4.8 Article

The Phr1 Ubiquitin Ligase Promotes Injury-Induced Axon Self-Destruction

Journal

CELL REPORTS
Volume 3, Issue 5, Pages 1422-1429

Publisher

CELL PRESS
DOI: 10.1016/j.celrep.2013.04.013

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Funding

  1. American-Italian Cancer Foundation (AICF) post-doctoral research fellowship
  2. European Molecular Biology Organization (EMBO) long-term fellowship
  3. Muscular Dystrophy Association (MDA) Development Award
  4. NIH [DA020812, NS065053, NS078007]

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Axon degeneration is an evolutionarily conserved process that drives the loss of damaged axons and is an early event in many neurological disorders, so it is important to identify the molecular constituents of this poorly understood mechanism. Here, we demonstrate that the Phr1 E3 ubiquitin ligase is a central component of this axon degeneration program. Loss of Phr1 results in prolonged survival of severed axons in both the peripheral and central nervous systems, as well as preservation of motor and sensory nerve terminals. Phr1 depletion increases the axonal level of the axon survival molecule nicotinamide mononucleotide adenyltransferase 2 (NMNAT2), and NMNAT2 is necessary for Phr1-dependent axon stability. The profound long-term protection of peripheral and central mammalian axons following Phr1 deletion suggests that pharmacological inhibition of Phr1 function may be an attractive therapeutic candidate for amelioration of axon loss in neurological disease.

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