Structural basis for cAMP-mediated allosteric control of the catabolite activator protein
- 28 April 2009
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 106 (17) , 6927-6932
- https://doi.org/10.1073/pnas.0900595106
Abstract
The cAMP-mediated allosteric transition in the catabolite activator protein (CAP; also known as the cAMP receptor protein, CRP) is a textbook example of modulation of DNA-binding activity by small-molecule binding. Here we report the structure of CAP in the absence of cAMP, which, together with structures of CAP in the presence of cAMP, defines atomic details of the cAMP-mediated allosteric transition. The structural changes, and their relationship to cAMP binding and DNA binding, are remarkably clear and simple. Binding of cAMP results in a coil-to-helix transition that extends the coiled-coil dimerization interface of CAP by 3 turns of helix and concomitantly causes rotation, by ≈60°, and translation, by ≈7 Å, of the DNA-binding domains (DBDs) of CAP, positioning the recognition helices in the DBDs in the correct orientation to interact with DNA. The allosteric transition is stabilized further by expulsion of an aromatic residue from the cAMP-binding pocket upon cAMP binding. The results define the structural mechanisms that underlie allosteric control of this prototypic transcriptional regulatory factor and provide an illustrative example of how effector-mediated structural changes can control the activity of regulatory proteins.Keywords
This publication has 36 references indexed in Scilit:
- Interplay between Site-Specific Mutations and Cyclic Nucleotides in Modulating DNA Recognition by Escherichia coli Cyclic AMP Receptor Protein,Biochemistry, 2004
- Catabolite activator protein: DNA binding and transcription activationCurrent Opinion in Structural Biology, 2004
- Phylogeny of the bacterial superfamily of Crp-Fnr transcription regulators: exploiting the metabolic spectrum by controlling alternative gene programsFEMS Microbiology Reviews, 2003
- Identifying global regulators in transcriptional regulatory networks in bacteriaCurrent Opinion in Microbiology, 2003
- Structural basis for modulation and agonist specificity of HCN pacemaker channelsNature, 2003
- Structure and regulation of the cAMP-binding domains of Epac2Nature Structural & Molecular Biology, 2002
- Structural Basis of Transcription Activation: The CAP-αCTD-DNA ComplexScience, 2002
- Stoichiometry and Structural Effect of the Cyclic Nucleotide Binding to Cyclic AMP Receptor ProteinJournal of Biological Chemistry, 2002
- Analogs of cyclic AMP that elicit the biochemically defined conformational change in catabolite gene activator protein (CAP) but do not stimulate binding to DNAJournal of Molecular Biology, 1985
- Structure of catabolite gene activator protein at 2.9 Å resolution suggests binding to left-handed B-DNANature, 1981