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dc.creatorVavougios G.D., Zarogiannis S.G., Krogfelt K.A., Gourgoulianis K., Mitsikostas D.D., Hadjigeorgiou G.en
dc.date.accessioned2023-01-31T10:30:52Z
dc.date.available2023-01-31T10:30:52Z
dc.date.issued2018
dc.identifier10.1016/j.msard.2017.10.013
dc.identifier.issn22110348
dc.identifier.urihttp://hdl.handle.net/11615/80543
dc.description.abstractBackground currently only 4 studies have explored the potential role of PARK7's dysregulation in MS pathophysiology Currently, no study has evaluated the potential role of the PARK7 interactome in MS. Objective The aim of our study was to assess the differential expression of PARK7 mRNA in peripheral blood mononuclears (PBMCs) donated from MS versus healthy patients using data mining techniques. Methods The PARK7 interactome data from the GDS3920 profile were scrutinized for differentially expressed genes (DEGs); Gene Enrichment Analysis (GEA) was used to detect significantly enriched biological functions. Results 27 differentially expressed genes in the MS dataset were detected; 12 of these (NDUFA4, UBA2, TDP2, NPM1, NDUFS3, SUMO1, PIAS2, KIAA0101, RBBP4, NONO, RBBP7 AND HSPA4) are reported for the first time in MS. Stepwise Linear Discriminant Function Analysis constructed a predictive model (Wilk's λ = 0.176, χ2 = 45.204, p = 1.5275e−10) with 2 variables (TIDP2, RBBP4) that achieved 96.6% accuracy when discriminating between patients and controls. Gene Enrichment Analysis revealed that induction and regulation of programmed / intrinsic cell death represented the most salient Gene Ontology annotations. Cross-validation on systemic lupus erythematosus and ischemic stroke datasets revealed that these functions are unique to the MS dataset. Conclusions Based on our results, novel potential target genes are revealed; these differentially expressed genes regulate epigenetic and apoptotic pathways that may further elucidate underlying mechanisms of autorreactivity in MS. © 2017 Elsevier B.V.en
dc.language.isoenen
dc.sourceMultiple Sclerosis and Related Disordersen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85032297806&doi=10.1016%2fj.msard.2017.10.013&partnerID=40&md5=456ef5468ded298a4c0805741089b422
dc.subjectprotein deglycase DJ-1en
dc.subjectmessenger RNAen
dc.subjectPARK7 protein, humanen
dc.subjectprotein deglycase DJ-1en
dc.subjectaccuracyen
dc.subjectacetylationen
dc.subjectapoptosisen
dc.subjectArticleen
dc.subjectbrain ischemiaen
dc.subjectcomputer modelen
dc.subjectcontrolled studyen
dc.subjectdata miningen
dc.subjectdeacetylationen
dc.subjectdiscriminant analysisen
dc.subjectepigeneticsen
dc.subjectgeneen
dc.subjectgene expressionen
dc.subjectgene functionen
dc.subjectgene ontologyen
dc.subjectHSPA4 geneen
dc.subjecthumanen
dc.subjecthuman cellen
dc.subjectKIAA0101 geneen
dc.subjectmitochondrionen
dc.subjectmolecular interactionen
dc.subjectmultiple sclerosisen
dc.subjectNDUFA4 geneen
dc.subjectNDUFS3 geneen
dc.subjectNONO geneen
dc.subjectNPM1 geneen
dc.subjectPARK7 geneen
dc.subjectperipheral blood mononuclear cellen
dc.subjectPIAS2 geneen
dc.subjectRBBP4 geneen
dc.subjectRBBP7 geneen
dc.subjectStepwise Linear Discriminant Function Analysisen
dc.subjectSUMO1 geneen
dc.subjectsystemic lupus erythematosusen
dc.subjectTDP2 geneen
dc.subjectUBA2 geneen
dc.subjectacetylationen
dc.subjectapoptosisen
dc.subjectbiologyen
dc.subjectcomputer simulationen
dc.subjectgene regulatory networken
dc.subjectgeneticsen
dc.subjectmetabolismen
dc.subjectmonocyteen
dc.subjectmultiple sclerosisen
dc.subjectproceduresen
dc.subjectAcetylationen
dc.subjectApoptosisen
dc.subjectComputational Biologyen
dc.subjectComputer Simulationen
dc.subjectData Miningen
dc.subjectGene Regulatory Networksen
dc.subjectHumansen
dc.subjectMonocytesen
dc.subjectMultiple Sclerosisen
dc.subjectProtein Deglycase DJ-1en
dc.subjectRNA, Messengeren
dc.subjectElsevier B.V.en
dc.titleNovel candidate genes of the PARK7 interactome as mediators of apoptosis and acetylation in multiple sclerosis: An in silico analysisen
dc.typejournalArticleen


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