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  • Search Condition : Filter (Species = Prokaryotes E. coli AND Resource = ME9062(BW25113))
Species Resource
Prokaryotes E. coli ME9062(BW25113) , JW1843 Dynamic responses of the intracellular metabolite concentrations of the wild type and pykA mutant E.coli against pulse addition of glucose or NH4 under those limiting continuous cultures.
Prokaryotes E. coli ME9062(BW25113) , JW1375 Effect of ldhA gene deletion on the metabolism of E.coli based on gene expression, enzyme activities, intracellular metabilite concentrations, and metabolic flux distribution.
Prokaryotes E. coli ME9062(BW25113) , JW0715 , JW0717 Effect of sucA or sucC gene knockout on the metabolism in Escherichia coli based on gene expressions, enzyme activities, intracellular metabolite concentrations and metabolic fluxes by 13C-labeling experiments.
Prokaryotes E. coli ME9062(BW25113) , JW1176 Effect of fadR gene knockout on the metabolism of Escherichia coli based on analyses of protein expressions, enzyme activities and intracellular metabolite concentrations.
Prokaryotes E. coli ME9062(BW25113) Roles of long and short replication initiation proteins in the fate of IncP-1 plasmids.
Prokaryotes E. coli JW3480 , JW5437 , JW3169 , JW4253 , pCA24N , ME9062(BW25113) Transcription of an antisense RNA of a gadE mRNA is regulated by GadE, the central activator of the acid resistance system in Escherichia coli.
Prokaryotes E. coli Keio collection (pgi knockout) , DH5alpha , ME9062(BW25113) Investigating the effects of perturbations to pgi and eno gene expression on central carbon metabolism in Escherichia coli using (13)C metabolic flux analysis.
Prokaryotes E. coli ME9062(BW25113) Influence of Escherichia coli hydrogenases on hydrogen fermentation from glycerol.
Prokaryotes E. coli ME9062(BW25113) , JW0145-KC(mrcB) , JW3359-KC(mrcA) Cell age dependent concentration of Escherichia coli divisome proteins analyzed with ImageJ and ObjectJ.
Prokaryotes E. coli ME9062(BW25113) , JW0998-KC RutR is the uracil/thymine-sensing master regulator of a set of genes for synthesis and degradation of pyrimidines.
Prokaryotes E. coli ME9062(BW25113) , JW1245-KC? Divergence of function in the hot dog fold enzyme superfamily: the bacterial thioesterase YciA.
Prokaryotes E. coli ME9062(BW25113) Involvement of multiple transcription factors for metal-induced spy gene expression in Escherichia coli.
Prokaryotes E. coli ME9062(BW25113) , JW2781(csdA) , JW1670 (sufS) , JW2514(iscS) , JW0767(moaD) IscS functions as a primary sulfur-donating enzyme by interacting specifically with MoeB and MoaD in the biosynthesis of molybdopterin in Escherichia coli.
Prokaryotes E. coli ME9062(BW25113) , JW0110 , JW0111 , JW0112 , ME8993(QC774) Expression of Aeromonas caviae ST pyruvate dehydrogenase complex components mediate tellurite resistance in Escherichia coli.
Prokaryotes E. coli ME9062(BW25113) , JW2257-KC , JW5713-KC , JW2337-KC , JW5536-KC ? The ArcBA two-component system of Escherichia coli is regulated by the redox state of both the ubiquinone and the menaquinone pool.
Prokaryotes E. coli ME9062(BW25113) , JW0623-KC(lipA) , JW4030-KC(acs) , JW4364-KC(arcA) E. coli hypoxia-inducible factor ArcA mediates lifespan extension in a lipoic acid synthase mutant by suppressing acetyl-CoA synthetase.
Prokaryotes E. coli ME9062(BW25113) , Keio collection Genome-wide screen identifies Escherichia coli TCA-cycle-related mutants with extended chronological lifespan dependent on acetate metabolism and the hypoxia-inducible transcription factor ArcA.
Prokaryotes E. coli ME9062(BW25113) , JW1236-KC , JW1434-KC , JW3169-KC , JW4024-KC , JW2343-KC , JW2344-KC All genomic mutations in the antimicrobial surfactant-resistant mutant, Escherichia coli OW66, are involved in cell resistance to surfactant.
Prokaryotes E. coli ME9062(BW25113) , JW5248-KC , pNTR-SD Many chromosomal genes modulate MarA-mediated multidrug resistance in Escherichia coli.
Prokaryotes E. coli ME9062(BW25113) , JW1923 , JW1879 , JW1667 , JW0731 , JW5100 , JW5601 , JW1024 , JW0231 Factors affecting daughter cells' arrangement during the early bacterial divisions.