Title of article
Salt-bridge Dynamics Control Substrate-induced Conformational Change in the Membrane Transporter GlpT
Author/Authors
Christopher J. Law، نويسنده , , Jonas Almqvist، نويسنده , , Adam Bernstein، نويسنده , , Regina M. Goetz، نويسنده , , Yafei Huang، نويسنده , , Céline Soudant، نويسنده , , Aatto Laaksonen، نويسنده , , Sven Hovm?ller، نويسنده , , Da-Neng Wang، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
12
From page
828
To page
839
Abstract
Active transport of substrates across cytoplasmic membranes is of great physiological, medical and pharmaceutical importance. The glycerol-3-phosphate (G3P) transporter (GlpT) of the E. coli inner membrane is a secondary active antiporter from the ubiquitous major facilitator superfamily that couples the import of G3P to the efflux of inorganic phosphate (Pi) down its concentration gradient. Integrating information from a novel combination of structural, molecular dynamics simulations and biochemical studies, we identify the residues involved directly in binding of substrate to the inward-facing conformation of GlpT, thus defining the structural basis for the substrate-specificity of this transporter. The substrate binding mechanism involves protonation of a histidine residue at the binding site. Furthermore, our data suggest that the formation and breaking of inter- and intradomain salt bridges control the conformational change of the transporter that accompanies substrate translocation across the membrane. The mechanism we propose may be a paradigm for organophosphate:phosphate antiporters.
Keywords
secondary active transport , antiporter , membrane transport , major facilitator superfamily , Molecular dynamics simulations
Journal title
Journal of Molecular Biology
Serial Year
2008
Journal title
Journal of Molecular Biology
Record number
1256582
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