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Metal-responsive promoter DNA compaction by the ferric uptake regulator

Author

Listed:
  • Davide Roncarati

    (University of Bologna)

  • Simone Pelliciari

    (University of Bologna)

  • Nicola Doniselli

    (University of Parma)

  • Stefano Maggi

    (University of Parma)

  • Andrea Vannini

    (University of Bologna)

  • Luca Valzania

    (University of Bologna)

  • Luca Mazzei

    (University of Bologna)

  • Barbara Zambelli

    (University of Bologna)

  • Claudio Rivetti

    (University of Parma)

  • Alberto Danielli

    (University of Bologna)

Abstract

Short-range DNA looping has been proposed to affect promoter activity in many bacterial species and operator configurations, but only few examples have been experimentally investigated in molecular detail. Here we present evidence for a metal-responsive DNA condensation mechanism controlled by the Helicobacter pylori ferric uptake regulator (Fur), an orthologue of the widespread Fur family of prokaryotic metal-dependent regulators. H. pylori Fur represses the transcription of the essential arsRS acid acclimation operon through iron-responsive oligomerization and DNA compaction, encasing the arsR transcriptional start site in a repressive macromolecular complex. A second metal-dependent regulator NikR functions as nickel-dependent anti-repressor at this promoter, antagonizing the binding of Fur to the operator elements responsible for the DNA condensation. The results allow unifying H. pylori metal ion homeostasis and acid acclimation in a mechanistically coherent model, and demonstrate, for the first time, the existence of a selective metal-responsive DNA compaction mechanism controlling bacterial transcriptional regulation.

Suggested Citation

  • Davide Roncarati & Simone Pelliciari & Nicola Doniselli & Stefano Maggi & Andrea Vannini & Luca Valzania & Luca Mazzei & Barbara Zambelli & Claudio Rivetti & Alberto Danielli, 2016. "Metal-responsive promoter DNA compaction by the ferric uptake regulator," Nature Communications, Nature, vol. 7(1), pages 1-13, November.
  • Handle: RePEc:nat:natcom:v:7:y:2016:i:1:d:10.1038_ncomms12593
    DOI: 10.1038/ncomms12593
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