Nogo-A Expressed in Schwann Cells Impairs Axonal Regeneration after Peripheral Nerve Injury

Injured axons in mammalian peripheral nerves often regenerate successfully over long distances, in contrast to axons in the brain and spinal cord (CNS). Neurite growth-inhibitory proteins, including the recently cloned membrane protein Nogo-A, are enriched in the CNS, in particular in myelin. Nogo-A...

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Veröffentlicht in:The Journal of cell biology 2002-10, Vol.159 (1), p.29-35
Hauptverfasser: Pot, Caroline, Simonen, Marjo, Weinmann, Oliver, Schnell, Lisa, Christ, Franziska, Stoeckle, Sascha, Berger, Philipp, Rülicke, Thomas, Suter, Ueli, Schwab, Martin E.
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Sprache:eng
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Zusammenfassung:Injured axons in mammalian peripheral nerves often regenerate successfully over long distances, in contrast to axons in the brain and spinal cord (CNS). Neurite growth-inhibitory proteins, including the recently cloned membrane protein Nogo-A, are enriched in the CNS, in particular in myelin. Nogo-A is not detectable in peripheral nerve myelin. Using regulated transgenic expression of Nogo-A in peripheral nerve Schwann cells, we show that axonal regeneration and functional recovery are impaired after a sciatic nerve crush. Nogo-A thus overrides the growth-permissive and -promoting effects of the lesioned peripheral nerve, demonstrating its in vivo potency as an inhibitor of axonal regeneration.
ISSN:0021-9525
1540-8140
DOI:10.1083/jcb.200206068