Repression of arginine anabolic genes and induction of arginine catabolic genes are mediated by a three-component protein complex, interacting with specific DNA sequences in the presence of arginine. Although ArgRI and Mcm1, two MADS-box proteins, and ArgRII, a zinc cluster protein, contain putative DNA binding domains, alone they are unable to bind the arginine boxes in vitro. Using purified glutathione S-transferase fusion proteins, we demonstrate that ArgRI and ArgRII1-180 or Mcm1 and ArgRII1-180 are able to reconstitute an arginine-dependent binding activity in mobility shift analysis. Binding efficiency is enhanced when the three recombinant proteins are present simultaneously. At physiological concentration, the full-length ArgRII is ...
Arginine utilization in P. aeruginosa as the source of carbon, nitrogen, and energy is controlled by...
Protein–protein interactions can be modulated by the methylation of arginine residues. As a means of...
Analysis of the response to arginine of the Escherichia coli K-12 transcriptome by microarray hybrid...
In Saccharomyces cerevisiae, the expression of the genes involved in the synthesis and degradation o...
ArgRIIIp (Arg82p), together with ArgRIp (Arg80p), ArgRIIp (Arg81p) and Mcmlp, regulates the expressi...
ARGRII is one of the three regulatory genes controlling arginine metabolism in yeast. From a pool of...
Arg80 and Mcm1, two members of the MADS box family of DNA-binding proteins, regulate the metabolism ...
ARGRI, ARGRII, and ARGRIII proteins regulate the expression of arginine anabolic and catabolic genes...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...
In Escherichia coli, the arginine repressor protein C-terminal domain of ArgR (ArgRc) regulates the ...
Protein arginine N-methyltransferases (PRMTs) catalyze the transfer of methyl groups from the methyl...
The DNA binding proteins ArgR and AhrC are essential for regulation of arginine metabolism in Escher...
In Saccharomyces cerevisiae, argB and argC define two adjacent and complementing loci, with mutants ...
The DNA binding proteins ArgR and AhrC are essential for regulation of arginine metabolism in Escher...
Arginine utilization in P. aeruginosa as the source of carbon, nitrogen, and energy is controlled by...
Arginine utilization in P. aeruginosa as the source of carbon, nitrogen, and energy is controlled by...
Protein–protein interactions can be modulated by the methylation of arginine residues. As a means of...
Analysis of the response to arginine of the Escherichia coli K-12 transcriptome by microarray hybrid...
In Saccharomyces cerevisiae, the expression of the genes involved in the synthesis and degradation o...
ArgRIIIp (Arg82p), together with ArgRIp (Arg80p), ArgRIIp (Arg81p) and Mcmlp, regulates the expressi...
ARGRII is one of the three regulatory genes controlling arginine metabolism in yeast. From a pool of...
Arg80 and Mcm1, two members of the MADS box family of DNA-binding proteins, regulate the metabolism ...
ARGRI, ARGRII, and ARGRIII proteins regulate the expression of arginine anabolic and catabolic genes...
The expression of arginine metabolism in Lactococcus lactis is controlled by the two homologous tran...
In Escherichia coli, the arginine repressor protein C-terminal domain of ArgR (ArgRc) regulates the ...
Protein arginine N-methyltransferases (PRMTs) catalyze the transfer of methyl groups from the methyl...
The DNA binding proteins ArgR and AhrC are essential for regulation of arginine metabolism in Escher...
In Saccharomyces cerevisiae, argB and argC define two adjacent and complementing loci, with mutants ...
The DNA binding proteins ArgR and AhrC are essential for regulation of arginine metabolism in Escher...
Arginine utilization in P. aeruginosa as the source of carbon, nitrogen, and energy is controlled by...
Arginine utilization in P. aeruginosa as the source of carbon, nitrogen, and energy is controlled by...
Protein–protein interactions can be modulated by the methylation of arginine residues. As a means of...
Analysis of the response to arginine of the Escherichia coli K-12 transcriptome by microarray hybrid...