Metal-responsive promoter DNA compaction by the ferric uptake regulator

The Fur protein regulates transcription of bacterial genes in response to metal ions. Here, the authors show that the Fur protein from Helicobacter pylorirepresses transcription by iron-responsive oligomerization and DNA compaction, encasing the transcriptional start site in a macromolecular complex...

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Main Authors: Davide Roncarati, Simone Pelliciari, Nicola Doniselli, Stefano Maggi, Andrea Vannini, Luca Valzania, Luca Mazzei, Barbara Zambelli, Claudio Rivetti, Alberto Danielli
Format: Article
Language:English
Published: Nature Publishing Group 2016-08-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms12593
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spelling doaj-df1a4b051ef64998b7f2d859a4491d542021-05-11T10:43:04ZengNature Publishing GroupNature Communications2041-17232016-08-017111310.1038/ncomms12593Metal-responsive promoter DNA compaction by the ferric uptake regulatorDavide Roncarati0Simone Pelliciari1Nicola Doniselli2Stefano Maggi3Andrea Vannini4Luca Valzania5Luca Mazzei6Barbara Zambelli7Claudio Rivetti8Alberto Danielli9Department of Pharmacy and Biotechnology (FaBiT), University of BolognaDepartment of Pharmacy and Biotechnology (FaBiT), University of BolognaDepartment of Life Sciences, University of ParmaDepartment of Life Sciences, University of ParmaDepartment of Pharmacy and Biotechnology (FaBiT), University of BolognaDepartment of Pharmacy and Biotechnology (FaBiT), University of BolognaDepartment of Pharmacy and Biotechnology (FaBiT), University of BolognaDepartment of Pharmacy and Biotechnology (FaBiT), University of BolognaDepartment of Life Sciences, University of ParmaDepartment of Pharmacy and Biotechnology (FaBiT), University of BolognaThe Fur protein regulates transcription of bacterial genes in response to metal ions. Here, the authors show that the Fur protein from Helicobacter pylorirepresses transcription by iron-responsive oligomerization and DNA compaction, encasing the transcriptional start site in a macromolecular complex.https://doi.org/10.1038/ncomms12593
collection DOAJ
language English
format Article
sources DOAJ
author Davide Roncarati
Simone Pelliciari
Nicola Doniselli
Stefano Maggi
Andrea Vannini
Luca Valzania
Luca Mazzei
Barbara Zambelli
Claudio Rivetti
Alberto Danielli
spellingShingle Davide Roncarati
Simone Pelliciari
Nicola Doniselli
Stefano Maggi
Andrea Vannini
Luca Valzania
Luca Mazzei
Barbara Zambelli
Claudio Rivetti
Alberto Danielli
Metal-responsive promoter DNA compaction by the ferric uptake regulator
Nature Communications
author_facet Davide Roncarati
Simone Pelliciari
Nicola Doniselli
Stefano Maggi
Andrea Vannini
Luca Valzania
Luca Mazzei
Barbara Zambelli
Claudio Rivetti
Alberto Danielli
author_sort Davide Roncarati
title Metal-responsive promoter DNA compaction by the ferric uptake regulator
title_short Metal-responsive promoter DNA compaction by the ferric uptake regulator
title_full Metal-responsive promoter DNA compaction by the ferric uptake regulator
title_fullStr Metal-responsive promoter DNA compaction by the ferric uptake regulator
title_full_unstemmed Metal-responsive promoter DNA compaction by the ferric uptake regulator
title_sort metal-responsive promoter dna compaction by the ferric uptake regulator
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2016-08-01
description The Fur protein regulates transcription of bacterial genes in response to metal ions. Here, the authors show that the Fur protein from Helicobacter pylorirepresses transcription by iron-responsive oligomerization and DNA compaction, encasing the transcriptional start site in a macromolecular complex.
url https://doi.org/10.1038/ncomms12593
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