Search results for "Complement"

showing 10 items of 2113 documents

Molecular cloning of rat G-protein-coupled receptor kinase 6 (GRK6) from brain tissue, and its mRNA expression in different brain regions and periphe…

1997

The rat G-protein-coupled receptor kinase 6 (GRK6) cDNA was cloned from rat brain tissue by a combination of reverse-transcription polymerase chain reactions (RT-PCR), based on homology to the cloned human GRK6, and rapid amplification of cDNA ends (RACE-PCR). We obtained a clone of 2817 bp with an open reading frame of 1731 bp encoding for a protein of 576 amino acids that is 96.7% identical and 97.9% similar to its human counterpart. mRNA was detectable in all brain areas examined. In addition, GRK6 was expressed in skeletal muscle, small intestine, aorta, liver, heart, lung, thymus, stomach, uterus and kidney.

DNA ComplementaryTranscription GeneticMolecular Sequence DataProtein Serine-Threonine KinasesMolecular cloningBiologyPolymerase Chain ReactionOpen Reading FramesCellular and Molecular NeuroscienceRapid amplification of cDNA endsGTP-Binding ProteinsComplementary DNAGene expressionAnimalsHumansAmino Acid SequenceRNA MessengerCloning MolecularProtein kinase AMolecular BiologyG protein-coupled receptor kinaseMessenger RNABase SequenceSequence Homology Amino AcidBrainReceptor Protein-Tyrosine KinasesG-Protein-Coupled Receptor KinasesMolecular biologyRatsOpen reading frameOrgan SpecificityFemaleSequence AlignmentMolecular Brain Research
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Cloning, structure, cellular localization, and possible function of the tumor suppressor gene lethal(3)malignant blood neoplasm-1 of Drosophila melan…

1994

The tumor suppressor gene, lethal(3)malignant blood neoplasm-1+, of Drosophila melanogaster is required for the differentiation of the phagocytic blood-cell type, the plasmatocyte. In the homozygously mutated state it causes the malignant transformation of these blood cells. We present here the cloning, sequencing, structure, and expression of the l(3)mbn-1+ gene during development. The cloned gene was identified by germ-line transformation, generation of revertants, and the detection of the corresponding mRNA in blood cells and other tissues. Homologies of the G-S-rich C-terminus of the putative MBN83 protein to human cytokeratins K1, K10, and mouse loricrin were found. The structure and p…

DNA ComplementaryTumor suppressor geneMolecular Sequence DataMalignant transformationGene expressionAnimalsGenes Tumor SuppressorAmino Acid SequenceRNA MessengerCloning MolecularMolecular BiologyGeneCellular localizationAllelesCloningBlood CellsbiologyBase SequenceChromosome MappingCell Biologybiology.organism_classificationMolecular biologyCell Transformation NeoplasticDrosophila melanogasterLoricrinDrosophila melanogasterDevelopmental BiologyDevelopmental biology
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The human p53 gene mutated at position 249per se is not sufficient to immortalize human liver cells

1999

A particular point mutation of the tumor suppressor gene p53, namely a G→T transversion at the third base of codon 249, is frequently detected in primary hepatocellular carcinomas from patients living in areas where the levels of dietary exposure to aflatoxin B 1 and the rates of infection with the hepatitis B virus are very high. Very recently, a nontumorigenic liver epithelial cell line (HACL-1) with a finite life-span and expressing a number of hepatocyte-specific markers was established from a human hepatocellular adenoma in our laboratory. To analyze the role of mutated p53 in the immortalization of human liver cells, we transfected HACL-1 cells with an expression vector containing a h…

DNA ComplementaryTumor suppressor geneMutantBiologyTransfectionmedicine.disease_causemedicineHumansCodonCell Line TransformedMutationExpression vectorBase SequenceHepatologyPoint mutationGene Transfer TechniquesDrug Resistance MicrobialTransfectionHepatocellular adenomaGenes p53medicine.diseaseMolecular biologyLiverCell cultureMutationCell DivisionHepatology
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A heterochromatic P sequence in the D. subobscura genome.

