Comment[ArrayExpressAccession] E-GEOD-65666 MAGE-TAB Version 1.1 Public Release Date 2015-08-06 Investigation Title Expression profile in Overexpression of GST,GST-Med3 Comment[Submitted Name] Expression profile in Overexpression of GST,GST-Med3 Experiment Description We have used microarrays to study the gene expression changes in Overexpression of GST,GST-Med3 of yeast cells to detect how the overexpressioin may affect global gene expression. RNA samples were taken from yeast cells overexpressed GST or GST-med3 and hybridized to affymetrix microarrays: GST and GST-Med3 Term Source Name ArrayExpress EFO Term Source File http://www.ebi.ac.uk/arrayexpress/ http://www.ebi.ac.uk/efo/efo.owl Person Last Name Gustafsson Zhu Person First Name Claes Xuefeng Person Email claes.gustafsson@medkem.gu.se Person Affiliation Gothenburg University Person Address Department of Medical biochemistry and cell biology, Gothenburg University, Medcinaregatan 9A, Gothenburg, Sweden Person Roles submitter Protocol Name P-GSE65666-1 P-GSE65666-4 P-GSE65666-5 P-GSE65666-2 P-GSE65666-3 P-GSE65666-6 Protocol Description Raw data (CEL files) was imported into ArrayStar 4, per-gene normalized to median and filtered on flags. ID_REF = VALUE = plier summary normalized Labeling was performed according to the GeneChip expression analysis technical manual that is available for download at www.affymetrix.com. According to the GeneChip expression analysis technical manual that is available for download at www.affymetrix.com. Yeast cells were grown SC-ura plus galactose medium RNA was isolated from yeast cells according to Xue et al. 2004 (Yeast 21(1):25-39). According to the GeneChip expression analysis technical manual that is available for download at www.affymetrix.com. Protocol Type normalization data transformation protocol labelling protocol hybridization protocol growth protocol nucleic acid extraction protocol array scanning protocol Experimental Factor Name overexpression Experimental Factor Type overexpression Publication Title Mediator tail subunits can form amyloid-like aggregates in vivo and affect stress response in yeast. Publication Author List Zhu X, Chen L, Carlsten JO, Liu Q, Yang J, Liu B, Gustafsson CM PubMed ID 26138482 Publication DOI 10.1093/nar/gkv629 Comment[SecondaryAccession] GSE65666 Comment[GEOReleaseDate] 2015-08-06 Comment[ArrayExpressSubmissionDate] 2015-02-05 Comment[GEOLastUpdateDate] 2015-08-06 Comment[AEExperimentType] transcription profiling by array SDRF File E-GEOD-65666.sdrf.txt