular BiologyGeneticsbiologyRNA Ribosomal 5SNucleic Acid HybridizationRNA ProbesRibosomal RNAbiology.organism_classificationMolecular biologyStreptomycesRNA Ribosomal 23SGenes BacterialRNA RibosomalMultigene FamilyResearch ArticleJournal of Bacteriology
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