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dc.contributor.authorSucularlı, Ceren
dc.contributor.authorShehwana, Huma
dc.contributor.authorKuşcu, Cem
dc.contributor.authorCığlıdağ Düngül, Dilay
dc.contributor.authorÖzdağ, Hilal
dc.contributor.authorKonu, Özlen
dc.date.accessioned2020-01-29T13:35:15Z
dc.date.available2020-01-29T13:35:15Z
dc.date.issued2016
dc.identifier.issn1791-3004
dc.identifier.urihttps://doi.org/10.3892/mmr.2016.5059
dc.identifier.urihttps://www.scopus.com/inward/record.url?eid=2-s2.0-84964769144&partnerID=40&md5=4f4c6ea1553389f0519b49caa1caa492
dc.identifier.urihttp://hdl.handle.net/11655/21929
dc.description.abstractMechanistic target of rapamycin (mTOR) is a conserved serine/threonine kinase important in cell proliferation, growth and protein translation. Rapamycin, a well‑known anti‑cancer agent and immunosuppressant drug, inhibits mTOR activity in different taxa including zebrafish. In the present study, the effect of rapamycin exposure on the transcriptome of a zebrafish fibroblast cell line, ZF4, was investigated. Microarray analysis demonstrated that rapamycin treatment modulated a large set of genes with varying functions including protein synthesis, assembly of mitochondrial and proteasomal machinery, cell cycle, metabolism and oxidative phosphorylation in ZF4 cells. A mild however, coordinated reduction in the expression of proteasomal and mitochondrial ribosomal subunits was detected, while the expression of numerous ribosomal subunits increased. Meta‑analysis of heterogeneous mouse rapamycin microarray datasets enabled the comparison of zebrafish and mouse pathways modulated by rapamycin, using Kyoto Encyclopedia of Genes and Genomes and Gene Ontology pathway analysis. The analyses demonstrated a high degree of functional conservation between zebrafish and mice in response to rapamycin. In addition, rapamycin treatment resulted in a marked dose‑dependent reduction in body size and pigmentation in zebrafish embryos. The present study is the first, to the best of our knowledge, to evaluate the conservation of rapamycin‑modulated functional pathways between zebrafish and mice, in addition to the dose‑dependent growth curves of zebrafish embryos upon rapamycin exposure.tr_TR
dc.language.isoentr_TR
dc.publisherSpandıdos Publicationstr_TR
dc.relation.isversionof10.3892/mmr.2016.5059tr_TR
dc.rightsinfo:eu-repo/semantics/openAccesstr_TR
dc.subjectZF4tr_TR
dc.subjectMeta-analysistr_TR
dc.subjectMicroarraytr_TR
dc.subjectMousetr_TR
dc.subjectmTORtr_TR
dc.subjectRapamycintr_TR
dc.subjectReal-time qPCRtr_TR
dc.subjectZebrafishtr_TR
dc.subject.lcshSağlık Bilimleritr_TR
dc.titleFunctionally Conserved Effects of Rapamycin Exposure on Zebrafishtr_TR
dc.typeinfo:eu-repo/semantics/articletr_TR
dc.typeinfo:eu-repo/semantics/publishedVersion
dc.relation.journalMolecular Medicine Reportstr_TR
dc.contributor.departmentBiyoinformatiktr_TR
dc.identifier.volume13tr_TR
dc.identifier.issue5tr_TR
dc.identifier.startpage4421tr_TR
dc.identifier.endpage4430tr_TR
dc.description.indexScopustr_TR
dc.fundingYoktr_TR


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