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Nogo-66 Receptor at Cerebellar Cortical Glia Gap Junctions in the Rat
Author(s) -
Xia Liu,
Yingying Liu,
Weilin Jin,
Huiling Liu,
Gong Ju
Publication year - 2005
Publication title -
neurosignals
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.755
H-Index - 67
eISSN - 1424-8638
pISSN - 1424-862X
DOI - 10.1159/000086291
Subject(s) - neuroscience , biology , cerebellum , gap junction , neurite , receptor , microbiology and biotechnology , central nervous system , cerebellar cortex , myelin , neuroglia , inhibitory postsynaptic potential , intracellular , biochemistry , in vitro
Nogo-A is a myelin inhibitor of neurite outgrowth that accounts for the difficulty in fiber regeneration in the central nervous system. Its 66-amino-acid extracellular domain (Nogo-66) contributes to the inhibitory activity of Nogo-A. The Nogo-66 receptor is widely distributed in neurons of the central nervous system, including the cerebellum. In our study on the distribution of Nogo-66 receptor in the cerebellar cortex in the rat, we unexpectedly found Nogo-66 receptor immunoreactivity in the glia cells, particularly abundant beneath the Purkinje cells. The presence of Nogo-66 receptor in glia cells has not been reported before. A detailed study was thus conducted. Immunoelectron microscopic investigation clearly demonstrated that the Nogo-66 receptor immunoreactivity could be ascertained at the gap junction between glia cells, indicating that the Nogo-66 receptor may modulate the communication between glia cells through gap junctions.

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