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  • Loss of highwire Protects Against the Deleterious Effects of Traumatic Brain Injury in Drosophila Melanogaster.

Loss of highwire Protects Against the Deleterious Effects of Traumatic Brain Injury in Drosophila Melanogaster.

Frontiers in neurology (2020-06-02)
Ciaran S Hill, Jemeen Sreedharan, Andrea Loreto, David K Menon, Michael P Coleman
ABSTRACT

Traumatic brain injury is a major global cause of death and disability. Axonal injury is a major underlying mechanism of TBI and could represent a major therapeutic target. We provide evidence that targeting the axonal death pathway known as Wallerian degeneration improves outcome in a Drosophila Melanogaster model of high impact trauma. This cell-autonomous neurodegenerative pathway is initiated following axon injury, and in Drosophila, involves activity of the E3 ubiquitin ligase highwire. We demonstrate that a loss-of-function mutation in the highwire gene rescues deleterious effects of a traumatic injury, including-improved functional outcomes, lifespan, survival of dopaminergic neurons, and retention of synaptic proteins. This data suggests that highwire represents a potential therapeutic target in traumatic injury.

MATERIALS
Product Number
Brand
Product Description

Millipore
Immobilon®-P PVDF Membrane, 1 roll, 27 cm x 3.75 m, 0.45 µm pore size, Hydrophobic PVDF Transfer Membrane for western blotting.
Sigma-Aldrich
Triton X-100, laboratory grade
Sigma-Aldrich
Triton X-100, Molecular Biology
Supelco
Brilliant Blue FCF, analytical standard