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  • Search Condition : Filter (MeSH = Bacillus subtilis / metabolism*)
Species Resource
Prokaryotes B. subtilis Intercellular nanotubes mediate bacterial communication.
Prokaryotes B. subtilis Dissecting complex metabolic integration provides direct genetic evidence for CodY activation by guanine nucleotides.
Prokaryotes B. subtilis MBS239 , MBS218 , MBS219 , MBS230 , MBS231 , MBS232 , MBS233 , MBS234 , MBS235 , MBS236 , ... Additional targets of the Bacillus subtilis global regulator CodY identified by chromatin immunoprecipitation and genome-wide transcript analysis.
Prokaryotes B. subtilis MBS56 , MBS57 , MBS58 Characterization of a polysaccharide deacetylase gene homologue (pdaB) on sporulation of Bacillus subtilis.
Prokaryotes B. subtilis MBS263 , MBS267 , MBS269 , MBS272 , MBS273 , MBS275 , MBS276 , MBS277 , MBS278 , MBS279 Elaborate transcription regulation of the Bacillus subtilis ilv-leu operon involved in the biosynthesis of branched-chain amino acids through global regulators of CcpA, CodY and TnrA.
Prokaryotes B. subtilis MBS270 , MBS271 , MBS294 Enhancement of glutamine utilization in Bacillus subtilis through the GlnK-GlnL two-component regulatory system.
Prokaryotes B. subtilis MBS284 , MBS285 , MBS286 , MBS287 , MBS288 , MBS280 Organization and function of the YsiA regulon of Bacillus subtilis involved in fatty acid degradation.
Prokaryotes B. subtilis MBS241 , MBS261 , MBS262 , MBS298 , MBS307 , MBS309 , MBS310 Molecular mechanisms underlying the positive stringent response of the Bacillus subtilis ilv-leu operon, involved in the biosynthesis of branched-chain amino acids.
Prokaryotes B. subtilis MBS155 , MBS297 Novel gene regulation mediated by overproduction of secondary metabolite neotrehalosadiamine in Bacillus subtilis.
Prokaryotes B. subtilis MBS295 , MBS296 , MBS311 , MBS312 , MBS313 , MBS317 , MBS323 , MBS329 , MBS330 , MBS331 , ... Heavy involvement of stringent transcription control depending on the adenine or guanine species of the transcription initiation site in glucose and pyruvate metabolism in Bacillus subtilis.
Prokaryotes B. subtilis MBS306 , MBS314 , MBS315 , MBS318 , MBS319 , MBS320 , MBS321 , MBS322 , MBS332 , MBS335 , ... Catabolite repression of the Bacillus subtilis FadR regulon, which is involved in fatty acid catabolism.
Prokaryotes B. subtilis MBS356 , MBS357 , MBS358 , MBS359 , MBS360 , MBS361 , MBS362 , MBS363 , MBS364 , MBS365 , ... Direct and indirect regulation of the ycnKJI operon involved in copper uptake through two transcriptional repressors, YcnK and CsoR, in Bacillus subtilis.
Prokaryotes B. subtilis MBS15 , MBS16 , MBS17 , MBS18 , MBS19 , MBS20 , MBS21 , MBS22 , MBS23 , MBS24 , ... Inactivation of ribosomal protein genes in Bacillus subtilis reveals importance of each ribosomal protein for cell proliferation and cell differentiation.
Prokaryotes B. subtilis MBS160 , MBS161 , MBS162 Specific recognition of the Bacillus subtilis gnt cis-acting catabolite-responsive element by a protein complex formed between CcpA and seryl-phosphorylated HPr.
Prokaryotes B. subtilis MBS138 , MBS139 , MBS143 , MBS144 , MBS156 , MBS157 , MBS158 , MBS159 , MBS172 , MBS173 , ... Catabolite repression of the Bacillus subtilis gnt operon exerted by two catabolite-responsive elements.
General Microbes JCM 9153 Production of xylitol by metabolically engineered strains of Bacillus subtilis.
Prokaryotes B. subtilis MBS680 , MBS681 , MBS682 , MBS683 , MBS684 , MBS685 , MBS686 , MBS687 , MBS688 , MBS689 , ... Mutations suppressing the loss of DegQ function in Bacillus subtilis (natto) poly-γ-glutamate synthesis.
Prokaryotes E. coli , Prokaryotes B. subtilis ME9639 , ME9638 , MBS154 Possible function and some properties of the CcpA protein of Bacillus subtilis.
Prokaryotes E. coli , Prokaryotes B. subtilis ME9637 , MBS140 , MBS141 Promoter-independent catabolite repression of the Bacillus subtilis gnt operon.
Prokaryotes E. coli , Prokaryotes B. subtilis ME9655 , ME9656 , ME9664 , MBS169 , MBS170 , MBS171 myo-Inositol catabolism in Bacillus subtilis.