Cargando…

Weak Long-Range Correlated Motions in a Surface Patch of Ubiquitin Involved in Molecular Recognition

[Image: see text] Long-range correlated motions in proteins are candidate mechanisms for processes that require information transfer across protein structures, such as allostery and signal transduction. However, the observation of backbone correlations between distant residues has remained elusive,...

Descripción completa

Detalles Bibliográficos
Autores principales: Fenwick, R. Bryn, Esteban-Martín, Santi, Richter, Barbara, Lee, Donghan, Walter, Korvin F. A., Milovanovic, Dragomir, Becker, Stefan, Lakomek, Nils A., Griesinger, Christian, Salvatella, Xavier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2011
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3686050/
https://www.ncbi.nlm.nih.gov/pubmed/21634390
http://dx.doi.org/10.1021/ja200461n
_version_ 1782273747226460160
author Fenwick, R. Bryn
Esteban-Martín, Santi
Richter, Barbara
Lee, Donghan
Walter, Korvin F. A.
Milovanovic, Dragomir
Becker, Stefan
Lakomek, Nils A.
Griesinger, Christian
Salvatella, Xavier
author_facet Fenwick, R. Bryn
Esteban-Martín, Santi
Richter, Barbara
Lee, Donghan
Walter, Korvin F. A.
Milovanovic, Dragomir
Becker, Stefan
Lakomek, Nils A.
Griesinger, Christian
Salvatella, Xavier
author_sort Fenwick, R. Bryn
collection PubMed
description [Image: see text] Long-range correlated motions in proteins are candidate mechanisms for processes that require information transfer across protein structures, such as allostery and signal transduction. However, the observation of backbone correlations between distant residues has remained elusive, and only local correlations have been revealed using residual dipolar couplings measured by NMR spectroscopy. In this work, we experimentally identified and characterized collective motions spanning four β-strands separated by up to 15 Å in ubiquitin. The observed correlations link molecular recognition sites and result from concerted conformational changes that are in part mediated by the hydrogen-bonding network.
format Online
Article
Text
id pubmed-3686050
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-36860502013-06-19 Weak Long-Range Correlated Motions in a Surface Patch of Ubiquitin Involved in Molecular Recognition Fenwick, R. Bryn Esteban-Martín, Santi Richter, Barbara Lee, Donghan Walter, Korvin F. A. Milovanovic, Dragomir Becker, Stefan Lakomek, Nils A. Griesinger, Christian Salvatella, Xavier J Am Chem Soc [Image: see text] Long-range correlated motions in proteins are candidate mechanisms for processes that require information transfer across protein structures, such as allostery and signal transduction. However, the observation of backbone correlations between distant residues has remained elusive, and only local correlations have been revealed using residual dipolar couplings measured by NMR spectroscopy. In this work, we experimentally identified and characterized collective motions spanning four β-strands separated by up to 15 Å in ubiquitin. The observed correlations link molecular recognition sites and result from concerted conformational changes that are in part mediated by the hydrogen-bonding network. American Chemical Society 2011-06-02 2011-07-13 /pmc/articles/PMC3686050/ /pubmed/21634390 http://dx.doi.org/10.1021/ja200461n Text en Copyright © 2011 American Chemical Society
spellingShingle Fenwick, R. Bryn
Esteban-Martín, Santi
Richter, Barbara
Lee, Donghan
Walter, Korvin F. A.
Milovanovic, Dragomir
Becker, Stefan
Lakomek, Nils A.
Griesinger, Christian
Salvatella, Xavier
Weak Long-Range Correlated Motions in a Surface Patch of Ubiquitin Involved in Molecular Recognition
title Weak Long-Range Correlated Motions in a Surface Patch of Ubiquitin Involved in Molecular Recognition
title_full Weak Long-Range Correlated Motions in a Surface Patch of Ubiquitin Involved in Molecular Recognition
title_fullStr Weak Long-Range Correlated Motions in a Surface Patch of Ubiquitin Involved in Molecular Recognition
title_full_unstemmed Weak Long-Range Correlated Motions in a Surface Patch of Ubiquitin Involved in Molecular Recognition
title_short Weak Long-Range Correlated Motions in a Surface Patch of Ubiquitin Involved in Molecular Recognition
title_sort weak long-range correlated motions in a surface patch of ubiquitin involved in molecular recognition
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3686050/
https://www.ncbi.nlm.nih.gov/pubmed/21634390
http://dx.doi.org/10.1021/ja200461n
work_keys_str_mv AT fenwickrbryn weaklongrangecorrelatedmotionsinasurfacepatchofubiquitininvolvedinmolecularrecognition
AT estebanmartinsanti weaklongrangecorrelatedmotionsinasurfacepatchofubiquitininvolvedinmolecularrecognition
AT richterbarbara weaklongrangecorrelatedmotionsinasurfacepatchofubiquitininvolvedinmolecularrecognition
AT leedonghan weaklongrangecorrelatedmotionsinasurfacepatchofubiquitininvolvedinmolecularrecognition
AT walterkorvinfa weaklongrangecorrelatedmotionsinasurfacepatchofubiquitininvolvedinmolecularrecognition
AT milovanovicdragomir weaklongrangecorrelatedmotionsinasurfacepatchofubiquitininvolvedinmolecularrecognition
AT beckerstefan weaklongrangecorrelatedmotionsinasurfacepatchofubiquitininvolvedinmolecularrecognition
AT lakomeknilsa weaklongrangecorrelatedmotionsinasurfacepatchofubiquitininvolvedinmolecularrecognition
AT griesingerchristian weaklongrangecorrelatedmotionsinasurfacepatchofubiquitininvolvedinmolecularrecognition
AT salvatellaxavier weaklongrangecorrelatedmotionsinasurfacepatchofubiquitininvolvedinmolecularrecognition