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. 2015 Sep 11;10(9):e0137751. doi: 10.1371/journal.pone.0137751

Table 2. Acinetobacter baumannii ATCC17978 genes indicated by microarray analysis as being upregulated after exposure to oleanolic acid.

Locus tag Gene Protein name Fold change
Oxidative stress, DNA repair
A1S_0617 ohr Predicted redox protein, regulator of disulfide bond formation 1.658
A1S_2717 Dihydrolipoamide dehydrogenase 1.657
A1S_0315 DNA repair system 1.629
A1S_0159 gpx Glutathione peroxidase 1.597
A1S_2664 groEL 60 kDa Chaperonin 1.518
Cell envelope biogenesis, outer membrane
A1S_0041 des6 a Putative linoleoyl-CoA desaturase 1.673
A1S_0058 gtfs a Glycosyltransferase 1.891
A1S_3398 murl a Glutamate racemase 1.675
A1S_0311 ybaW a Putative acyl-CoA thioesterase II 1.581
A1S_0431 htrB a Lipid A biosynthesis lauroyl acyltransferase 1.503
A1S_2078 yhbS a Predicted acetyltransferase 1.504
A1S_3406 hutU a Urocanate hydratase 1.807
A1S_0494 gtfs Putative glycosyl transferase 1.623
A1S_2016 nucD Lysozyme, Phage-related lysozyme 1.701
A1S_2089 yehB a Fimbrial usher protein 1.561
A1S_0232 Type 4 fimbriae expression regulatory protein 1.509
A1S_0329 pilB a Type 4 fimbrial biogenesis protein 1.552
Energy metabolism
A1S_1023 adk Adenylate kinase 2.416
A1S_0152 atpH Membrane-bound ATP synthase F1 sector, 1.675
A1S_0080 fabB a Beta-ketoacyl-ACP synthase I 1.663
A1S_0155 atpD ATP synthase subunit beta 1.626
A1S_0151 atpE Membrane-bound ATP synthase F0 sector 1.539
A1S_0153 atpA ATP synthase subunit alpha 1.513
A1S_1443 tauB Taurine ATP-binding transport system component 1.506
A1S_0587 panC Pantothenate synthetase 1.523
Transport, transferase
A1S_0092 foxA a Putative ferric siderophore receptor protein 1.743
A1S_0538 macA a Putative RND drug transporter 1.540
A1S_0651 traB TraB protein 1.626
A1S_0029 ssuA a ABC-type nitrate/sulfonate/bicarbonate transport system 1.514
A1S_0922 hmt-1 a Putative homocysteine S-methyltransferase protein 1.667
A1S_3198 rlmA1 a 23S Ribosomal RNA G745 methyltransferase 1.542
A1S_3244 thrB Homoserine kinase 1.532

a Gene names derived from the KEGG orthology; the similarity to these genes is more than 70%