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1 osest functional analog is probably CAP, the cyclic AMP receptor/activator protein.
2          Clathrin-minus cells down-regulated cyclic AMP receptors, but only to half the extent of wil
3        This indicated that cyclic AMP (cAMP)-cyclic AMP receptor (CRP) activates arr operon transcrip
4 ch encodes a protein that is a member of the cyclic AMP receptor family of transcriptional regulators
5 brium studies show that the Escherichia coli cyclic AMP receptor protein (CAP) and lactose repressor
6                                          The cyclic AMP receptor protein (CAP) and lactose repressor
7 brium studies show that the Escherichia coli cyclic AMP receptor protein (CAP) and RNA polymerase hol
8 onse regulator UhpA and is stimulated by the cyclic AMP receptor protein (CAP).
9                                          The cyclic AMP receptor protein (CRP) activates transcriptio
10 RP-dependent promoters, the Escherichia coli cyclic AMP receptor protein (CRP) activates transcriptio
11                                          The cyclic AMP receptor protein (CRP) acts as a transcriptio
12  and lsrRK operons are regulated by LsrR and cyclic AMP receptor protein (CRP) and that proper regula
13 e propose reflects regulation of feaR by the cyclic AMP receptor protein (CRP) and the nitrogen assim
14 on the direct action of the carbon regulator cyclic AMP receptor protein (CRP) and the oxygen regulat
15 scription activation by the Escherichia coli cyclic AMP receptor protein (CRP) at Class II promoters
16  found that RhaS autoregulation required the cyclic AMP receptor protein (CRP) binding site at rhaSR
17               Deletion analysis identified a cyclic AMP receptor protein (Crp) binding site upstream
18 R and two sequences resembling the consensus cyclic AMP receptor protein (CRP) binding site were iden
19 iration, Shewanella oneidensis MR-1 uses the cyclic AMP receptor protein (CRP) for this purpose.
20 s of various amino acids in Escherichia coli cyclic AMP receptor protein (CRP) has been shown to modu
21             These studies also show that the cyclic AMP receptor protein (CRP) interacts with the mel
22                         The Escherichia coli cyclic AMP receptor protein (CRP) is a global regulator
23                             Escherichia coli cyclic AMP receptor protein (CRP) is a global transcript
24                                              Cyclic AMP receptor protein (CRP) is a regulator of tran
25    Promoter fusion studies also suggest that cyclic AMP receptor protein (CRP) is involved in ompT ac
26 n in response to iron availability while the cyclic AMP receptor protein (Crp) regulates expression o
27          Although the mechanism by which the cyclic AMP receptor protein (CRP) regulates global gene
28                                              Cyclic AMP receptor protein (CRP) regulates the expressi
29                     In Escherichia coli, the cyclic AMP receptor protein (CRP) serves as a sensor of
30 he role of the spacer region DNA between the cyclic AMP receptor protein (CRP) site and the RNA polym
31  with mobility shift assays indicated that a cyclic AMP receptor protein (CRP) site located at -111.5
32 al activator synergy by the Escherichia coli cyclic AMP receptor protein (CRP) working at an artifici
33 tion factors, including the Escherichia coli cyclic AMP receptor protein (CRP), act by making direct
34 sequences, including binding sites for NtrC, cyclic AMP receptor protein (CRP), and ArgR.
35                                   Given that cyclic AMP receptor protein (CRP), the second activator
36                                          The cyclic AMP receptor protein (CRP), which activates trans
37 as further extended to a homologous protein, cyclic AMP receptor protein (CRP), which revealed simila
38 at lasR expression was regulated through the cyclic AMP receptor protein (CRP)-binding consensus sequ
39                                            A cyclic AMP receptor protein (CRP)-binding site (viz.
40 amino acid side chains important for class I cyclic AMP receptor protein (CRP)-dependent transcriptio
41 f DNA sequence variability and the degree of cyclic AMP receptor protein (CRP)-induced bending of the
42 helix DNA-binding protein like its homologue cyclic AMP receptor protein (CRP).
43 ite repression or activation mediated by the cyclic AMP receptor protein (Crp).
44  linker length on promoters dependent on the cyclic AMP receptor protein (CRP).
