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1 for the catabolite activator protein and the leucine-responsive regulatory protein.
2 le to the intracellular concentration of the leucine-responsive regulatory protein.
5 . coli global transcriptional regulator Lrp (leucine-responsive regulatory protein), implying the pre
7 tory proteins, of which the Escherichia coli leucine-responsive regulatory protein is the archetype.
10 by multiple promoters that are repressed by leucine-responsive regulatory protein (Lrp) and activate
11 oding for homologues of the Escherichia coli leucine-responsive regulatory protein (Lrp) and another
12 in vivo was previously shown to require the leucine-responsive regulatory protein (Lrp) and DNA aden
14 mechanism involving the competition between leucine-responsive regulatory protein (Lrp) and DNA aden
15 coli DNA adenine methyltransferase (Dam) and Leucine-responsive regulatory protein (Lrp) are key regu
16 activation of papBA requires binding of the leucine-responsive regulatory protein (Lrp) at binding s
17 ence logos composed from naturally occurring leucine-responsive regulatory protein (Lrp) binding site
22 ich carry mutations in the gene encoding the leucine-responsive regulatory protein (Lrp) has been ide
23 two distinct DNA-binding modes exhibited by leucine-responsive regulatory protein (Lrp) in the pap p
28 the use of strains in which the gene for the leucine-responsive regulatory protein (lrp) is transcrib
33 suggest interactions between the FNR and the leucine-responsive regulatory protein (Lrp) regulatory n
34 ection assay showed that the addition of the leucine-responsive regulatory protein (Lrp) to pap DNA w
35 e regulon controlled by the Escherichia coli leucine-responsive regulatory protein (Lrp) was studied
36 rs [catabolite gene activator protein (CAP), leucine-responsive regulatory protein (Lrp), DNA adenine