Search results for "genetics [Transcriptome]"

showing 10 items of 3033 documents

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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Do distantly related parasites rely on the same proximate factors to alter the behaviour of their hosts?

2006

Phylogenetically unrelated parasites often increase the chances of their transmission by inducing similar phenotypic changes in their hosts. However, it is not known whether these convergent strategies rely on the same biochemical precursors. In this paper, we explored such aspects by studying two gammarid species ( Gammarus insensibilis and Gammarus pulex ; Crustacea: Amphipoda: Gammaridae) serving as intermediate hosts in the life cycle of two distantly related parasites: the trematode, Microphallus papillorobustus and the acanthocephalan, Polymorphus minutus . Both these parasite species are known to manipulate the behaviour of their amphipod hosts, bringing them towards the water surfa…

Proteomics0106 biological sciences[SDV]Life Sciences [q-bio]MESH : Host-Parasite InteractionsMESH : Behavior Animal[SDV.BID.SPT]Life Sciences [q-bio]/Biodiversity/Systematics Phylogenetics and taxonomyMESH: Peptide Mapping01 natural sciencesAcanthocephalaMESH : ProteomicsMESH: AmphipodatrematodeMESH: Behavior Animal[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisMESH: AnimalsElectrophoresis Gel Two-DimensionalMESH: PhylogenyPhylogenyComputingMilieux_MISCELLANEOUSGeneral Environmental Science0303 health sciencesMESH : Peptide MappingBehavior AnimalbiologyEcologyMESH : AcanthocephalaMESH: ProteomicsGeneral MedicineMESH : Amphipodamanipulative parasiteMESH : TrematodaMESH: TrematodaMicrophallusTrematodaTrematodagammaridGeneral Agricultural and Biological SciencesAcanthocephalaResearch Article[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/Parasitologymolecular convergenceAmphipodaZoology[ SDV.BBM.BM ] Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyMESH: Host-Parasite InteractionsPeptide Mapping010603 evolutionary biologyGeneral Biochemistry Genetics and Molecular BiologyHost-Parasite Interactions03 medical and health sciencesproteomicsPhylogeneticsAnimals[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyAmphipoda030304 developmental biologyGeneral Immunology and MicrobiologyHost (biology)MESH : Phylogeny[SDV.BBM.BM]Life Sciences [q-bio]/Biochemistry Molecular Biology/Molecular biologyMESH : Electrophoresis Gel Two-DimensionalMESH: AcanthocephalaMESH: Electrophoresis Gel Two-Dimensionalbiology.organism_classificationacanthocephalanGammarus pulexPulexMESH : Animals[ SDV.BID.SPT ] Life Sciences [q-bio]/Biodiversity/Systematics Phylogenetics and taxonomy[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Phylointeractomics reconstructs functional evolution of protein binding

2017

Molecular phylogenomics investigates evolutionary relationships based on genomic data. However, despite genomic sequence conservation, changes in protein interactions can occur relatively rapidly and may cause strong functional diversification. To investigate such functional evolution, we here combine phylogenomics with interaction proteomics. We develop this concept by investigating the molecular evolution of the shelterin complex, which protects telomeres, across 16 vertebrate species from zebrafish to humans covering 450 million years of evolution. Our phylointeractomics screen discovers previously unknown telomere-associated proteins and reveals how homologous proteins undergo functiona…

Proteomics0301 basic medicineLineage (evolution)ScienceTelomere-Binding ProteinsGeneral Physics and AstronomyGenomicsBiologyProteomicsArticleGeneral Biochemistry Genetics and Molecular BiologyConserved sequenceEvolution Molecular03 medical and health sciencesPhylogeneticsMolecular evolutionPhylogenomicsAnimalsCells CulturedConserved SequencePhylogenyGeneticsGenomeMultidisciplinaryQComputational BiologyGenomicsSequence Analysis DNAGeneral ChemistryTelomereProtein superfamily030104 developmental biologyEvolutionary biologyVertebratesSequence AlignmentProtein Binding
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Sample Preparation for Mass-spectrometry-based Proteomics Analysis of Ocular Microvessels

2019

The use of isolated ocular blood vessels in vitro to decipher the pathophysiological state of the eye using advanced technological approaches has greatly expanded our understanding of certain diseases. Mass spectrometry (MS)-based proteomics has emerged as a powerful tool to unravel alterations in the molecular mechanisms and protein signaling pathways in the vascular beds in health and disease. However, sample preparation steps prior to MS analyses are crucial to obtain reproducible results and in-depth elucidation of the complex proteome. This is particularly important for preparation of ocular microvessels, where the amount of sample available for analyses is often limited and thus, pose…

Proteomics0301 basic medicineSwineGeneral Chemical EngineeringComputational biologyEyeProteomicsMass spectrometryMass SpectrometryGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciences0302 clinical medicineProtein purificationAnimalsHumansSample preparationGel electrophoresisMass spectrometry based proteomicsGeneral Immunology and MicrobiologyGeneral NeuroscienceAnalytic Sample Preparation Methods030104 developmental biologyMicrovesselsProteome030217 neurology & neurosurgeryChromatography LiquidHomogenization (biology)Journal of Visualized Experiments
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An organelle-specific protein landscape identifies novel diseases and molecular mechanisms.

