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Binding Mechanisms of Intrinsically Disordered Proteins:Theory, Simulation, and Experiment

Authors :
Martin Blackledge
Luca Mollica
Robert Schneider
Luiza M. Bessa
Malene Ringkjøbing Jensen
Xavier Hanoulle
CNRS
Université de Lille
Istituto Italiano di Tecnologia [IIT]
Unité de Glycobiologie Structurale et Fonctionnelle UMR 8576 [UGSF]
Unité de Glycobiologie Structurale et Fonctionnelle (UGSF) - UMR 8576
Université Grenoble Alpes [2016-2019] [UGA [2016-2019]]
Institut de biologie structurale (IBS - UMR 5075)
Institut de Recherche Interdisciplinaire de Grenoble (IRIG)
Direction de Recherche Fondamentale (CEA) (DRF (CEA))
Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Direction de Recherche Fondamentale (CEA) (DRF (CEA))
Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Grenoble Alpes (UGA)-Centre National de la Recherche Scientifique (CNRS)
Unité de Glycobiologie Structurale et Fonctionnelle - UMR 8576 (UGSF)
Université de Lille-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Recherche Agronomique (INRA)
Institut de biologie structurale (IBS - UMR 5075 )
Centre National de la Recherche Scientifique (CNRS)-Université Grenoble Alpes [2016-2019] (UGA [2016-2019])-Institut de Recherche Interdisciplinaire de Grenoble (IRIG)
Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)
Unité de Glycobiologie Structurale et Fonctionnelle UMR 8576 (UGSF)
Université de Lille-Centre National de la Recherche Scientifique (CNRS)
Université Grenoble Alpes [2016-2019] (UGA [2016-2019])-Institut de Recherche Interdisciplinaire de Grenoble (IRIG)
Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Centre National de la Recherche Scientifique (CNRS)
Institut National de la Recherche Agronomique (INRA)-Université de Lille-Centre National de la Recherche Scientifique (CNRS)
Source :
Frontiers in Molecular Biosciences, Frontiers in Molecular Biosciences, Frontiers Media, 2016, 3 (14), pp.7110-7121. ⟨10.3389/fmolb.2016.00052⟩, Frontiers in Molecular Biosciences, 2016, 3 (14), pp.7110-7121. ⟨10.3389/fmolb.2016.00052⟩, Frontiers in Molecular Biosciences, Vol 3 (2016)
Publication Year :
2016

Abstract

In recent years, protein science has been revolutionized by the discovery of intrinsically disordered proteins (IDPs). In contrast to the classical paradigm that a given protein sequence corresponds to a defined structure and an associated function, we now know that proteins can be functional in the absence of a stable three-dimensional structure. In many cases, disordered proteins or protein regions become structured, at least locally, upon interacting with their physiological partners. Many, sometimes conflicting, hypotheses have been put forward regarding the interaction mechanisms of IDPs and the potential advantages of disorder for protein-protein interactions. Whether disorder may increase, as proposed, e.g., in the “fly-casting” hypothesis, or decrease binding rates, increase or decrease binding specificity, or what role pre-formed structure might play in interactions involving IDPs (conformational selection vs. induced fit), are subjects of intense debate. Experimentally, these questions remain difficult to address. Here, we review experimental studies of binding mechanisms of IDPs using NMR spectroscopy and transient kinetic techniques, as well as the underlying theoretical concepts and numerical methods that can be applied to describe these interactions at the atomic level. The available literature suggests that the kinetic and thermodynamic parameters characterizing interactions involving IDPs can vary widely and that there may be no single common mechanism that can explain the different binding modes observed experimentally. Rather, disordered proteins appear to make combined use of features such as pre-formed structure and flexibility, depending on the individual system and the functional context. 3

Details

Language :
English
ISSN :
2296889X
Database :
OpenAIRE
Journal :
Frontiers in Molecular Biosciences, Frontiers in Molecular Biosciences, Frontiers Media, 2016, 3 (14), pp.7110-7121. ⟨10.3389/fmolb.2016.00052⟩, Frontiers in Molecular Biosciences, 2016, 3 (14), pp.7110-7121. ⟨10.3389/fmolb.2016.00052⟩, Frontiers in Molecular Biosciences, Vol 3 (2016)
Accession number :
edsair.doi.dedup.....bc70fe782b9150a8c41c9cd292c3a374
Full Text :
https://doi.org/10.3389/fmolb.2016.00052⟩