0000000000041123

AUTHOR

Gaspare La Rocca

0000-0003-1277-0566

showing 10 related works from this author

The nucleosome-remodeling ATPase ISWI is regulated by poly-ADP-ribosylation.

2008

ATP-dependent nucleosome-remodeling enzymes and covalent modifiers of chromatin set the functional state of chromatin. However, how these enzymatic activities are coordinated in the nucleus is largely unknown. We found that the evolutionary conserved nucleosome-remodeling ATPase ISWI and the poly-ADP-ribose polymerase PARP genetically interact. We present evidence showing that ISWI is target of poly-ADP-ribosylation. Poly-ADP-ribosylation counteracts ISWI function in vitro and in vivo. Our work suggests that ISWI is a physiological target of PARP and that poly-ADP-ribosylation can be a new, important post-translational modification regulating the activity of ATP-dependent nucleosome remodel…

Poly Adenosine Diphosphate RiboseImmunoprecipitationQH301-705.5Poly ADP ribose polymeraseATPaseBlotting WesternBiochemistryChromosomesGeneral Biochemistry Genetics and Molecular BiologySettore BIO/10 - BiochimicaAnimalsDrosophila ProteinsImmunoprecipitationNucleosomeBiology (General)Transcription factorIn Situ Hybridization FluorescencePolymeraseAdenosine TriphosphatasesGeneral Immunology and MicrobiologybiologyGeneral NeuroscienceGenetics and GenomicsPARP ISWI Poly(ADP)ribosylation Chromatin remodellingCell BiologyChromatinISWI PARPNucleosomesChromatinSettore BIO/18 - GeneticaDrosophila melanogasterBiochemistrybiology.proteinPoly(ADP-ribose) PolymerasesGeneral Agricultural and Biological SciencesFunction (biology)Transcription FactorsResearch ArticlePLoS Biology
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The multiplicity of Argonaute complexes in mammalian cells

2022

Argonautes (AGOs) are a highly conserved family of proteins found in most Eukaryotes, and involved in mechanisms of gene regulation, both at the transcriptional and post-transcriptional level. Among other functions, AGO proteins associate with microRNAs to mediate the post-transcriptional repression of protein-coding genes. In this process, AGOs associate with members of the trinucleotide repeat containing 6 protein (TNRC6) protein family to form the core of the RNA-induced silencing complex (RISC), the effector machinery that mediates microRNA function. However, the description of the exact composition of the RISC has been a challenging task due to the fact the AGO's interactome is dynamic…

PharmacologyRegulation - post-transcriptionalMolecular MedicineMicroRNASettore BIO/11 - Biologia Molecolare
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A Protein Nuclear Extract fromD. melanogasterLarval Tissues

2008

Preparation of protein nuclear extracts is often the first step to study in vitro biological processes occurring in the nucleus of the eukaryotic cell. Nuclear extracts have been extensively used in different model organisms to identify and study protein function in nuclei. Drosophila embryos can be collected in large quantities and have been the source of choice for the production of protein nuclear extracts. However, most of Drosophila in vivo studies on protein function are conducted in larval tissues. Here we report a new method to produce highly stable large-scale protein nuclear extracts from whole Drosophila larvae that are suited for a variety of biochemical analyses.

animal structuresved/biology.organism_classification_rank.speciesBiologyCell FractionationIn vivoSettore BIO/10 - BiochimicaBotanymedicineMelanogasterAnimalsDrosophila ProteinsModel organismDrosophilaCell NucleusLarvaved/biologyfungiNuclear ProteinsEmbryobiology.organism_classificationIn vitroDrosophila melanogastermedicine.anatomical_structureMicroscopy FluorescenceBiochemistryLarvaDrosophila nuclear extractInsect ScienceNucleusFly
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Laser Pressure Catapulting (LPC): Optimization LPC-System and Genotyping of Colorectal Carcinomas

2005

Genotype analysis is becoming more and more useful in clinical practice, since specific mutations in tumors often correlate with prognosis and/or therapeutic response. Unfortunately, current molecular analytical techniques often require time-consuming and costly steps of analysis, thus making their routine clinical use difficult. Moreover, one of the most difficult problems arising during tumor research is that of their cell heterogeneity, which depends on their clear molecular heterogeneity. SSCP analysis discriminates by means of aberrant electrophoresis migration bands, mutated alleles which may represent as little as 15-20% of their total number. Nevertheless, in order to identify by se…

GeneticsGenotypePhysiologyLasersCarcinomaDNA Mutational AnalysisClinical BiochemistrySingle-strand conformation polymorphismCell BiologyDNA Genotype MicrodissectionGene mutationBiologyGenes rasGenotypeDNA Mutational AnalysisHumansProspective StudiesTumor Suppressor Protein p53AlleleColorectal NeoplasmsMicrodissectionGenotypingPolymorphism Single-Stranded ConformationalMicrodissectionLaser capture microdissection
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Nm-23-H1 expression does not predict clinical survival in colorectal cancer patients

2003

The gene Nm23, which encodes for a nucleoside diphosphate kinase, has been defined as a metastasis-suppressor gene because of the inverse correlation between its expression and the metastatic capacity of the tumor cells. For colorectal cancer, however, the findings are equivocal. The aim of our study was to assess, in 160 patients undergoing surgery for colorectal cancer (CRC), the expression of the Nm23-H1 protein and to evaluate its possible associations with traditional clinicopathologic variables, with DNA-ploidy and proliferative activity (S-phase fraction, SPF), and with disease-free and overall survival of patients. Nm23-H1 expressions were evaluated on paraffin-embedded tissue by im…

