A lower affinity to cytosolic proteins reveals VDAC3 isoform-specific role in mitochondrial biology

Date

2020-01-14

Authors

Queralt-Martín, María
Bergdoll, Lucie
Munshi, Nabill
Jacobs, Daniel
Kuszak, Adam J.
Protchenko, Olga
Reina, Simona
Magrì, Andrea
De Pinto, Vito

Director

Publisher

Rockefeller University Press
Acceso abierto / Sarbide irekia
Artículo / Artikulua
Versión publicada / Argitaratu den bertsioa

Project identifier

Impacto
No disponible en Scopus

Abstract

Voltage-dependent anion channel (VDAC) is the major pathway for the transport of ions and metabolites across the mitochondrial outer membrane. Among the three known mammalian VDAC isoforms, VDAC3 is the least characterized, but unique functional roles have been proposed in cellular and animal models. Yet, a high-sequence similarity between VDAC1 and VDAC3 is indicative of a similar pore-forming structure. Here, we conclusively show that VDAC3 forms stable, highly conductive voltage-gated channels that, much like VDAC1, are weakly anion selective and facilitate metabolite exchange, but exhibit unique properties when interacting with the cytosolic proteins α-synuclein and tubulin. These two proteins are knowntobepotent regulators of VDAC1 andinduce similar characteristic blockages (on the millisecond time scale) of VDAC3, but with 10- to 100-fold reduced on-rates and altered α-synuclein blocking times, indicative of an isoform-specific function. Through cysteine scanning mutagenesis, we found that VDAC3’s cysteine residues regulate its interaction with α-synuclein, demonstrating VDAC3-unique functional properties and further highlighting a general molecular mechanism for VDAC isoform-specific regulation of mitochondrial bioenergetics.

Description

Keywords

Biophysics, Membrane transport, Molecular physiology

Department

Ciencias de la Salud / Osasun Zientziak

Faculty/School

Degree

Doctorate program

item.page.cita

Queralt-Martín, M., Bergdoll, L., Teijido, O., Munshi, N., Jacobs, D., Kuszak, A. J., Protchenko, O., Reina, S., Magrì, A., De Pinto, V., Bezrukov, S. M., Abramson, J., Rostovtseva, T. K. (2020). A lower affinity to cytosolic proteins reveals VDAC3 isoform-specific role in mitochondrial biology. Journal of General Physiology, 152(2), 1-13. https://doi.org/10.1085/jgp.201912501.

item.page.rights

© 2019 Queralt-Martín et al. This article is distributed under the terms of a Creative Commons License (Attribution-Noncommercial-Share Alike 4.0 International license.

Licencia

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