Upstream binding of idling RNA polymerase modulates transcription initiation from a nearby promoter.

Veneta Gerganova, Sebastian Maurer, Liubov Stoliar, Aleksandre Japaridze, Giovanni Dietler, William Nasser, Tamara Kutateladze, Andrew Travers, Georgi Muskhelishvili

Journal: The Journal of biological chemistry 2015;290(13):8095-109

PMID: 25648898

Abstract

The bacterial gene regulatory regions often demonstrate distinctly organized arrays of RNA polymerase binding sites of ill-defined function. Previously we observed a module of closely spaced polymerase binding sites upstream of the canonical promoter of the Escherichia coli fis operon. FIS is an abundant nucleoid-associated protein involved in adjusting the chromosomal DNA topology to changing cellular physiology. Here we show that simultaneous binding of the polymerase at the canonical fis promoter and an upstream transcriptionally inactive site stabilizes a RNAP oligomeric complex in vitro. We further show that modulation of the upstream binding of RNA polymerase affects the fis promoter activity both in vivo and in vitro. The effect of the upstream RNA polymerase binding on the fis promoter activity depends on the spatial arrangement of polymerase binding sites and DNA supercoiling. Our data suggest that a specific DNA geometry of the nucleoprotein complex stabilized on concomitant binding of RNA polymerase molecules at the fis promoter and the upstream region acts as a topological device regulating the fis transcription. We propose that transcriptionally inactive RNA polymerase molecules can act as accessory factors regulating the transcription initiation from a nearby promoter.

© 2015 by The American Society for Biochemistry and Molecular Biology, Inc.

Address: From the School of Engineering and Science, Jacobs University Bremen, Campus Ring 1, D-28759 Bremen, Germany.; the Laboratory of the Physics of Living Matter, EPFL, CH-1015 Lausanne, Switzerland.; the UMR5240 CNRS/INSA/UCB, Université de Lyon, F-69003, INSA-Lyon, Villeurbanne, F-69621, France.; the Ivane Beritashvili Centre of Experimental Biomedicine, Gotua str.14, Tbilisi, Georgia, and.; the MRC Laboratory of Molecular Biology, Hills Road, Cambridge CB2 QH, United Kingdom.; From the School of Engineering and Science, Jacobs University Bremen, Campus Ring 1, D-28759 Bremen, Germany, [email protected].
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