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The Structural Basis for Low Conductance in the Membrane Protein VDAC upon β-NADH Binding and Voltage Gating

Structure.. 2019; 
Böhm R1, Amodeo GF2, Murlidaran S3, Chavali S4, Wagner G5, Winterhalter M2, Brannigan G6, Hiller S7.
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Recombinant Proteins Purified inclusion bodies are dissolved in denaturing buffer (8 M urea, 50 mM Tris-HCl, pH 7.5, 100 mM NaCl, 20 mM imidazole), loaded onto Ni-agarose resin (GenScript) and eluted at 250 mM imidazole in denaturing buffer. T Get A Quote

摘要

The voltage-dependent anion channel (VDAC) forms the primary diffusion pore of the outer mitochondrial membrane. In its apo form, VDAC adopts an open conformation with high conductance. States of lower conductance can be induced by ligand binding or the application of voltage. Here, we clarify at the atomic level how β-NADH binding leads to a low-conductance state and characterize the role of the VDAC N-terminal helix in voltage gating. A high-resolution NMR structure of human VDAC-1 with bound NADH, combined with molecular dynamics simulation show that β-NADH binding reduces the pore conductance sterically without triggering a structural change. Electrophysiology recordings of crosslinked protein variants an... More

关键词

NADH; NMR spectroscopy; VDAC gating; crosslinking; electrophysiology; membrane protein; molecular dynamics; protein dynamics
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