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Structural Basis of Tau Interaction With BIN1 and Regulation by Tau Phosphorylation

Bridging integrator-1 (BIN1) gene is associated with an increased risk to develop Alzheimer’s disease, a tauopathy characterized by intra-neuronal accumulation of phosphorylated Tau protein as paired helical filaments. Direct interaction of BIN1 and Tau proteins was demonstrated to be mediated throu...

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Autores principales: Lasorsa, Alessia, Malki, Idir, Cantrelle, François-Xavier, Merzougui, Hamida, Boll, Emmanuelle, Lambert, Jean-Charles, Landrieu, Isabelle
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6246682/
https://www.ncbi.nlm.nih.gov/pubmed/30487734
http://dx.doi.org/10.3389/fnmol.2018.00421
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author Lasorsa, Alessia
Malki, Idir
Cantrelle, François-Xavier
Merzougui, Hamida
Boll, Emmanuelle
Lambert, Jean-Charles
Landrieu, Isabelle
author_facet Lasorsa, Alessia
Malki, Idir
Cantrelle, François-Xavier
Merzougui, Hamida
Boll, Emmanuelle
Lambert, Jean-Charles
Landrieu, Isabelle
author_sort Lasorsa, Alessia
collection PubMed
description Bridging integrator-1 (BIN1) gene is associated with an increased risk to develop Alzheimer’s disease, a tauopathy characterized by intra-neuronal accumulation of phosphorylated Tau protein as paired helical filaments. Direct interaction of BIN1 and Tau proteins was demonstrated to be mediated through BIN1 SH3 C-terminal domain and Tau (210–240) peptide within Tau proline-rich domain. We previously showed that BIN1 SH3 interaction with Tau is decreased by phosphorylation within Tau proline-rich domain, of at least T231. In addition, the BIN1/Tau interaction is characterized by a dynamic equilibrium between a closed and open conformations of BIN1 isoform 1, involving an intramolecular interaction with its C-terminal BIN1 SH3 domain. However, the role of the BIN1/Tau interaction, and its potential dysregulation in Alzheimer’s disease, is not yet fully understood. Here we showed that within Tau (210–240) peptide, among the two proline-rich motifs potentially recognized by SH3 domains, only motif P(216)TPPTR(221) is bound by BIN1 SH3. A structural model of the complex between BIN1 SH3 and Tau peptide (213–229), based on nuclear magnetic resonance spectroscopy data, revealed the molecular detail of the interaction. P216 and P219 within the proline-rich motif were in direct contact with the aromatic F588 and W562 of the BIN1 SH3 domain. The contact surface is extended through electrostatic interactions between the positively charged R221 and K224 residues of Tau peptide and those negatively charged of BIN1 SH3, corresponding to E556 and E557. We next investigated the impact of multiple Tau phosphorylations within Tau (210–240) on its interaction with BIN1 isoform 1. Tau (210–240) phosphorylated at four different sites (T212, T217, T231, and S235), contrary to unphosphorylated Tau, was unable to compete with the intramolecular interaction of BIN1 SH3 domain with its CLAP domain. In accordance, the affinity of BIN1 SH3 for phosphorylated Tau (210–240) peptide was reduced, with a five-fold increase in the dissociation constant, from a Kd of 44 to 256 μM. This study highlights the complexity of the regulation of BIN1 isoform 1 with Tau. As abnormal phosphorylation of Tau is linked to the pathology development, this regulation by phosphorylation might have important functional consequences.
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spelling pubmed-62466822018-11-28 Structural Basis of Tau Interaction With BIN1 and Regulation by Tau Phosphorylation Lasorsa, Alessia Malki, Idir Cantrelle, François-Xavier Merzougui, Hamida Boll, Emmanuelle Lambert, Jean-Charles Landrieu, Isabelle Front Mol Neurosci Neuroscience Bridging integrator-1 (BIN1) gene is associated with an increased risk to develop Alzheimer’s disease, a tauopathy characterized by intra-neuronal accumulation of phosphorylated Tau protein as paired helical filaments. Direct interaction of BIN1 and Tau proteins was demonstrated to be mediated through BIN1 SH3 C-terminal domain and Tau (210–240) peptide within Tau proline-rich domain. We previously showed that BIN1 SH3 interaction with Tau is decreased by phosphorylation within Tau proline-rich domain, of at least T231. In addition, the BIN1/Tau interaction is characterized by a dynamic equilibrium between a closed and open conformations of BIN1 isoform 1, involving an intramolecular interaction with its C-terminal BIN1 SH3 domain. However, the role of the BIN1/Tau interaction, and its potential dysregulation in Alzheimer’s disease, is not yet fully understood. Here we showed that within Tau (210–240) peptide, among the two proline-rich motifs potentially recognized by SH3 domains, only motif P(216)TPPTR(221) is bound by BIN1 SH3. A structural model of the complex between BIN1 SH3 and Tau peptide (213–229), based on nuclear magnetic resonance spectroscopy data, revealed the molecular detail of the interaction. P216 and P219 within the proline-rich motif were in direct contact with the aromatic F588 and W562 of the BIN1 SH3 domain. The contact surface is extended through electrostatic interactions between the positively charged R221 and K224 residues of Tau peptide and those negatively charged of BIN1 SH3, corresponding to E556 and E557. We next investigated the impact of multiple Tau phosphorylations within Tau (210–240) on its interaction with BIN1 isoform 1. Tau (210–240) phosphorylated at four different sites (T212, T217, T231, and S235), contrary to unphosphorylated Tau, was unable to compete with the intramolecular interaction of BIN1 SH3 domain with its CLAP domain. In accordance, the affinity of BIN1 SH3 for phosphorylated Tau (210–240) peptide was reduced, with a five-fold increase in the dissociation constant, from a Kd of 44 to 256 μM. This study highlights the complexity of the regulation of BIN1 isoform 1 with Tau. As abnormal phosphorylation of Tau is linked to the pathology development, this regulation by phosphorylation might have important functional consequences. Frontiers Media S.A. 2018-11-14 /pmc/articles/PMC6246682/ /pubmed/30487734 http://dx.doi.org/10.3389/fnmol.2018.00421 Text en Copyright © 2018 Lasorsa, Malki, Cantrelle, Merzougui, Boll, Lambert and Landrieu. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Lasorsa, Alessia
Malki, Idir
Cantrelle, François-Xavier
Merzougui, Hamida
Boll, Emmanuelle
Lambert, Jean-Charles
Landrieu, Isabelle
Structural Basis of Tau Interaction With BIN1 and Regulation by Tau Phosphorylation
title Structural Basis of Tau Interaction With BIN1 and Regulation by Tau Phosphorylation
title_full Structural Basis of Tau Interaction With BIN1 and Regulation by Tau Phosphorylation
title_fullStr Structural Basis of Tau Interaction With BIN1 and Regulation by Tau Phosphorylation
title_full_unstemmed Structural Basis of Tau Interaction With BIN1 and Regulation by Tau Phosphorylation
title_short Structural Basis of Tau Interaction With BIN1 and Regulation by Tau Phosphorylation
title_sort structural basis of tau interaction with bin1 and regulation by tau phosphorylation
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6246682/
https://www.ncbi.nlm.nih.gov/pubmed/30487734
http://dx.doi.org/10.3389/fnmol.2018.00421
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