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
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
Journal title :
Journal of Molecular Biology