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Probing the Structure of the Mechanosensitive Channel of Small Conductance in Lipid Bilayers with Pulsed Electron-Electron Double Resonance
Authors:Richard Ward  Christos Pliotas  Emma Branigan  Christian Hacker  Akiko Rasmussen  Gregor Hagelueken  Ian R Booth  Samantha Miller  John Lucocq  James H Naismith  Olav Schiemann
Institution: Centre for Biomolecular Sciences, University of St. Andrews, St. Andrews, Scotland; School of Medicine, University of St. Andrews, St. Andrews, Scotland;§ Institute of Medical Sciences, University of Aberdeen, Aberdeen, Scotland; Institute of Physical and Theoretical Chemistry, University of Bonn, Bonn, Germany
Abstract:Mechanosensitive channel proteins are important safety valves against osmotic shock in bacteria, and are involved in sensing touch and sound waves in higher organisms. The mechanosensitive channel of small conductance (MscS) has been extensively studied. Pulsed electron-electron double resonance (PELDOR or DEER) of detergent-solubilized protein confirms that as seen in the crystal structure, the outer ring of transmembrane helices do not pack against the pore-forming helices, creating an apparent void. The relevance of this void to the functional form of MscS in the bilayer is the subject of debate. Here, we report PELDOR measurements of MscS reconstituted into two lipid bilayer systems: nanodiscs and bicelles. The distance measurements from multiple mutants derived from the PELDOR data are consistent with the detergent-solution arrangement of the protein. We conclude, therefore, that the relative positioning of the transmembrane helices is preserved in mimics of the cell bilayer, and that the apparent voids are not an artifact of detergent solution but a property of the protein that will have to be accounted for in any molecular mechanism of gating.
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