Repression of RNA polymerase by the archaeo-viral regulator ORF145/RIP

How archaeal viruses perturb host transcription machinery is poorly understood. Here, the authors provide evidence that the archaeo-viral transcription factor ORF145/RIP targets host RNA polymerase, repressing its activity.

Bibliographic Details
Main Authors: Carol Sheppard, Fabian Blombach, Adam Belsom, Sarah Schulz, Tina Daviter, Katherine Smollett, Emilie Mahieu, Susanne Erdmann, Philip Tinnefeld, Roger Garrett, Dina Grohmann, Juri Rappsilber, Finn Werner
Format: Article
Language:English
Published: Nature Portfolio 2016-11-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms13595
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author Carol Sheppard
Fabian Blombach
Adam Belsom
Sarah Schulz
Tina Daviter
Katherine Smollett
Emilie Mahieu
Susanne Erdmann
Philip Tinnefeld
Roger Garrett
Dina Grohmann
Juri Rappsilber
Finn Werner
author_facet Carol Sheppard
Fabian Blombach
Adam Belsom
Sarah Schulz
Tina Daviter
Katherine Smollett
Emilie Mahieu
Susanne Erdmann
Philip Tinnefeld
Roger Garrett
Dina Grohmann
Juri Rappsilber
Finn Werner
author_sort Carol Sheppard
collection DOAJ
description How archaeal viruses perturb host transcription machinery is poorly understood. Here, the authors provide evidence that the archaeo-viral transcription factor ORF145/RIP targets host RNA polymerase, repressing its activity.
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spelling doaj.art-fe48d2500b7346f9935066ca430c0d802022-12-21T20:39:05ZengNature PortfolioNature Communications2041-17232016-11-017111310.1038/ncomms13595Repression of RNA polymerase by the archaeo-viral regulator ORF145/RIPCarol Sheppard0Fabian Blombach1Adam Belsom2Sarah Schulz3Tina Daviter4Katherine Smollett5Emilie Mahieu6Susanne Erdmann7Philip Tinnefeld8Roger Garrett9Dina Grohmann10Juri Rappsilber11Finn Werner12Division of Biosciences, Institute of Structural and Molecular Biology, University College LondonDivision of Biosciences, Institute of Structural and Molecular Biology, University College LondonWellcome Trust Centre for Cell Biology, University of EdinburghPhysikalische und Theoretische Chemie—NanoBioSciences, Technische Universität BraunschweigDivision of Biosciences, Institute of Structural and Molecular Biology, University College LondonDivision of Biosciences, Institute of Structural and Molecular Biology, University College LondonDivision of Biosciences, Institute of Structural and Molecular Biology, University College LondonDepartment of Biology, University of CopenhagenPhysikalische und Theoretische Chemie—NanoBioSciences, Technische Universität BraunschweigDepartment of Biology, University of CopenhagenPhysikalische und Theoretische Chemie—NanoBioSciences, Technische Universität BraunschweigWellcome Trust Centre for Cell Biology, University of EdinburghDivision of Biosciences, Institute of Structural and Molecular Biology, University College LondonHow archaeal viruses perturb host transcription machinery is poorly understood. Here, the authors provide evidence that the archaeo-viral transcription factor ORF145/RIP targets host RNA polymerase, repressing its activity.https://doi.org/10.1038/ncomms13595
spellingShingle Carol Sheppard
Fabian Blombach
Adam Belsom
Sarah Schulz
Tina Daviter
Katherine Smollett
Emilie Mahieu
Susanne Erdmann
Philip Tinnefeld
Roger Garrett
Dina Grohmann
Juri Rappsilber
Finn Werner
Repression of RNA polymerase by the archaeo-viral regulator ORF145/RIP
Nature Communications
title Repression of RNA polymerase by the archaeo-viral regulator ORF145/RIP
title_full Repression of RNA polymerase by the archaeo-viral regulator ORF145/RIP
title_fullStr Repression of RNA polymerase by the archaeo-viral regulator ORF145/RIP
title_full_unstemmed Repression of RNA polymerase by the archaeo-viral regulator ORF145/RIP
title_short Repression of RNA polymerase by the archaeo-viral regulator ORF145/RIP
title_sort repression of rna polymerase by the archaeo viral regulator orf145 rip
url https://doi.org/10.1038/ncomms13595
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