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Reconstitution of a Kv Channel into Lipid Membranes for Structural and Functional Studies
Authors:Sungsoo Lee  Hui Zheng  Liang Shi  Qiu-Xing Jiang
Affiliation:Department of Cell Biology, University of Texas Southwestern Medical Center at Dallas
Abstract:To study the lipid-protein interaction in a reductionistic fashion, it is necessary to incorporate the membrane proteins into membranes of well-defined lipid composition. We are studying the lipid-dependent gating effects in a prototype voltage-gated potassium (Kv) channel, and have worked out detailed procedures to reconstitute the channels into different membrane systems. Our reconstitution procedures take consideration of both detergent-induced fusion of vesicles and the fusion of protein/detergent micelles with the lipid/detergent mixed micelles as well as the importance of reaching an equilibrium distribution of lipids among the protein/detergent/lipid and the detergent/lipid mixed micelles. Our data suggested that the insertion of the channels in the lipid vesicles is relatively random in orientations, and the reconstitution efficiency is so high that no detectable protein aggregates were seen in fractionation experiments. We have utilized the reconstituted channels to determine the conformational states of the channels in different lipids, record electrical activities of a small number of channels incorporated in planar lipid bilayers, screen for conformation-specific ligands from a phage-displayed peptide library, and support the growth of 2D crystals of the channels in membranes. The reconstitution procedures described here may be adapted for studying other membrane proteins in lipid bilayers, especially for the investigation of the lipid effects on the eukaryotic voltage-gated ion channels.
Keywords:Molecular Biology   Issue 77   Biochemistry   Genetics   Cellular Biology   Structural Biology   Biophysics   Membrane Lipids   Phospholipids   Carrier Proteins   Membrane Proteins   Micelles   Molecular Motor Proteins   life sciences   biochemistry   Amino Acids   Peptides   and Proteins   lipid-protein interaction   channel reconstitution   lipid-dependent gating   voltage-gated ion channel   conformation-specific ligands   lipids
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