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Regulated communication between the upstream face of RNA polymerase and the beta' subunit jaw domain.


ABSTRACT: We used bacteriophage T7-encoded transcription inhibitor gene protein 2 (gp2) as a probe to study the contribution of the Escherichia coli RNA polymerase (RNAP) beta' subunit jaw domain--the site of gp2 binding--to activator and ATP hydrolysis-dependent open complex formation by the sigma(54)-RNAP. We show that, unlike sigma(70)-dependent transcription, activated transcription by sigma(54)-RNAP is resistant to gp2. In contrast, activator and ATP hydrolysis-independent transcription by sigma(54)-RNAP is highly sensitive to gp2. We provide evidence that an activator- and ATP hydrolysis-dependent conformational change involving the beta' jaw domain and promoter DNA is the basis for gp2-resistant transcription by sigma(54)-RNAP. Our results establish that accessory factors bound to the upstream face of the RNAP, communicate with the beta' jaw domain, and that such communication is subjected to regulation.

SUBMITTER: Wigneshweraraj SR 

PROVIDER: S-EPMC524387 | biostudies-literature | 2004 Oct

REPOSITORIES: biostudies-literature

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Regulated communication between the upstream face of RNA polymerase and the beta' subunit jaw domain.

Wigneshweraraj Siva R SR   Burrows Patricia C PC   Nechaev Sergei S   Zenkin Nikolay N   Severinov Konstantin K   Buck Martin M  

The EMBO journal 20041007 21


We used bacteriophage T7-encoded transcription inhibitor gene protein 2 (gp2) as a probe to study the contribution of the Escherichia coli RNA polymerase (RNAP) beta' subunit jaw domain--the site of gp2 binding--to activator and ATP hydrolysis-dependent open complex formation by the sigma(54)-RNAP. We show that, unlike sigma(70)-dependent transcription, activated transcription by sigma(54)-RNAP is resistant to gp2. In contrast, activator and ATP hydrolysis-independent transcription by sigma(54)-  ...[more]

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