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A genetic method for dissecting the mechanism of transcriptional activator synergy by identical activators.


ABSTRACT: Pairs of transcriptional activators in prokaryotes have been shown to activate transcription synergistically from promoters with two activator binding sites. In some cases, such synergistic effects result from cooperative binding, but in other cases each DNA-bound activator plays a direct role in the activation process by interacting simultaneously with separate surfaces of RNA polymerase. In such cases, each DNA-bound activator must possess a functional activating region, the surface that mediates the interaction with RNA polymerase. When transcriptional activation depends on two or more identical activators, it is not straightforward to test the requirement of each activator for a functional activating region. Here we describe a method for directing a mutationally altered activator to either one or the other binding site, and we demonstrate the use of this method to examine the mechanism of transcriptional activator synergy by the Escherichia coli cyclic AMP receptor protein (CRP) working at an artificial promoter bearing two CRP-binding sites.

SUBMITTER: Langdon RC 

PROVIDER: S-EPMC23043 | biostudies-literature | 1999 Oct

REPOSITORIES: biostudies-literature

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A genetic method for dissecting the mechanism of transcriptional activator synergy by identical activators.

Langdon R C RC   Hochschild A A  

Proceedings of the National Academy of Sciences of the United States of America 19991001 22


Pairs of transcriptional activators in prokaryotes have been shown to activate transcription synergistically from promoters with two activator binding sites. In some cases, such synergistic effects result from cooperative binding, but in other cases each DNA-bound activator plays a direct role in the activation process by interacting simultaneously with separate surfaces of RNA polymerase. In such cases, each DNA-bound activator must possess a functional activating region, the surface that media  ...[more]

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