Title of article
Three-Dimensional Architecture of Membrane-Embedded MscS in the Closed Conformation
Author/Authors
Valeria V?squez، نويسنده , , Marcos Sotomayor، نويسنده , , D. Marien Cortes، نويسنده , , Benoît Roux، نويسنده , , Klaus Schulten، نويسنده , , Eduardo Perozo، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
16
From page
55
To page
70
Abstract
The mechanosensitive channel of small conductance (MscS) is part of a coordinated response to osmotic challenges in Escherichia coli. MscS opens as a result of membrane tension changes, thereby releasing small solutes and effectively acting as an osmotic safety valve. Both the functional state depicted by its crystal structure and its gating mechanism remain unclear. Here, we combine site-directed spin labeling, electron paramagnetic resonance spectroscopy, and molecular dynamics simulations with novel energy restraints based on experimental electron paramagnetic resonance data to investigate the native transmembrane (TM) and periplasmic molecular architecture of closed MscS in a lipid bilayer. In the closed conformation, MscS shows a more compact TM domain than in the crystal structure, characterized by a realignment of the TM segments towards the normal of the membrane. The previously unresolved NH2-terminus forms a short helical hairpin capping the extracellular ends of TM1 and TM2 and is in close interaction with the bilayer interface. The present three-dimensional model of membrane-embedded MscS in the closed state represents a key step in determining the molecular mechanism of MscS gating.
Keywords
mechanotransduction , ion channels , Molecular dynamics , spin-labeling , electron paramagnetic resonance
Journal title
Journal of Molecular Biology
Serial Year
2008
Journal title
Journal of Molecular Biology
Record number
1256495
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