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Large scale investigation of GPCR molecular dynamics data uncovers allosteric sites and lateral gateways

  • David Aranda-García (Erstautor/-in)
  • , Tomasz Maciej Stepniewski (Co-Autor/-in)
  • , Mariona Torrens-Fontanals (Co-Autor/-in)
  • , Adrian García-Recio (Co-Autor/-in)
  • , Marta Lopez-Balastegui (Co-Autor/-in)
  • , Brian Medel-Lacruz (Co-Autor/-in)
  • , Adrián Morales-Pastor (Co-Autor/-in)
  • , Alejandro Peralta-García (Co-Autor/-in)
  • , Miguel Dieguez-Eceolaza (Co-Autor/-in)
  • , David Sotillo-Nuñez (Co-Autor/-in)
  • , Tianyi Ding (Co-Autor/-in)
  • , Matthäus Drabek (Co-Autor/-in)
  • , Célien Jacquemard (Co-Autor/-in)
  • , Jakub Jakowiecki (Co-Autor/-in)
  • , Willem Jespers (Co-Autor/-in)
  • , Mireia Jiménez-Rosés (Co-Autor/-in)
  • , Víctor Jun-Yu-Lim (Co-Autor/-in)
  • , Alessandro Nicoli (Co-Autor/-in)
  • , Urszula Orzel (Co-Autor/-in)
  • , Aida Shahraki (Co-Autor/-in)
  • Johanna K.S. Tiemann (Co-Autor/-in), Vicente Ledesma-Martin (Co-Autor/-in), Francho Nerín-Fonz (Co-Autor/-in), Sergio Suárez-Dou (Co-Autor/-in), Oriol Canal (Co-Autor/-in), Gáspár Pándy-Szekeres (Co-Autor/-in), Jiafei Mao (Co-Autor/-in), David E. Gloriam, Esther Kellenberger (Co-Autor/-in), Dorota Latek (Co-Autor/-in), Ramon Guixà-González (Co-Autor/-in), Hugo Gutiérrez-de-Terán (Co-Autor/-in), Irina G. Tikhonova (Co-Autor/-in), Peter W. Hildebrand (Co-Autor/-in), Marta Filizola (Co-Autor/-in), M. Madan Babu (Co-Autor/-in), Antonella Di Pizio (Co-Autor/-in), Slawomir Filipek (Co-Autor/-in), Peter Kolb (Co-Autor/-in), Arnau Cordomi (Co-Autor/-in), Toni Giorgino (Co-Autor/-in), Maria Marti-Solano (Co-Autor/-in), Jana Selent* (Letztautor/-in)
*Korrespondierende/r Autor/-in für diese Arbeit
  • Universität Pompeu Fabra
  • Hospital del Mar
  • InterAx Biotech AG
  • Acellera Labs
  • Queen's University Belfast
  • Philipps-Universität Marburg
  • Universität Straßburg
  • Universität Warschau
  • Leiden Academic Centre for Drug Research
  • Centre of Membrane Proteins and Receptors
  • Sygnature Discovery
  • Universitätsklinikum Leipzig
  • Universität Kopenhagen
  • HUN-REN Research Center for Natural Sciences
  • Institute of Chemistry Chinese Academy of Sciences
  • Institute for Advanced Chemistry of Catalonia
  • Uppsala University
  • Research Center in Nanomaterials and Nanotechnology
  • Instituto de Investigación Sanitaria del Principado de Asturias
  • Universität Leipzig
  • Icahn School of Medicine at Mount Sinai
  • St. Jude Children’s Research Hospital
  • Professur für Chemoinformatics and Protein Modelling
  • Autonome Universität Barcelona
  • Universität Mailand
  • Consiglio Nazionale delle Ricerche
  • Universität Cambridge

Publikation: Beitrag in FachzeitschriftArtikelBegutachtung

47 Zitate (Scopus)

Abstract

G protein-coupled receptors (GPCRs) constitute a functionally diverse protein family and are targets for a broad spectrum of pharmaceuticals. Technological progress in X-ray crystallography and cryogenic electron microscopy has enabled extensive, high-resolution structural characterisation of GPCRs in different conformational states. However, as highly dynamic events underlie GPCR signalling, a complete understanding of GPCR functionality requires insights into their conformational dynamics. Here, we present a large dataset of molecular dynamics simulations covering 60% of currently available GPCR structures. Our analysis reveals extensive local “breathing” motions of the receptor on a nano- to microsecond timescale and provides access to numerous previously unexplored receptor conformational states. Furthermore, we reveal that receptor flexibility impacts the shape of allosteric drug binding sites, which frequently adopt partially or completely closed states in the absence of a molecular modulator. We demonstrate that exploring membrane lipid dynamics and their interaction with GPCRs is an efficient approach to expose such hidden allosteric sites and even lateral ligand entrance gateways. The obtained insights and generated dataset on conformations, allosteric sites and lateral entrance gates in GPCRs allows us to better understand the functionality of these receptors and opens new therapeutic avenues for drug-targeting strategies.

OriginalspracheEnglisch
Aufsatznummer2020
FachzeitschriftNature Communications
Jahrgang16
Ausgabenummer1
DOIs
PublikationsstatusVeröffentlicht - 27 Feb. 2025

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