1994

The study of a heterochromatic P sequence of D. subobscura reveals that it is a degraded element, located at the centromeric region of the A chromosome (X chromosome in this species), and that it is strongly diverged from the euchromatic P sequences previously described in this species. This heterochromatic sequence is composed of some P element fragments embedded in undefined beta-heterochromatic sequences. These mosaic P sequences do not show any transcriptional activity and seem to be ancient parasites of the D. subobscura genome. Phylogenetic analyses indicate that both the euchromatic and heterochromatic P sequences of D. subobscura could come from an ancestral element which was presen…

DNA ComplementaryX ChromosomeEuchromatinTranscription GeneticHeterochromatinMolecular Sequence DataPlant ScienceBiologyGenomeP elementHeterochromatinGeneticsAnimalsCloning MolecularX chromosomePhylogenySequence (medicine)GeneticsPhylogenetic treeBase SequenceChromosomeChromosome MappingGeneral MedicineSequence Analysis DNAInsect ScienceDNA Transposable ElementsAnimal Science and ZoologyDrosophilaSequence AlignmentGenetica
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Homeobox-containing gene transiently expressed in a spatially restricted pattern in the early sea urchin embryo

1995

In the sea urchin embryo, the lineage founder cells whose polyclonal progenies will give rise to five different territories are segregated at the sixth division. To investigate the mechanisms by which the fates of embryonic cells are first established, we looked for temporal and spatial expression of homeobox genes in the very early cleavage embryos. We report evidence that PlHbox12, a paired homeobox-containing gene, is expressed in the embryo from the 4-cell stage. The abundance of the transcripts reaches its maximum when the embryo has been divided into the five polyclonal territories--namely at the 64-cell stage--and it abruptly declines at later stages of development. Blastomere dissoc…

DNA Complementaryanimal structuresLineage (genetic)Molecular Sequence DataSettore BIO/11 - Biologia MolecolareIn situ hybridizationBiologysea urchinAnimalsAmino Acid SequenceGeneRegulation of gene expressionMultidisciplinaryBase SequenceSequence Homology Amino AcidhomeoboxGenes HomeoboxGene Expression Regulation DevelopmentalEmbryoBlastomereMolecular biologyEmbryonic stem cellSea Urchinsembryonic structuresHomeoboxResearch Article
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Characterization and phylogenetic analysis of a cDNA encoding the Fes/FER related, non-receptor protein-tyrosine kinase in the marine sponge Sycon ra…

1998

Abstract In search of ancient versions of phylogenetically conserved genes/proteins, which are typical for multicellular animals, we have decided to analyse marine sponges (Porifera), the most ancient and most primitive metazoan organisms. We report here the complete nucleotide sequence of Sycon raphanus cDNA coding for a 879 aa long protein (100 kDa), which displays high overall similarity in primary structure and organization of domains with non-receptor tyrosine kinases (TKs) from the Fes/FER family. The encoded protein, which we named Fes/FER_SR, has a highly conserved, 260 aa long tyrosine kinase domain at the C-terminus. Amino-terminal to the catalytic domain is an 85 aa long SH2 doma…

DNA Complementaryanimal structuresMolecular Sequence DataBiologySH2 domainHomology (biology)PhylogeneticsProto-Oncogene ProteinsComplementary DNAGeneticsAnimalsAmino Acid SequenceSycon raphanusPhylogenyGeneticsSequence Homology Amino AcidProtein primary structureNucleic acid sequenceSequence Analysis DNAGeneral MedicineProtein-Tyrosine Kinasesbiology.organism_classificationPoriferaBiochemistryOncogenes; Signal transduction; SH2 domain; Metazoa; Porifera; PhylogenySequence AlignmentTyrosine kinaseGene
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The Mutation without childrenrgl Causes Ecdysteroid Deficiency in Third-Instar Larvae of Drosophila melanogaster

2000

Larvae homozygous for the recessive lethal allele without children(rgl) (woc(rgl)) fail to pupariate. Application of exogenous 20-hydroxyecdysone elicits puparium formation and pupation. Ecdysteroid titer measurements on mutant larvae show an endocrine deficiency in the brain-ring gland complex, which normally synthesizes ecdysone, resulting in a failure of the larvae to achieve a threshold whole body hormone titer necessary for molting. Ultrastructural investigation revealed extensive degeneration of the prothoracic cells of the ring gland in older larvae. The woc gene, located in polytene chromosomal region 97F, consists of 11 exons. A 6.8-kb transcript is expressed throughout development…

