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Glutamate Receptor Subunit δ2 Is Highly Expressed in a Novel Population of Glial‐Like Cells in Rat Pineal Glands in Culture
Author(s) -
Yatsushiro Shouki,
Hayashi Mitsuko,
Morita Mitsuhiro,
Yamamoto Akitsugu,
Moriyama Yoshinori
Publication year - 2000
Publication title -
journal of neurochemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.75
H-Index - 229
eISSN - 1471-4159
pISSN - 0022-3042
DOI - 10.1046/j.1471-4159.2000.0751115.x
Subject(s) - pinealocyte , biology , pineal gland , astrocyte , glutamate receptor , microbiology and biotechnology , population , neuroglia , receptor , immunolabeling , glial fibrillary acidic protein , medicine , endocrinology , biochemistry , melatonin , immunohistochemistry , central nervous system , immunology , demography , sociology
The mammalian pineal gland uses L‐glutamate as an intercellular chemical transmitter to regulate negatively melatonin synthesis. To receive glutamate signals, pinealocytes express at least three kinds of glutamate receptors: metabotropic receptor types 3 and 5 and an ionotropic receptor, GluR1. In this study, we examined whether or not the fourth class of ionotropic receptor, δ, which is known for its nondefinitive molecular function and its unique expression pattern in brain, is expressed in pineal gland. RT‐PCR analyses with specific probes indicated the expression of mRNA of δ2 but not that of δ1 in pineal gland and cultured pineal cells. Western blotting analysis with polyclonal antibodies specific to the carboxyl‐terminal region of the δ2 receptor recognized a single 110‐kDa polypeptide of cerebellar membranes and specifically immunostained Purkinje cells. The δ2 antibodies recognized a 110‐kDa polypeptide of pineal membranes and specifically immunostained huge glial‐like cells with the occasional presence of several long, branching processes in a pineal cell culture. δ2 is not uniformly distributed throughout the cells and is relatively abundant at the periphery of the cell bodies and long processes, where the terminals of synaptophysin‐positive processes of pinealocytes, a site for glutamate secretion, are frequently present. The δ2‐positive cells constitute a very minor population among total pineal cells (∼0.03%). Double immunolabeling with δ2 antibodies and antibodies against marker proteins for pineal interstitial cells clearly distinguishes δ2‐positive pineal cells and other known interstitial cells, including glial fibrillary acidic protein‐ or vimentin‐positive glial‐like cells. These results indicated that the δ2 glutamate receptor is expressed in a novel subpopulation of pineal glial‐like cells in culture and suggest the presence of a glutamate‐mediated intercellular signal transduction mechanism between pinealocytes and δ2‐expressing cells. The pineal cells may provide a good experimental system for studies on the function of glutamate receptor δ2.

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