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H-NS can facilitate specific DNA-binding by RNA polymerase in AT-rich gene regulatory regions.


ABSTRACT: Extremely AT-rich DNA sequences present a challenging template for specific recognition by RNA polymerase. In bacteria, this is because the promoter -10 hexamer, the major DNA element recognised by RNA polymerase, is itself AT-rich. We show that Histone-like Nucleoid Structuring (H-NS) protein can facilitate correct recognition of a promoter by RNA polymerase in AT-rich gene regulatory regions. Thus, at the Escherichia coli ehxCABD operon, RNA polymerase is unable to distinguish between the promoter -10 element and similar overlapping sequences. This problem is resolved in native nucleoprotein because the overlapping sequences are masked by H-NS. Our work provides mechanistic insight into nucleoprotein structure and its effect on protein-DNA interactions in prokaryotic cells.

SUBMITTER: Singh SS 

PROVIDER: S-EPMC3688479 | biostudies-literature | 2013 Jun

REPOSITORIES: biostudies-literature

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H-NS can facilitate specific DNA-binding by RNA polymerase in AT-rich gene regulatory regions.

Singh Shivani S SS   Grainger David C DC  

PLoS genetics 20130620 6


Extremely AT-rich DNA sequences present a challenging template for specific recognition by RNA polymerase. In bacteria, this is because the promoter -10 hexamer, the major DNA element recognised by RNA polymerase, is itself AT-rich. We show that Histone-like Nucleoid Structuring (H-NS) protein can facilitate correct recognition of a promoter by RNA polymerase in AT-rich gene regulatory regions. Thus, at the Escherichia coli ehxCABD operon, RNA polymerase is unable to distinguish between the prom  ...[more]

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