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Architecture of the RNA polymerase II–TFIIF complex revealed by cross-linking and mass spectrometry

Higher-order multi-protein complexes such as RNA polymerase II (Pol II) complexes with transcription initiation factors are often not amenable to X-ray structure determination. Here, we show that protein cross-linking coupled to mass spectrometry (MS) has now sufficiently advanced as a tool to exten...

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Autores principales: Chen, Zhuo Angel, Jawhari, Anass, Fischer, Lutz, Buchen, Claudia, Tahir, Salman, Kamenski, Tomislav, Rasmussen, Morten, Lariviere, Laurent, Bukowski-Wills, Jimi-Carlo, Nilges, Michael, Cramer, Patrick, Rappsilber, Juri
Formato: Texto
Lenguaje:English
Publicado: Nature Publishing Group 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2810376/
https://www.ncbi.nlm.nih.gov/pubmed/20094031
http://dx.doi.org/10.1038/emboj.2009.401
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author Chen, Zhuo Angel
Jawhari, Anass
Fischer, Lutz
Buchen, Claudia
Tahir, Salman
Kamenski, Tomislav
Rasmussen, Morten
Lariviere, Laurent
Bukowski-Wills, Jimi-Carlo
Nilges, Michael
Cramer, Patrick
Rappsilber, Juri
author_facet Chen, Zhuo Angel
Jawhari, Anass
Fischer, Lutz
Buchen, Claudia
Tahir, Salman
Kamenski, Tomislav
Rasmussen, Morten
Lariviere, Laurent
Bukowski-Wills, Jimi-Carlo
Nilges, Michael
Cramer, Patrick
Rappsilber, Juri
author_sort Chen, Zhuo Angel
collection PubMed
description Higher-order multi-protein complexes such as RNA polymerase II (Pol II) complexes with transcription initiation factors are often not amenable to X-ray structure determination. Here, we show that protein cross-linking coupled to mass spectrometry (MS) has now sufficiently advanced as a tool to extend the Pol II structure to a 15-subunit, 670 kDa complex of Pol II with the initiation factor TFIIF at peptide resolution. The N-terminal regions of TFIIF subunits Tfg1 and Tfg2 form a dimerization domain that binds the Pol II lobe on the Rpb2 side of the active centre cleft near downstream DNA. The C-terminal winged helix (WH) domains of Tfg1 and Tfg2 are mobile, but the Tfg2 WH domain can reside at the Pol II protrusion near the predicted path of upstream DNA in the initiation complex. The linkers between the dimerization domain and the WH domains in Tfg1 and Tfg2 are located to the jaws and protrusion, respectively. The results suggest how TFIIF suppresses non-specific DNA binding and how it helps to recruit promoter DNA and to set the transcription start site. This work establishes cross-linking/MS as an integrated structure analysis tool for large multi-protein complexes.
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spelling pubmed-28103762010-01-27 Architecture of the RNA polymerase II–TFIIF complex revealed by cross-linking and mass spectrometry Chen, Zhuo Angel Jawhari, Anass Fischer, Lutz Buchen, Claudia Tahir, Salman Kamenski, Tomislav Rasmussen, Morten Lariviere, Laurent Bukowski-Wills, Jimi-Carlo Nilges, Michael Cramer, Patrick Rappsilber, Juri EMBO J Article Higher-order multi-protein complexes such as RNA polymerase II (Pol II) complexes with transcription initiation factors are often not amenable to X-ray structure determination. Here, we show that protein cross-linking coupled to mass spectrometry (MS) has now sufficiently advanced as a tool to extend the Pol II structure to a 15-subunit, 670 kDa complex of Pol II with the initiation factor TFIIF at peptide resolution. The N-terminal regions of TFIIF subunits Tfg1 and Tfg2 form a dimerization domain that binds the Pol II lobe on the Rpb2 side of the active centre cleft near downstream DNA. The C-terminal winged helix (WH) domains of Tfg1 and Tfg2 are mobile, but the Tfg2 WH domain can reside at the Pol II protrusion near the predicted path of upstream DNA in the initiation complex. The linkers between the dimerization domain and the WH domains in Tfg1 and Tfg2 are located to the jaws and protrusion, respectively. The results suggest how TFIIF suppresses non-specific DNA binding and how it helps to recruit promoter DNA and to set the transcription start site. This work establishes cross-linking/MS as an integrated structure analysis tool for large multi-protein complexes. Nature Publishing Group 2010-02-17 2010-01-21 /pmc/articles/PMC2810376/ /pubmed/20094031 http://dx.doi.org/10.1038/emboj.2009.401 Text en Copyright © 2010, European Molecular Biology Organization http://creativecommons.org/licenses/by-nc-nd/3.0 This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits distribution, and reproduction in any medium, provided the original author and source are credited. This license does not permit commercial exploitation or the creation of derivative works without specific permission.
spellingShingle Article
Chen, Zhuo Angel
Jawhari, Anass
Fischer, Lutz
Buchen, Claudia
Tahir, Salman
Kamenski, Tomislav
Rasmussen, Morten
Lariviere, Laurent
Bukowski-Wills, Jimi-Carlo
Nilges, Michael
Cramer, Patrick
Rappsilber, Juri
Architecture of the RNA polymerase II–TFIIF complex revealed by cross-linking and mass spectrometry
title Architecture of the RNA polymerase II–TFIIF complex revealed by cross-linking and mass spectrometry
title_full Architecture of the RNA polymerase II–TFIIF complex revealed by cross-linking and mass spectrometry
title_fullStr Architecture of the RNA polymerase II–TFIIF complex revealed by cross-linking and mass spectrometry
title_full_unstemmed Architecture of the RNA polymerase II–TFIIF complex revealed by cross-linking and mass spectrometry
title_short Architecture of the RNA polymerase II–TFIIF complex revealed by cross-linking and mass spectrometry
title_sort architecture of the rna polymerase ii–tfiif complex revealed by cross-linking and mass spectrometry
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2810376/
https://www.ncbi.nlm.nih.gov/pubmed/20094031
http://dx.doi.org/10.1038/emboj.2009.401
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