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C-terminus of transcription factor TnrA from Bacillus subtilis controls DNA-binding domain activity but is not required for dimerizationThe transcription factor TnrA, which belongs to the MerR transcription regulators, in Bacillus

Transcription factor TnrA inhibits the biosynthetic activity of glutamine synthetase in Bacillus subtilis and then binds transcription factors GlnR and TnrA, which control the genes of nitrogen assimilation. While GS

Interaction of the general transcription factor TnrA with the PII-like protein GlnK and glutamine synthetase in Bacillus subtilisTnrA is a master transcription factor regulating nitrogen metabolism in Bacillus subtilis under

C-terminus of transcription factor TnrA from Bacillus subtilis controls DNA-binding domain activity but is not required for dimerizationThe transcription factor TnrA, which belongs to the MerR transcription regulators, in Bacillus

The role of AmtB, GlnK and glutamine synthetase in regulation of of transcription factor TnrA in Bacillus subtilis are regulated by the transcription factor TnrA. In the cell, it is bound to AmtB-GlnK proteins, with interaction

Interaction of the general transcription factor TnrA with the PII-like protein GlnK and glutamine synthetase in Bacillus subtilisTnrA is a master transcription factor regulating nitrogen metabolism in Bacillus subtilis under

Inactivation of the general transcription factor TnrA in Bacillus subtilis by proteolysisUnder conditions of nitrogen limitation, the general transcription factor TnrA in Bacillus subtilis

The role of AmtB, GlnK and glutamine synthetase in regulation of transcription factor tnra in bacillus subtilis. In Bacillus subtilis the genes of nitrogen metabolism are regulated by the transcription factor TnrA. In a

Inactivation of the general transcription factor TnrA in Bacillus subtilis by proteolysisUnder conditions of nitrogen limitation, the general transcription factor TnrA in Bacillus subtilis

Transcription factor TnrA inhibits the biosynthetic activity of glutamine synthetase in Bacillus subtilis and then binds transcription factors GlnR and TnrA, which control the genes of nitrogen assimilation. While GS

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