Chromatin landscape distinguishes the genomic loci of hundreds of Androgen-Receptor-Associated LincRNAs from the loci of non-associated LincRNAs

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dc.contributorLaboratório de Expressão Gênica em Eucariotospt_BR
dc.contributorLab. Parasitologiapt_BR
dc.contributor.authorSilva, Lucas Ferreira dapt_BR
dc.contributor.authorBeckedorff, Felipe Cesarpt_BR
dc.contributor.authorAyupe, Ana C.pt_BR
dc.contributor.authorAmaral, Murilo Senapt_BR
dc.contributor.authorMesel, Vinicius Carqueijopt_BR
dc.contributor.authorVideira, Alexandrept_BR
dc.contributor.authorReis, Eduardo M.pt_BR
dc.contributor.authorSetubal, Joao C.pt_BR
dc.contributor.authorVerjovski-Almeida, Sergiopt_BR
dc.date.accessioned2020-07-09T21:19:53Z-
dc.date.available2020-07-09T21:19:53Z-
dc.date.issued2018pt_BR
dc.identifier.citationSilva LF, Beckedorff FC, Ayupe AC., Amaral MS, Mesel VC, Videira A, et al. Chromatin landscape distinguishes the genomic loci of hundreds of Androgen-Receptor-Associated LincRNAs from the loci of non-associated LincRNAs. Front. Genet.. 2018 Apr;9:132. doi:10.3389/fgene.2018.00132.pt_BR
dc.identifier.urihttps://repositorio.butantan.gov.br/handle/butantan/2455-
dc.description.abstractCell signaling events triggered by androgen hormone in prostate cells is dependent on activation of the androgen receptor (AR) transcription factor. Androgen hormone binding to AR promotes its displacement from the cytoplasm to the nucleus and AR binding to DNA motifs, thus inducing activatory and inhibitory transcriptional programs through a complex regulatory mechanism not yet fully understood. In this work, we performed RNA-seq deep-sequencing of LNCaP prostate cancer cells and found over 7000 expressed long intergenic non-coding RNAs (lincRNAs), of which similar to 4000 are novel lincRNAs, and 258 lincRNAs have their expression activated by androgen. Immunoprecipitation of AR, followed by large-scale sequencing of co-immunoprecipitated RNAs (RIP-Seq) has identified in the LNCaP cell line a total of 619 lincRNAs that were significantly enriched (FDR < 10%, DESeq2) in the anti-Androgen Receptor (antiAR) fraction in relation to the control fraction (non-specific IgG), and we named them Androgen-Receptor-Associated lincRNAs (ARA-lincRNAs). A genome-wide analysis showed that protein-coding gene neighbors to ARA-lincRNAs had a significantly higher androgen-induced change in expression than protein-coding genes neighboring lincRNAs not associated to AR. To find relevant epigenetic signatures enriched at the ARA-lincRNAs' transcription start sites (TSSs) we used a machine learning approach and identified that the ARA-lincRNA genomic loci in LNCaP cells are significantly enriched with epigenetic marks that are characteristic of in cis enhancer RNA regulators, and that the H3K27ac mark of active enhancers is conspicuously enriched at the TSS of ARA-lincRNAs adjacent to androgen-activated protein-coding genes. In addition, LNCaP topologically associating domains (TADs) that comprise chromatin regions with ARA-lincRNAs exhibit transcription factor contents, epigenetic marks and gene transcriptional activities that are significantly different from TADs not containing ARA-lincRNAs. This work highlights the possible involvement of hundreds of lincRNAs working in synergy with the AR on the genome-wide androgen-induced gene regulatory program in prostate cells.pt_BR
dc.description.sponsorship(FAPESP) Fundação de Amparo à Pesquisa do Estado de São Paulopt_BR
dc.description.sponsorship(CNPq) Conselho Nacional de Desenvolvimento Científico e Tecnológicopt_BR
dc.format.extent132pt_BR
dc.language.isoEnglishpt_BR
dc.relation.ispartofFrontiers in Geneticspt_BR
dc.rightsOpen accesspt_BR
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/pt_BR
dc.titleChromatin landscape distinguishes the genomic loci of hundreds of Androgen-Receptor-Associated LincRNAs from the loci of non-associated LincRNAspt_BR
dc.typeArticlept_BR
dc.rights.licenseCC BYpt_BR
dc.identifier.doi10.3389/fgene.2018.00132pt_BR
dc.identifier.urlhttp://dx.doi.org/10.3389/fgene.2018.00132pt_BR
dc.contributor.external(USP) Universidade de São Paulopt_BR
dc.contributor.externalBiocomplexity Institute of Virginia Techpt_BR
dc.identifier.citationvolume9pt_BR
dc.subject.keywordlong intergenic non-coding RNAspt_BR
dc.subject.keywordandrogen receptorpt_BR
dc.subject.keywordandrogen receptor associated lincRNAspt_BR
dc.subject.keywordgenome-wide profilingpt_BR
dc.subject.keywordepigenetic markspt_BR
dc.subject.keywordLNCaP prostate cancer cell linept_BR
dc.subject.keywordmachine learningpt_BR
dc.subject.keywordrandom forestpt_BR
dc.relation.ispartofabbreviatedFront Genetpt_BR
dc.identifier.citationabntv. 9, 132, abr. 2018pt_BR
dc.identifier.citationvancouver2018 Apr;9:132pt_BR
dc.contributor.butantanBeckedorff, Felipe Cesar|:|:Laboratório de Expressão Gênica em Eucariotos|:pt_BR
dc.contributor.butantanSilva, Lucas Ferreira da|:Aluno|:Laboratório de Expressão Gênica em Eucariotos|:PrimeiroAutorpt_BR
dc.contributor.butantanAmaral, Murilo Sena|:Técnico|:Laboratório de Expressão Gênica em Eucariotos:Lab. Parasitologia|:pt_BR
dc.contributor.butantanMesel, Vinícius Carqueijo|:Aluno|:Laboratório de Expressão Gênica em Eucariotos:Lab. Parasitologia|:pt_BR
dc.contributor.butantanVideira, Alexandre|:Aluno|:Laboratório de Expressão Gênica em Eucariotos:Lab. Parasitologia|:pt_BR
dc.contributor.butantanVerjovski-Almeida, Sergio|:Pesquisador|:Laboratório de Expressão Gênica em Eucariotos:Lab. Parasitologia|:Autor de correspondênciapt_BR
dc.sponsorship.butantan(CNPq) Conselho Nacional de Desenvolvimento Científico e Tecnológico¦¦pt_BR
dc.sponsorship.butantan(FAPESP) Fundação de Amparo à Pesquisa do Estado de São Paulo¦¦2014/03620-2pt_BR
dc.identifier.bvsccBR78.1pt_BR
dc.identifier.bvsdbIBProdpt_BR
dc.description.dbindexedYespt_BR
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