2016

Cellular organelles provide opportunities to relate biological mechanisms to disease. Here we use affinity proteomics, genetics and cell biology to interrogate cilia: poorly understood organelles, where defects cause genetic diseases. Two hundred and seventeen tagged human ciliary proteins create a final landscape of 1,319 proteins, 4,905 interactions and 52 complexes. Reverse tagging, repetition of purifications and statistical analyses, produce a high-resolution network that reveals organelle-specific interactions and complexes not apparent in larger studies, and links vesicle transport, the cytoskeleton, signalling and ubiquitination to ciliary signalling and proteostasis. We observe sub…

Proteomics0301 basic medicineSystems AnalysisDNA Mutational Analysislnfectious Diseases and Global Health Radboud Institute for Molecular Life Sciences [Radboudumc 4]General Physics and AstronomyDatasets as Topicmethods [Chromatography Affinity]ProteomicsSensory disorders Donders Center for Medical Neuroscience [Radboudumc 12]Chromatography AffinityMass SpectrometryProtein Interaction Mappingtherapy [Ciliopathies]genetics [Ciliopathies]methods [Molecular Targeted Therapy]Molecular Targeted TherapyProtein Interaction MapsMultidisciplinaryCiliumChemistry (all)Qabnormalities [Spine]pathology [Ciliopathies]genetics [Muscle Hypotonia]therapy [Muscle Hypotonia]Metabolic Disorders Radboud Institute for Molecular Life Sciences [Radboudumc 6]metabolism [Proteins]isolation & purification [Proteins]physiology [Biological Transport]3. Good healthCell biologyVesicular transport proteinpathology [Dwarfism]metabolism [Cilia]Muscle Hypotoniaddc:500pathology [Muscle Hypotonia]pathology [Spine]genetics [Dwarfism]Rare cancers Radboud Institute for Health Sciences [Radboudumc 9]ScienceDwarfismExocystBiologyArticleGeneral Biochemistry Genetics and Molecular BiologyPhysics and Astronomy (all)03 medical and health sciencesIntraflagellar transportCiliogenesisOrganelleHumansCiliaBiochemistry Genetics and Molecular Biology (all)ProteinsBiological TransportGeneral Chemistrytherapy [Dwarfism]Fibroblastsgenetics [Proteins]CiliopathiesSpinemethods [Protein Interaction Mapping]Renal disorders Radboud Institute for Molecular Life Sciences [Radboudumc 11]030104 developmental biologyProteostasisHEK293 Cellsmethods [Proteomics]
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RPPanalyzer Toolbox: An improved R package for analysis of reverse phase protein array data

2014

Analysis of large-scale proteomic data sets requires specialized software tools, tailored toward the requirements of individual approaches. Here we introduce an extension of an open-source software solution for analyzing reverse phase protein array (RPPA) data. The R package RPPanalyzer was designed for data preprocessing followed by basic statistical analyses and proteomic data visualization. In this update, we merged relevant data preprocessing steps into a single user-friendly function and included a new method for background noise correction as well as new methods for noise estimation and averaging of replicates to transform data in such a way that they can be used as input for a new t…

Proteomics0303 health sciencesbusiness.industryComputer scienceProtein Array AnalysisReverse phase protein lysate microarrayFunction (mathematics)computer.software_genreGeneral Biochemistry Genetics and Molecular BiologyToolboxBackground noise03 medical and health sciences0302 clinical medicineSoftwareData visualizationRobustness (computer science)030220 oncology & carcinogenesisImage Processing Computer-AssistedData miningData pre-processingbusinesscomputerSoftware030304 developmental biologyBiotechnologyBioTechniques
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Role of Extracellular Vesicles in Hematological Malignancies.