OncologyCytoplasmCancer Researchmedicine.medical_specialtyPathologyTime FactorsSettore MED/06 - Oncologia MedicaColorectal cancerBiologyDisease-Free SurvivalS PhaseInternal medicineNm23-H1 expressionmedicineHumansClinical significancePloidiesModels GeneticOncogeneCancerExonsGeneral MedicineNM23 Nucleoside Diphosphate KinasesCell cycleFlow CytometryPrognosismedicine.diseaseImmunohistochemistryColorectal cancerMolecular medicineOncologyTumor progressionNucleoside-Diphosphate KinaseProtein BiosynthesisDisease ProgressionImmunohistochemistryColorectal NeoplasmsCell Division
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Inducible and reversible inhibition of mirna-mediated gene repression in vivo

2021

Although virtually all gene networks are predicted to be controlled by miRNAs, the contribution of this important layer of gene regulation to tissue homeostasis in adult animals remains unclear. Gain and loss-of-function experiments have provided key insights into the specific function of individual miRNAs, but effective genetic tools to study the functional consequences of global inhibition of miRNA activity in vivo are lacking. Here we report the generation and characterization of a genetically engineered mouse strain in which miRNA-mediated gene repression can be reversibly inhibited without affecting miRNA biogenesis or abundance. We demonstrate the usefulness of this strategy by invest…

QH301-705.5ScienceGene regulatory networkregenerative medicineMice TransgenicBiologyGeneral Biochemistry Genetics and Molecular BiologyMiceT6BPregnancystem cellsmicroRNAAnimalsHomeostasisRNA-Induced Silencing ComplexRegenerationmolecular biologyGene Regulatory NetworksTransgenesBiology (General)Tissue homeostasisargonautemousemiRNARegulation of gene expressionGeneral Immunology and MicrobiologymicroRNAGeneral NeuroscienceRegeneration (biology)QRRISCmiRISCGeneral MedicineCell BiologyArgonauteStem Cells and Regenerative MedicineCell biologyTNRC6MicroRNAsMedicineFemaleStem cellPeptidesFunction (biology)Research Article
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Inducible and reversible inhibition of miRNA-mediated gene repression in vivo

2021

Although virtually all gene networks are predicted to be controlled by miRNAs, the contribution of this important layer of gene regulation to tissue homeostasis in adult animals remains unclear. Gain and loss of function experiments have provided key insights into the specific function of individual miRNAs, but effective genetic tools to study the functional consequences of global inhibition of miRNA activity in vivo are lacking. Here we report the generation and characterization of a genetically engineered mouse strain in which miRNA-mediated gene repression can be reversibly inhibited without affecting miRNA biogenesis or abundance. We demonstrate the usefulness of this strategy by invest…

Regulation of gene expressionGenetically Engineered MouseRegeneration (biology)microRNAGene regulatory networkBiologyLoss functionFunction (biology)Tissue homeostasisCell biology
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Genetic identification of a network of factors that functionally interact with the nucleosome remodeling ATPase ISWI.

2008

Nucleosome remodeling and covalent modifications of histones play fundamental roles in chromatin structure and function. However, much remains to be learned about how the action of ATP-dependent chromatin remodeling factors and histone-modifying enzymes is coordinated to modulate chromatin organization and transcription. The evolutionarily conserved ATP-dependent chromatin-remodeling factor ISWI plays essential roles in chromosome organization, DNA replication, and transcription regulation. To gain insight into regulation and mechanism of action of ISWI, we conducted an unbiased genetic screen to identify factors with which it interacts in vivo. We found that ISWI interacts with a network o…

MaleProteomicsCancer Researchlcsh:QH426-470Histone Deacetylase 1BiologySettore MED/08 - Anatomia PatologicaChromosomesHistone DeacetylasesChromatin remodelingHistonesHistone H403 medical and health sciences0302 clinical medicineGenetics and Genomics/EpigeneticsGeneticsAnimalsDrosophila ProteinsNucleosomeMolecular BiologyGenetics (clinical)Ecology Evolution Behavior and Systematics030304 developmental biologyAdenosine TriphosphatasesGenetics0303 health sciencesNuclear ProteinsAcetylationChromatin Assembly and DisassemblyChromatinNucleosomesChromatiniswi drosophilaRepressor ProteinsChromatin epigeneticsHDAC Chromatin RemodellingSin3 Histone Deacetylase and Corepressor Complexlcsh:GeneticsDrosophila melanogasterHistoneHistone deacetylase complexbiology.proteinFemaleHistone deacetylaseHistone deacetylase activity030217 neurology & neurosurgeryResearch ArticleTranscription Factors
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Roles of the Core Components of the Mammalian miRISC in Chromatin Biology

2022

The Argonaute (AGO) and the Trinucleotide Repeat Containing 6 (TNRC6) family proteins are the core components of the mammalian microRNA-induced silencing complex (miRISC), the machinery that mediates microRNA function in the cytoplasm. The cytoplasmic miRISC-mediated post-transcriptional gene repression has been established as the canonical mechanism through which AGO and TNRC6 proteins operate. However, growing evidence points towards an additional mechanism through which AGO and TNRC6 regulate gene expression in the nucleus. While several mechanisms through which miRISC components function in the nucleus have been described, in this review we aim to summarize the major findings that have …

MammalsmicroRNAepigeneticsRNA-Binding ProteinsmiRISCSettore BIO/11 - Biologia MolecolareChromatinArgonauteTNRC6MicroRNAsArgonaute ProteinsGeneticsAnimalsBiologyGenetics (clinical)Genes
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Author response: Inducible and reversible inhibition of miRNA-mediated gene repression in vivo

2021

In vivoChemistrymicroRNAReversible inhibitionGene RepressionCell biology
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