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Catabolite activator protein: DNA binding and transcription activation.


ABSTRACT: Recently determined structures of the Escherichia coli catabolite activator protein (CAP) in complex with DNA, and in complex with the RNA polymerase alpha subunit C-terminal domain (alphaCTD) and DNA, have yielded insights into how CAP binds DNA and activates transcription. Comparison of multiple structures of CAP-DNA complexes has revealed the contributions of direct and indirect readout to DNA binding by CAP. The structure of the CAP-alphaCTD-DNA complex has provided the first structural description of interactions between a transcription activator and its functional target within the general transcription machinery. Using the structure of the CAP-alphaCTD-DNA complex, the structure of an RNA polymerase-DNA complex, and restraints from biophysical, biochemical and genetic experiments, it has been possible to construct detailed three-dimensional models of intact class I and class II transcription activation complexes.

SUBMITTER: Lawson CL 

PROVIDER: S-EPMC2765107 | biostudies-literature | 2004 Feb

REPOSITORIES: biostudies-literature

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Catabolite activator protein: DNA binding and transcription activation.

Lawson Catherine L CL   Swigon David D   Murakami Katsuhiko S KS   Darst Seth A SA   Berman Helen M HM   Ebright Richard H RH  

Current opinion in structural biology 20040201 1


Recently determined structures of the Escherichia coli catabolite activator protein (CAP) in complex with DNA, and in complex with the RNA polymerase alpha subunit C-terminal domain (alphaCTD) and DNA, have yielded insights into how CAP binds DNA and activates transcription. Comparison of multiple structures of CAP-DNA complexes has revealed the contributions of direct and indirect readout to DNA binding by CAP. The structure of the CAP-alphaCTD-DNA complex has provided the first structural desc  ...[more]

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