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A bacteriophage transcription regulator inhibits bacterial transcription initiation by ?-factor displacement.


ABSTRACT: Bacteriophages (phages) appropriate essential processes of bacterial hosts to benefit their own development. The multisubunit bacterial RNA polymerase (RNAp) enzyme, which catalyses DNA transcription, is targeted by phage-encoded transcription regulators that selectively modulate its activity. Here, we describe the structural and mechanistic basis for the inhibition of bacterial RNAp by the transcription regulator P7 encoded by Xanthomonas oryzae phage Xp10. We reveal that P7 uses a two-step mechanism to simultaneously interact with the catalytic ? and ?' subunits of the bacterial RNAp and inhibits transcription initiation by inducing the displacement of the ?(70)-factor on initial engagement of RNAp with promoter DNA. The new mode of interaction with and inhibition mechanism of bacterial RNAp by P7 underscore the remarkable variety of mechanisms evolved by phages to interfere with host transcription.

SUBMITTER: Liu B 

PROVIDER: S-EPMC3985653 | biostudies-literature | 2014 Apr

REPOSITORIES: biostudies-literature

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A bacteriophage transcription regulator inhibits bacterial transcription initiation by σ-factor displacement.

Liu Bing B   Shadrin Andrey A   Sheppard Carol C   Mekler Vladimir V   Xu Yingqi Y   Severinov Konstantin K   Matthews Steve S   Wigneshweraraj Sivaramesh S  

Nucleic acids research 20140130 7


Bacteriophages (phages) appropriate essential processes of bacterial hosts to benefit their own development. The multisubunit bacterial RNA polymerase (RNAp) enzyme, which catalyses DNA transcription, is targeted by phage-encoded transcription regulators that selectively modulate its activity. Here, we describe the structural and mechanistic basis for the inhibition of bacterial RNAp by the transcription regulator P7 encoded by Xanthomonas oryzae phage Xp10. We reveal that P7 uses a two-step mec  ...[more]

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