T7 phage protein Gp2 inhibits the Escherichia coli RNA polymerase by antagonizing stable DNA strand separation near the transcription start site

Cámara B; Liu M.; Reynolds J.; Shadrin, A.; Liu, B; Kwok, K.; Simpson, P; Weinzierl, R.; Severinov K.; Cota, E.; Matthews S.; Wigneshweraraj, S. R.

Abstract

Infection of Escherichia coli by the T7 phage leads to rapid and selective inhibition of the host RNA polymerase (RNAP)-a multi-subunit enzyme responsible for gene transcription-by a small (similar to 7 kDa) phage-encoded protein called Gp2. Gp2 is also a potent inhibitor of E. coli RNAP in vitro. Here we describe the first atomic resolution structure of Gp2, which reveals a distinct run of surface-exposed negatively charged amino acid residues on one side of the molecule. Our comprehensive mutagenesis data reveal that two conserved arginine residues located on the opposite side of Gp2 are important for binding to and inhibition of RNAP. Based on a structural model of the Gp2-RNAP complex, we propose that inhibition of transcription by Gp2 involves prevention of RNAP-promoter DNA interactions required for stable DNA strand separation and maintenance of the transcription bubble near the transcription start site, an obligatory step in the formation of a transcriptionally competent promoter complex.

Más información

Título según WOS: T7 phage protein Gp2 inhibits the Escherichia coli RNA polymerase by antagonizing stable DNA strand separation near the transcription start site
Título de la Revista: PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
Volumen: 107
Número: 5
Editorial: NATL ACAD SCIENCES
Fecha de publicación: 2010
Página de inicio: 2247
Página final: 2252
Idioma: English
URL: http://www.pnas.org/cgi/doi/10.1073/pnas.0907908107
DOI:

10.1073/pnas.0907908107

Notas: ISI