RNA polymerase pausing at a protein roadblock can enhance transcriptional interference by promoter occlusion

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Abstract

Convergent promoters exert transcriptional interference (TI) by several mechanisms including promoter occlusion, where elongating RNA polymerases (RNAPs) block access to a promoter. Here, we tested whether pausing of RNAPs by obstructive DNA-bound proteins can enhance TI by promoter occlusion. Using the Lac repressor as a ‘roadblock’ to induce pausing over a target promoter, we found only a small increase in TI, with mathematical modelling suggesting that rapid termination of the stalled RNAP was limiting the occlusion effect. As predicted, the roadblock-enhanced occlusion was significantly increased in the absence of the Mfd terminator protein. Thus, protein roadblocking of RNAP may cause pause-enhanced occlusion throughout genomes, and the removal of stalled RNAP may be needed to minimize unwanted TI.

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Hao, N., Crooks, M. T., Palmer, A. C., Dodd, I. B., & Shearwin, K. E. (2019). RNA polymerase pausing at a protein roadblock can enhance transcriptional interference by promoter occlusion. FEBS Letters, 593(9), 903–917. https://doi.org/10.1002/1873-3468.13365

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