45 o uncover a cryptic activating region in the cyclic AMP receptor protein (CRP).
46 rp gene of Vibrio cholerae (Vc) encoding the cyclic AMP receptor protein (CRP).
47  initiation at galP1 can be activated by the cyclic AMP receptor protein (CRP).
48 tein interactions using the Escherichia coli cyclic AMP receptor protein (CRP).
49                                          The cyclic AMP receptor protein (CRP, also called catabolite
50 laps the -35 region of the promoter) and the cyclic AMP receptor protein (CRP; bound immediately upst
51  two sigma factors, two negative regulators (cyclic AMP receptor protein [CRP] and H-NS), and an AraC
52 robic growth through a process that requires cyclic AMP receptor protein and adenylate cyclase.
53 ms in correctly identifying Escherichia coli cyclic AMP receptor protein and Bacillus subtilis sigma
54                    Finally, we show that the cyclic AMP receptor protein and H-NS act along the same
55 the major acsP2 promoter is dependent on the cyclic AMP receptor protein and is modulated by IHF and
56  have been identified through studies of the cyclic AMP receptor protein and its interactions with RN
57  lsrRK, which is positively regulated by the cyclic AMP receptor protein and negatively regulated by
58 erichia coli araBAD promoter pBAD and by the cyclic AMP receptor protein at the galKTE promoter P1.
59 s was differentially regulated by cyclic AMP-cyclic AMP receptor protein complex, and each was strong
60 an NtrC-like response regulator, and mrpC, a cyclic AMP receptor protein family transcription activat
61  to the DNA binding domain of members of the cyclic AMP receptor protein family, and the protein is m
62 racts with the positively charged AR2 of the cyclic AMP receptor protein suggested that Lys49 and Lys
63 t was corroborated by showing binding of the cyclic AMP receptor protein to the ycfR promoter.
64  and UK-1 mutants with deletions of the crp (cyclic AMP receptor protein) and cdt (colonization of de
65 tes pathogenesis and is a member of the CRP (cyclic AMP receptor protein) superfamily.
66                         The Escherichia coli cyclic AMP receptor protein, CRP, induces transcription
67                                      E. coli cyclic AMP receptor protein, CRP, is a modular protein t
68                     The transcription factor cyclic AMP receptor protein, CRP, regulates the operons
69  oneidensis is a metal reducer that uses the cyclic AMP receptor protein, CRP, to regulate anaerobic
70 n two transcription activators, MelR and the cyclic AMP receptor protein, CRP.
71 ting Region 2 and Activating Region 3 of the cyclic AMP receptor protein, CRP: our results underscore
72 is subject to transcriptional control by the cyclic AMP receptor protein, riboswitch-mediated transcr
73 protease, which requires HapR, RpoS, and the cyclic AMP receptor protein, was not strongly affected.
74 ter is dependent on direct activation by the cyclic AMP receptor protein, which binds to a target cen
75 sive ArcA-ArcB two-component system, and the cyclic AMP receptor protein-cyclic AMP (CRP-cAMP) comple
76 ression of hyf-lacZ required the presence of cyclic AMP receptor protein-cyclic AMP complex and anaer
77 vation of class I (lac) and class II (galP1) cyclic AMP receptor protein-dependent promoters.
78 nary phase, and all but one show evidence of cyclic AMP receptor protein-dependent repression during
79 og (mrpA) immediately upstream of mrpB and a cyclic AMP receptor protein-like transcriptional regulat
80 he trg promoter is activated directly by the cyclic AMP receptor protein.
81  cI protein and that of the Escherichia coli cyclic AMP receptor protein.
82 ed to be dependent in many situations on the cyclic AMP receptor protein.
83 iption factors, AraC and RhaS, alongside the cyclic AMP receptor protein.
84 und that cti expression was repressed by the cyclic-AMP receptor protein (Crp) and repression require
85                             Escherichia coli cyclic-AMP receptor protein (CRP) represents one of the
86 n a common pathway with the widely conserved cyclic-AMP receptor protein that regulates protease prod
87 distinguish CooAs from the general family of cyclic AMP receptor proteins.
88 SP family verprolin homologous/suppressor of cyclic AMP receptor) regulatory complex (W/SRC) is an ev