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Publication : A glycolytic shift in Schwann cells supports injured axons.

First Author  Babetto E Year  2020
Journal  Nat Neurosci Volume  23
Issue  10 Pages  1215-1228
PubMed ID  32807950 Mgi Jnum  J:334054
Mgi Id  MGI:7438013 Doi  10.1038/s41593-020-0689-4
Citation  Babetto E, et al. (2020) A glycolytic shift in Schwann cells supports injured axons. Nat Neurosci 23(10):1215-1228
abstractText  Axon degeneration is a hallmark of many neurodegenerative disorders. The current assumption is that the decision of injured axons to degenerate is cell-autonomously regulated. Here we show that Schwann cells (SCs), the glia of the peripheral nervous system, protect injured axons by virtue of a dramatic glycolytic upregulation that arises in SCs as an inherent adaptation to axon injury. This glycolytic response, paired with enhanced axon-glia metabolic coupling, supports the survival of axons. The glycolytic shift in SCs is largely driven by the metabolic signaling hub, mammalian target of rapamycin complex 1, and the downstream transcription factors hypoxia-inducible factor 1-alpha and c-Myc, which together promote glycolytic gene expression. The manipulation of glial glycolytic activity through this pathway enabled us to accelerate or delay the degeneration of perturbed axons in acute and subacute rodent axon degeneration models. Thus, we demonstrate a non-cell-autonomous metabolic mechanism that controls the fate of injured axons.
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