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The myelin oligodendrocyte glycoprotein directly binds nerve growth factor to modulate central axon circuitry.


ABSTRACT: Myelin oligodendrocyte glycoprotein (MOG) is a central nervous system myelin-specific molecule expressed on the outer lamellae of myelin. To date, the exact function of MOG has remained unknown, with MOG knockout mice displaying normal myelin ultrastructure and no apparent specific phenotype. In this paper, we identify nerve growth factor (NGF) as a binding partner for MOG and demonstrate that this interaction is capable of sequestering NGF from TrkA-expressing neurons to modulate axon growth and survival. Deletion of MOG results in aberrant sprouting of nociceptive neurons in the spinal cord. Binding of NGF to MOG may offer widespread implications into mechanisms that underlie pain pathways.

SUBMITTER: von Budingen HC 

PROVIDER: S-EPMC4576870 | biostudies-literature | 2015 Sep

REPOSITORIES: biostudies-literature

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The myelin oligodendrocyte glycoprotein directly binds nerve growth factor to modulate central axon circuitry.

von Büdingen H-Christian HC   Mei Feng F   Greenfield Ariele A   Jahn Sarah S   Shen Yun-An A YA   Reid Hugh H HH   McKemy David D DD   Chan Jonah R JR  

The Journal of cell biology 20150901 6


Myelin oligodendrocyte glycoprotein (MOG) is a central nervous system myelin-specific molecule expressed on the outer lamellae of myelin. To date, the exact function of MOG has remained unknown, with MOG knockout mice displaying normal myelin ultrastructure and no apparent specific phenotype. In this paper, we identify nerve growth factor (NGF) as a binding partner for MOG and demonstrate that this interaction is capable of sequestering NGF from TrkA-expressing neurons to modulate axon growth an  ...[more]

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