2015

In recent years the role of tumor microenvironment in the progression of hematological malignancies has been widely recognized. Recent studies have focused on how cancer cells communicate within the microenvironment. Among several factors (cytokines, growth factors, and ECM molecules), a key role has been attributed to extracellular vesicles (EV), released from different cell types. EV (microvesicles and exosomes) may affect stroma remodeling, host cell functions, and tumor angiogenesis by inducing gene expression modulation in target cells, thus promoting cancer progression and metastasis. Microvesicles and exosomes can be recovered from the blood and other body fluids of cancer patients a…

ProteomicsCell typeImmunology and Microbiology (all)lcsh:MedicineReview ArticleBiologyProteomicsExosomesGeneral Biochemistry Genetics and Molecular BiologyMetastasisExtracellular VesiclesStromaSettore BIO/13 - Biologia ApplicatamedicineTumor MicroenvironmentHumansTumor microenvironmentBiochemistry Genetics and Molecular Biology (all)General Immunology and MicrobiologyNeovascularization Pathologiclcsh:RCancerGeneral Medicinemedicine.diseaseMicrovesiclesCell biologyGene Expression Regulation NeoplasticHematologic NeoplasmsCancer cellBiochemistry Genetics and Molecular Biology (all); Immunology and Microbiology (all)BioMed research international
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The Wnt-specific astacin proteinase HAS-7 restricts head organizer formation in Hydra

2021

Abstract Background The Hydra head organizer acts as a signaling center that initiates and maintains the primary body axis in steady state polyps and during budding or regeneration. Wnt/beta-Catenin signaling functions as a primary cue controlling this process, but how Wnt ligand activity is locally restricted at the protein level is poorly understood. Here we report a proteomic analysis of Hydra head tissue leading to the identification of an astacin family proteinase as a Wnt processing factor. Results Hydra astacin-7 (HAS-7) is expressed from gland cells as an apical-distal gradient in the body column, peaking close beneath the tentacle zone. HAS-7 siRNA knockdown abrogates HyWnt3 proteo…

ProteomicsPhysiologyHydraQH301-705.5XenopusPlant ScienceProteinaseGeneral Biochemistry Genetics and Molecular BiologyStructural BiologyAstacinAxis formationAnimalsRNA Small InterferingBiology (General)Wnt Signaling PathwayEcology Evolution Behavior and SystematicsActinbeta CateninBody PatterningGene knockdownBuddingbiologyRegeneration (biology)Wnt signaling pathwayMetalloendopeptidasesCell Biologybiology.organism_classificationWnt signalingCell biologyWnt ProteinsProteolysisLernaean HydraAstacinGeneral Agricultural and Biological SciencesHeadDevelopmental BiologyBiotechnologyResearch ArticleBMC Biology
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Building high-quality assay libraries for targeted analysis of SWATH MS data

2015

Targeted proteomics by selected/multiple reaction monitoring (S/MRM) or, on a larger scale, by SWATH (sequential window acquisition of all theoretical spectra) MS (mass spectrometry) typically relies on spectral reference libraries for peptide identification. Quality and coverage of these libraries are therefore of crucial importance for the performance of the methods. Here we present a detailed protocol that has been successfully used to build high-quality, extensive reference libraries supporting targeted proteomics by SWATH MS. We describe each step of the process, including data acquisition by discovery proteomics, assertion of peptide-spectrum matches (PSMs), generation of consensus sp…

ProteomicsSwath msComputer sciencemedia_common.quotation_subjectComputational biologyBioinformaticsProteomicsGeneral Biochemistry Genetics and Molecular BiologyIdentification (information)Targeted proteomicsPeptide LibraryTandem Mass SpectrometryCombinatorial Chemistry TechniquesQuality (business)media_commonNature Protocols
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Signal-Processing and Adaptive Prototissue Formation in Metabolic DNA Protocells

2021

Abstract The fundamental life-defining processes in living cells, such as replication, division, adaptation, and tissue formation, take place via intertwined metabolic reaction networks orchestrating downstream signal processing in a confined, crowded environment with high precision. Hence, it is crucial to understand and reenact some of these functions in wholly synthetic cell-like entities (protocells) to envision designing soft-materials with life-like traits. Herein, we report on a programmable all-DNA protocell (PC) composed of a liquid DNA interior and a hydrogel-like shell, harboring DNAzyme active sites in the interior whose catalytic bond-cleaving activity leads to a downstream phe…

ProtocellSignal processing540 Chemistry and allied sciencesMultidisciplinaryDeoxyribozymeProteinsGeneral Physics and AstronomyHydrogelsDNAGeneral ChemistryGeneral Biochemistry Genetics and Molecular BiologyDisplacement reactionschemistry.chemical_compoundchemistry540 ChemieBiophysicsA-DNAArtificial CellsTissue formationRNA CleavageDNA
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