Neuron
Volume 67, Issue 4, 26 August 2010, Pages 575-587
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Article
Misfolded Mutant SOD1 Directly Inhibits VDAC1 Conductance in a Mouse Model of Inherited ALS

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Summary

Mutations in superoxide dismutase (SOD1) cause amyotrophic lateral sclerosis (ALS), a neurodegenerative disease characterized by loss of motor neurons. With conformation-specific antibodies, we now demonstrate that misfolded mutant SOD1 binds directly to the voltage-dependent anion channel (VDAC1), an integral membrane protein imbedded in the outer mitochondrial membrane. This interaction is found on isolated spinal cord mitochondria and can be reconstituted with purified components in vitro. ADP passage through the outer membrane is diminished in spinal mitochondria from mutant SOD1-expressing ALS rats. Direct binding of mutant SOD1 to VDAC1 inhibits conductance of individual channels when reconstituted in a lipid bilayer. Reduction of VDAC1 activity with targeted gene disruption is shown to diminish survival by accelerating onset of fatal paralysis in mice expressing the ALS-causing mutation SOD1G37R. Taken together, our results establish a direct link between misfolded mutant SOD1 and mitochondrial dysfunction in this form of inherited ALS.

Highlights

► Misfolded ALS-linked mutations in SOD1 directly bind the cytoplasmic face of VDAC1 ► ALS-linked mutant SOD1 binding to VDAC1 inhibits channel conductance ► Reduced VDAC1 activity accelerates onset of ALS-like disease ► Mitochondrial dysfunction from mutant SOD1 bound to VDAC1 drives disease onset in ALS

HUMDISEASE
MOLNEURO
CELLBIO

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