4.6 Article

VAPB/ALS8 MSP Ligands Regulate Striated Muscle Energy Metabolism Critical for Adult Survival in Caenorhabditis elegans

Journal

PLOS GENETICS
Volume 9, Issue 9, Pages -

Publisher

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pgen.1003738

Keywords

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Funding

  1. Muscular Dystrophy Association [MDA186119]
  2. UAB Clinical Nutrition Center Nutrition or Obesity-Related Pilot Feasibility Studies grant (UAB NORC grant) [P30DK056336]
  3. Amyotrophic Lateral Sclerosis Association [1698]
  4. Agence Nationale de la Recherche (ANR JCJC Dynemit)
  5. Association pour la recherche sur la SLA et les autres maladies du motoneurone
  6. Thierry Latran Foundation (SpastALS)
  7. Association Pour La Recherche Et le Developpement de Moyens de Lutte Contre les Maladies Neurodegeneratives
  8. ERASMUS Neurotime project
  9. UAB Skin Disease Research Center [P30 AR050948]
  10. UAB-UCSD O'Brien Acute Kidney Injury Center [P30 DK079337]
  11. UAB Lung Health Center [R01 HL114439, R01 HL110950]
  12. NCRR Shared Instrumentation grant [S10 RR19261]
  13. NIH Office of Research Infrastructure Programs [P40 OD010440]
  14. Ministry of Education, Culture, Science, Sports and Technology

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Mutations in VAPB/ALS8 are associated with amyotrophic lateral sclerosis (ALS) and spinal muscular atrophy (SMA), two motor neuron diseases that often include alterations in energy metabolism. We have shown that C. elegans and Drosophila neurons secrete a cleavage product of VAPB, the N-terminal major sperm protein domain (vMSP). Secreted vMSPs signal through Roundabout and Lar-like receptors expressed on striated muscle. The muscle signaling pathway localizes mitochondria to myofilaments, alters their fission/fusion balance, and promotes energy production. Here, we show that neuronal loss of the C. elegans VAPB homolog triggers metabolic alterations that appear to compensate for muscle mitochondrial dysfunction. When vMSP levels drop, cytoskeletal or mitochondrial abnormalities in muscle induce elevated DAF-16, the Forkhead Box O (FoxO) homolog, transcription factor activity. DAF-16 promotes muscle triacylglycerol accumulation, increases ATP levels in adults, and extends lifespan, despite reduced muscle mitochondria electron transport chain activity. Finally, Vapb knock-out mice exhibit abnormal muscular triacylglycerol levels and FoxO target gene transcriptional responses to fasting and refeeding. Our data indicate that impaired vMSP signaling to striated muscle alters FoxO activity, which affects energy metabolism. Abnormalities in energy metabolism of ALS patients may thus constitute a compensatory mechanism counterbalancing skeletal muscle mitochondrial dysfunction.

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