0000000000620264

AUTHOR

Maria Toto

showing 4 related works from this author

Genome-wide characterization of chromatin binding and nucleosome spacing activity of the nucleosome remodeling ATPase ISWI

2012

La struttura dei cromosomi e l‟espressione genica sono influenzati dall‟attività del rimodellatore della cromatina ATP-dipentente ISWI, altamente conservato negli eucarioti[1]. Negli eucarioti superiori ISWI è una proteina ubiquitaria, abbondante e necessaria per la vitalità cellulare [2, 3]. In vitro, ISWI usa l‟energia proveniente dall‟idrolisi dell‟ATP per catalizzare reazioni di “spacing” and “sliding” dei nucleosomi [4]. In Drosophila melanogaster la mancanza della proteina ISWI è in grado di determinare in vivo una profonda alterazione dei livelli trascrizionali di alcuni geni ed una drammatica perdita della struttura complessiva dei cromosomi, facendoli così apparire altamente decond…

Settore BIO/10 - BiochimicanucleosomeGenome-wideATPase ISWI
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Genome-wide characterization of chromatin binding and nucleosome spacing activity of the nucleosome remodelling ATPase ISWI

2011

The evolutionarily conserved ATP-dependent nucleosome remodelling factor ISWI can space nucleosomes affecting a variety of nuclear processes. In Drosophila, loss of ISWI leads to global transcriptional defects and to dramatic alterations in higher-order chromatin structure, especially on the male X chromosome. In order to understand if chromatin condensation and gene expression defects, observed in ISWI mutants, are directly correlated with ISWI nucleosome spacing activity, we conducted a genome-wide survey of ISWI binding and nucleosome positioning in wild-type and ISWI mutant chromatin. Our analysis revealed that ISWI binds both genic and intergenic regions. Remarkably, we found that ISWI…

GeneticsRegulation of gene expressionGeneral Immunology and MicrobiologyGeneral NeuroscienceChromatin bindingBiologyDNA-binding proteinGeneral Biochemistry Genetics and Molecular BiologyChromatinProphaseNucleosomeMolecular BiologyTranscription factorChromatin immunoprecipitationThe EMBO Journal
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Regulation of ISWI chromatin remodelling activity.

2013

The packaging of the eukaryotic genome into chromatin facilitates the storage of the genetic information within the nucleus, but prevents the access to the underlying DNA sequences. Structural changes in chromatin are mediated by several mechanisms. Among them, ATP-dependent remodelling complexes belonging to ISWI family provides one of the best examples that eukaryotic cells evolved to finely regulate these changes. ISWI-containing complexes use the energy derived from ATP hydrolysis to rearrange nucleosomes on chromatin in order to favour specific nuclear reactions. The combination of regulatory nuclear factors associated with the ATPase subunit as well as its modulation by specific histo…

Adenosine TriphosphatasesISWI chromatinBiologyChromatin Assembly and DisassemblyChromatin remodelingCell biologyChromatinProtein Structure TertiaryHistoneHistone H1Nucleic AcidsProtein Interaction MappingGeneticsbiology.proteinHistone codeNucleosomeAnimalsHumansScaffold/matrix attachment regionProtein Processing Post-TranslationalGenetics (clinical)ChIA-PETTranscription FactorsChromosoma
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Genome-wide characterization of chromatin binding and nucleosome spacing activity of the nucleosome remodelling ATPase ISWI.

2010

The evolutionarily conserved ATP-dependent nucleosome remodelling factor ISWI can space nucleosomes affecting a variety of nuclear processes. In Drosophila, loss of ISWI leads to global transcriptional defects and to dramatic alterations in higher-order chromatin structure, especially on the male X chromosome. In order to understand if chromatin condensation and gene expression defects, observed in ISWI mutants, are directly correlated with ISWI nucleosome spacing activity, we conducted a genome-wide survey of ISWI binding and nucleosome positioning in wild-type and ISWI mutant chromatin. Our analysis revealed that ISWI binds both genic and intergenic regions. Remarkably, we found that ISWI…

Adenosine TriphosphatasesMaleChromatin ImmunoprecipitationX ChromosomeD. melanogasterSettore INF/01 - Informaticachromatin remodellingGenomicsChromatin Assembly and DisassemblyArticleNucleosomesDNA-Binding ProteinsISWInucleosome spacingGene Expression RegulationSettore BIO/10 - BiochimicaAnimalsDrosophila ProteinsDrosophilaPromoter Regions GeneticCrosses GeneticProtein BindingTranscription FactorsThe EMBO journal
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