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

Böhm, Raphael and Amodeo, Giuseppe Federico and Murlidaran, Sruthi and Chavali, Shashank and Wagner, Gerhard and Winterhalter, Mathias and Brannigan, Grace and Hiller, Sebastian. (2020) The Structural Basis for Low Conductance in the Membrane Protein VDAC upon β-NADH Binding and Voltage Gating. Structure, 28 (2). pp. 206-214.e4.

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Official URL: https://edoc.unibas.ch/74987/

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Abstract

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 and NMR relaxation experiments probing different time scales show that increased helix dynamics is present in the open state and that motions of the N-terminal helices are involved in the VDAC voltage gating mechanism.
Faculties and Departments:05 Faculty of Science > Departement Biozentrum > Structural Biology & Biophysics > Structural Biology (Hiller)
UniBasel Contributors:Hiller Odermatt, Sebastian
Item Type:Article, refereed
Article Subtype:Research Article
Publisher:Cell Press
ISSN:0969-2126
e-ISSN:1878-4186
Note:Publication type according to Uni Basel Research Database: Journal article
Identification Number:
Last Modified:10 Feb 2020 16:44
Deposited On:10 Feb 2020 16:44

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