Elsevier

Biochimie

Volume 127, August 2016, Pages 163-172
Biochimie

Research paper
Conservation of the oligomeric state of native VDAC1 in detergent micelles

https://doi.org/10.1016/j.biochi.2016.05.015Get rights and content
Under a Creative Commons license
open access

Highlights

  • Rapid one step purification of the endogenous native voltage-dependent anion-selective channel (VDAC) from yeast.

  • Single particle analysis using transmission electron microscopy (TEM) reveals conservation of oligomeric assembly of VDAC.

  • Determination of the apparent binding of ATP to VDAC by micro-scale thermophoresis (MST) uncovers a KD value in the mM range.

Abstract

The voltage-dependent anion-selective channel (VDAC) is an intrinsic β-barrel membrane protein located within the mitochondrial outer membrane where it serves as a pore, connecting the mitochondria to the cytosol. The high-resolution structures of both the human and murine VDACs have been resolved by X-ray diffraction and nuclear magnetic resonance spectroscopy (NMR) in 2008. However, the structural data are not completely in line with the findings that were obtained after decades of research on biochemical and functional analysis of VDAC. This discrepancy may be related to the fact that structural biology studies of membrane proteins reveal specific static conformations that may not necessarily represent the physiological state. For example, overexpression of membrane proteins in bacterial inclusion bodies or simply the extraction from the native lipid environment using harsh purification methods (i.e. chaotropic agents) can disturb the physiological conformations and the supramolecular assemblies. To address these potential issues, we have developed a method, allowing rapid one step purification of endogenous VDAC expressed in the native mitochondrial membrane without overexpression of recombinant protein or usage of harsh chaotropic extraction procedures. Using the Saccharomyces cerevisiae isoform 1 of VDAC as a model, this method yields efficient purification, preserving VDAC in a more physiological, native state following extraction from mitochondria. Single particle analysis using transmission electron microscopy (TEM) demonstrated conservation of oligomeric assembly after purification. Maintenance of the native state was evaluated using functional assessment that involves an ATP-binding assay by micro-scale thermophoresis (MST). Using this approach, we were able to determine for the first time the apparent KD for ATP of 1.2 mM.

Keywords

Voltage-dependent anion channel VDAC
Mitochondria
β-Barrel membrane protein
Porin
Membrane protein purification
Detergent
Membrane protein structure
X-ray diffraction
Transmission electron microscopy
Micro-scale thermophoresis (MST)
ATP binding

Abbreviations

Anapoe-C8E4
Tetra ethylene glycol monooctyl ether
Anapoe-C10E6
Hexa ethylen glycol monodecyl ether
HECAMEG®
6-O-(N-heptylcarbamoyl)-methyl-α-d-glucopyranoside
HRP
horseradish peroxidase
HA
Hydroxyapatite
BSA
bovine serum albumin
ScVDAC1 or Por1p
isoform 1 of the yeast mitochondrial voltage-dependent anion-selective channel
TEM
transmission electron microscopy

Cited by (0)

1

Collaboration with NanoTemper Technologies GmbH, Munich, Germany.