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. 2013 May;54(5):1312–1325. doi: 10.1194/jlr.M034728

TABLE 1.

GSEA for myocardial transcriptome changes in the inducible Taz KD model of Barth syndrome

Gene Set Name (Number of Genes in Pathway) Number of Genes Overlapped P
Increased gene expression
 Cytosolic tRNA aminoacylation  [Reactome] (23) 11 5.15 e−11
 tRNA aminoacylation [Reactome] (40) 11 5.28 e−8
 Aminoacyl tRNA biosynthesis [KEGG] (41) 11 7 e−8
 Translation [Reactome] (120) 12 7.24 e−4
 Peptide chain elongation [Reactome] (84) 9 2.06 e−3
 Metabolism of nucleotides [Reactome] (71) 8 2.63 e−3
 Purine metabolism [Reactome] (30) 5 3.07 e−3
 Gene expression [Reactome] (425) 25 4.78 e−3
 Valine, leucine, and isoleucine biosynthesis  [KEGG] (11) 3 5.21 e−3
 Amino acid synthesis and interconversion  [Reactome] (12) 3 6.77 e−3
 P53 hypoxia pathway [BioCarta] (23) 4 6.89 e−3
 Viral mRNA translation [Reactome] (84) 8 7.39 e−3
 GTP hydrolysis and Joining of the 60S  Ribosomal Subunit 9 9.65 e−3
 Ribosome [KEGG] (88) 8 9.71 e−3
 Metabolism of proteins [Reactome] (215) 14 1.44 e−2
 Formation of a pool of free 4E 40S  subunits [Reactome] (95) 8 1.5 e−2
 P53 pathway [BioCarta] (16) 3 1.56 e−2
 ONE carbon pool of folate [KEGG] (17) 3 1.85 e−2
 Unfolded protein response [Reactome] (19) 3 2.5 e−2
 ATM pathway [BioCarta] (20) 3 2.87 e−2
 EIF4 pathway [BioCarta] (24) 3 4.62 e−2
Decreased gene expression
 Branched chain amino acid catabolism  [Reactome] (17) 3 1.17 e−2
 IL12 pathway [BioCarta] (23) 3 2.69 e−2
 Biopeptides pathway [BioCarta] (43) 4 3.38 e−2
 Valine, leucine, isoleucine degradation  [KEGG] (44) 4 3.64 e−2
 CREB pathway [BioCarta] (27) 3 4.09 e−2

Data analyzed from GSE33452 using GSEA.