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Axonal protective effects of the myelin-associated glycoprotein.


ABSTRACT: Progressive axonal degeneration follows demyelination in many neurological diseases, including multiple sclerosis and inherited demyelinating neuropathies, such as Charcot-Marie-Tooth disease. One glial molecule, the myelin-associated glycoprotein (MAG), located in the adaxonal plasmalemma of myelin-producing cells, is known to signal to the axon and to modulate axonal caliber through phosphorylation of axonal neurofilament proteins. This report establishes for the first time that MAG also promotes resistance to axonal injury and prevents axonal degeneration both in cell culture and in vivo. This effect on axonal stability depends on the RGD domain around arginine 118 in the extracellular portion of MAG, but it is independent of Nogo signaling in the axon. Exploiting this pathway may lead to therapeutic strategies for neurological diseases characterized by axonal loss.

SUBMITTER: Nguyen T 

PROVIDER: S-EPMC2774126 | biostudies-literature | 2009 Jan

REPOSITORIES: biostudies-literature

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Axonal protective effects of the myelin-associated glycoprotein.

Nguyen Thien T   Mehta Niraj R NR   Conant Katherine K   Kim Kee-Jun KJ   Jones Melina M   Calabresi Peter A PA   Melli Giorgia G   Hoke Ahmet A   Schnaar Ronald L RL   Ming Guo-Li GL   Song Hongjun H   Keswani Sanjay C SC   Griffin John W JW  

The Journal of neuroscience : the official journal of the Society for Neuroscience 20090101 3


Progressive axonal degeneration follows demyelination in many neurological diseases, including multiple sclerosis and inherited demyelinating neuropathies, such as Charcot-Marie-Tooth disease. One glial molecule, the myelin-associated glycoprotein (MAG), located in the adaxonal plasmalemma of myelin-producing cells, is known to signal to the axon and to modulate axonal caliber through phosphorylation of axonal neurofilament proteins. This report establishes for the first time that MAG also promo  ...[more]

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