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Cooperative non-specific DNA binding of the N-terminal core of the cyclic AMP receptor protein of Escherichia coli and its modulation by cyclic AMP
Authors:G M Clore  A M Gronenborn  R W Davies
Institution:1. Division of Molecular Pharmacology, National Institute for Medical Research, Mill Hill, London NW7 1AA England;2. Department of Biochemistry and Applied Microbiology, University of Manchester Institute of Science and Technology, P.O. Box 88, Manchester M60 1QD, England
Abstract:The non-specific DNA binding of CRP and its N-terminal core, alpha CRP, to a 298 base pair DNA fragment, in the presence and absence of cAMP, has been studied using the nitrocellulose filter binding technique and analysed quantitatively using the theory of Clore et al. J. Mol. Biol. (1982) 155, 447-466]. It is shown that both CRP and alpha CRP bind cooperatively to DNA. At an ionic strength of 100 mM and pH 7.5, the intrinsic equilibrium association constant for the binding of alpha CRP to DNA is approximately 10-times smaller than that for CRP, but the cooperativity parameter is approximately 17-times larger for alpha CRP than CRP. cAMP exerts its effect solely on the intrinsic equilibrium constant and does not alter the cooperativity. In the case of alpha CRP, cAMP reduces the intrinsic equilibrium association constant by a factor of 3, in contrast to the case of CRP where cAMP increases it by a factor of 3. The possible location of the DNA binding site present in the N-terminal core of CRP is discussed in the light of crystallographic data on the cAMP . CRP complex McKay et al. (1982) J. Biol. Chem. 257, 9518-9524].
Keywords:cAMP receptor protein (CRP)  N-terminal core  cAMP modulation  Cooperative non-specific DNA binding  Nitrocellulose filter binding assay  CRP  gaCRP  N-terminal core of CRP produced by subtilisin digestion of the cAMP·CRP complex  cAMP  adenosine 3′  5′-cyclic phosphate  bp  base pair
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