DNA Complementaryanimal structuresMolecular Sequence DataMutantwithout childrenmental retardation03 medical and health scienceschemistry.chemical_compoundExon0302 clinical medicineAnimalsDrosophila ProteinsHumansAmino Acid SequenceecdysoneMolecular BiologyAlleles030304 developmental biology0303 health sciencesEcdysteroidPolytene chromosomeBase Sequencezinc fingerbiologyHomozygotefungiEcdysteroidsCell Biologybiology.organism_classificationMolecular biology3. Good healthDNA-Binding ProteinsMicroscopy ElectronDrosophila melanogasterPhenotypechemistryMutagenesisLarvaring glandChromosomal regionInsect ProteinsSteroidsDrosophila melanogaster030217 neurology & neurosurgeryDrosophila ProteinEcdysoneTranscription FactorsDevelopmental BiologyDevelopmental Biology
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Src proteins/src genes: from sponges to mammals

2004

The genome of marine sponge Suberites domuncula, a member of the most ancient and most simple metazoan phylum Porifera, encodes at least five genes for Src-type proteins, more than, i.e., Caenorhabditis elegans or Drosophila melanogaster (two in each). Three proteins, SRC1SD, SRC2SD and SRC3SD, were fully characterized. The overall homology (identity+similarity) among the three S. domuncula Srcs (68-71%) is much lower than the sequence conservation between orthologous Src proteins from freshwater sponges (82-85%). It is therefore very likely that several src genes/proteins were already present in the genome of Urmetazoa, the hypothetical metazoan ancestor. We have identified in the S. domun…

DNA Complementaryanimal structuresMolecular Sequence DataProto-Oncogene Proteins pp60(c-src)SH2 domainHomology (biology)SH3 domainEvolution Molecularsrc Homology DomainsExonGeneticsAnimalsProtein IsoformsAmino Acid SequenceCloning MolecularGenePhylogenyMammalsGeneticsSequence Homology Amino AcidbiologyIntronDNASequence Analysis DNAGeneral Medicinebiology.organism_classificationIntronsPoriferaSuberites domunculaSequence AlignmentProto-oncogene tyrosine-protein kinase SrcGene
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Cloning and Sequencing of a cDNA Encoding a Larval-Pupal-Specific Cuticular Protein in Tenebrio Molitor (Insecta, Coleoptera). Developmental Expressi…

1996

A cDNA clone encoding a larval-pupal cuticular protein, named TMLPCP-22, has been isolated by screening a library in expression vector with a monoclonal antibody made against pupal cuticular proteins of Tenebrio molitor. Northern-blot and in situ hybridization analyses showed that the expression of TMLPCP-22 is regulated in a stage-specific and tissue-specific manner; the transcript was present during the secretion of preecdysial larval and pupal cuticles and was restricted to epidermal cells. No expression was observed during adult cuticle deposition. In supernumerary pupae obtained after application of a juvenile hormone analogue, which is known to inhibit the adult programme, TMLPCP-22 m…

DNA Complementaryanimal structuresmedia_common.quotation_subjectCuticleMolecular Sequence DataGenes InsectIn situ hybridizationBiologyBiochemistryComplementary DNAGene expressionAnimalsAmino Acid SequenceRNA MessengerCloning MolecularMetamorphosisTenebrioIn Situ HybridizationDNA Primersmedia_commonCloningExpression vectorBase SequenceSequence Homology Amino AcidfungiMetamorphosis BiologicalPupaGene Expression Regulation DevelopmentalProteinsMolecular biologyJuvenile HormonesLarvaJuvenile hormoneEuropean Journal of Biochemistry
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Immunoglobulin-like domain is present in the extracellular part of the receptor tyrosine kinase from the marine sponge Geodia cydonium.

1994

We have isolated and characterized two cDNAs from the marine sponge Geodia cydonium coding for a new member of a receptor tyrosine kinase of class II. The deduced amino acid sequence shows two characteristic domains: (i) the tyrosine kinase domain; and (ii) and immunoglobulin-like domain. The latter part shows high homology to the vertebrate C2 type immunoglobulin domain. This result demonstrates that immunoglobulin domains are not recent achievements of higher animals but exist also in those animals which have diverged from other organisms about 800 million years ago.

DNA ComplementarybiologySequence Homology Amino AcidMolecular Sequence DatamyrImmunoglobulinsReceptor Protein-Tyrosine KinasesImmunoglobulin domainSH2 domainBiological EvolutionReceptor tyrosine kinasePoriferaProtein Structure TertiaryBiochemistryStructural BiologyPhylogeneticsMultigene FamilyROR1biology.proteinAnimalsAmino Acid SequenceMolecular BiologyPeptide sequenceTyrosine kinaseSequence AlignmentJournal of molecular recognition : JMR
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