This thesis describes the functional characterisation of the transcriptional regulators GlnR, ArgR and AhrC of Lactococcus lactis, which are responsible for the control of genes involved in the metabolism of the amino acids glutamine, glutamate and arginine. A chromosomal glnR deletion mutant was made and compared to the wild-type strain, by transcriptome analysis, during growth in either rich or poor nitrogen media. L. lactis GlnR was shown to repress the expression of glnRA (encoding the regulator itself and glutamine synthetase), amtBglnK (encoding putative ammonium transport and PII signal transduction proteins), and glnPQ (encoding putative glutamine ABC transport and substrate binding proteins), in nitrogen excess. Promoter-deletion a...
Small regulatory RNAs (sRNAs) and their enormous potential and versatility have provided us with an ...
Small regulatory RNAs (sRNAs) and their enormous potential and versatility have provided us with an ...
We show that the nitrogen regulatory protein GlnR of Lactococcus lactis represses transcription of t...
This thesis describes the functional characterisation of the transcriptional regulators GlnR, ArgR a...
The DNA binding proteins ArgR and AhrC are essential for regulation of arginine metabolism in Escher...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...
The DNA binding proteins ArgR and AhrC are essential for regulation of arginine metabolism in Escher...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...
In previous studies, we have shown that direct protein-protein interaction between the two regulator...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...
We show that the nitrogen regulatory protein GlnR of Lactococcus lactis represses transcription of t...
In previous studies, we have shown that direct protein-protein interaction between the two regulator...
Small regulatory RNAs (sRNAs) and their enormous potential and versatility have provided us with an ...
Small regulatory RNAs (sRNAs) and their enormous potential and versatility have provided us with an ...
We show that the nitrogen regulatory protein GlnR of Lactococcus lactis represses transcription of t...
This thesis describes the functional characterisation of the transcriptional regulators GlnR, ArgR a...
The DNA binding proteins ArgR and AhrC are essential for regulation of arginine metabolism in Escher...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...
The DNA binding proteins ArgR and AhrC are essential for regulation of arginine metabolism in Escher...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...
In previous studies, we have shown that direct protein-protein interaction between the two regulator...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...
We show that the nitrogen regulatory protein GlnR of Lactococcus lactis represses transcription of t...
In previous studies, we have shown that direct protein-protein interaction between the two regulator...
Small regulatory RNAs (sRNAs) and their enormous potential and versatility have provided us with an ...
Small regulatory RNAs (sRNAs) and their enormous potential and versatility have provided us with an ...
We show that the nitrogen regulatory protein GlnR of Lactococcus lactis represses transcription of t...