NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon survival. Axons depend on the activity of the central enzyme in NAD biosynthesis, nicotinamide mononucleotide adenylyltransferase 2 (NMNAT2), for their maintenance and degenerate rapidly when this activity is lost. However, whether axon survival is regulated by the supply of NAD or by another action of this enzyme remains unclear. Here we show that the nucleotide precursor of NAD, nicotinamide mononucleotide (NMN), accumulates after nerve injury and promotes axon degeneration. Inhibitors of NMN-synthesising enzyme NAMPT confer robust morphological and functional protection of injured axons and synapses despite lowering NAD. Exogenous NMN aboli...
Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured...
Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured...
Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured...
Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured...
Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured...
Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured...
Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
NAD metabolism regulates diverse biological processes, including ageing, circadian rhythm and axon s...
Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured...
Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured...
Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured...
Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured...
Axon degeneration contributes to the disruption of neuronal circuit function in diseased and injured...