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Minimal nanodisc without exogenous lipids for stabilizing membrane proteins in detergent-free buffer
Authors:Dimitri Salvador  Marie Glavier  Guy Schoehn  Gilles Phan  Jean-Christophe Taveau  Marion Decossas  Sophie Lecomte  Sébastien Mongrand  Cyril Garnier  Isabelle Broutin  Laetitia Daury  Olivier Lambert
Institution:1. Univ. Bordeaux, CBMN UMR 5248, Bordeaux INP, F-33600 Pessac, France;2. CNRS, CBMN UMR5248, F-33600 Pessac, France;3. Université Grenoble Alpes, CNRS, CEA, Institute for Structural Biology (IBS), 38000, Grenoble, France;4. Laboratoire de Cristallographie et RMN Biologiques, UMR 8015, CNRS, Université Paris Descartes, Faculté de Pharmacie, 4 Avenue de l''Observatoire, 75006 Paris, France;5. Laboratoire de Biogènese Membranaire, UMR 5200, CNRS, Université de Bordeaux, 71 Avenue Edouard Bourlaux, 33883 Villenave d''Ornon Cedex, France
Abstract:Membrane protein stabilization after detergent solubilization presents drawbacks for structural and biophysical studies, in particular that of a reduced stability in detergent micelles. Therefore, alternative methods are required for efficient stabilization. Lipid nanodisc made with the membrane scaffold protein MSP is a valuable system but requires a fine optimization of the lipid to protein ratio. We present here the use of the scaffold protein MSP without added lipids as a minimal system to stabilize membrane proteins. We show that this method is applicable to α-helical and β-strands transmembrane proteins. This method allowed cryo-electron microscopy structural study of the bacterial transporter MexB. A protein quantification indicates that MexB is stabilized by two MSP proteins. This simplified and efficient method proposes a new advance in harnessing the MSP potential to stabilize membrane proteins.
Keywords:Corresponding author at: CBMN  UMR CNRS 5248  Université Bordeaux  Institut National Polytechnique Bordeaux  Allée Geoffroy Saint-Hilaire  33600 Pessac  France    Membrane protein  Nanodisc  Lipids  CryoEM
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