Co-expression of metabotropic glutamate receptor 7 and N-type Ca2+ channels in single cerebrocortical nerve terminals of adult rats

Millán C, Castro E, Torres M, Shigemoto R, Sánchez Prieto J. 2003. Co-expression of metabotropic glutamate receptor 7 and N-type Ca2+ channels in single cerebrocortical nerve terminals of adult rats. Journal of Biological Chemistry. 278(26), 23955–23962.

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Author
Millán, Carmelo; Castro, Enrique G; Torres, Magdalena; Shigemoto, RyuichiISTA ; Sánchez-Prieto, José
Abstract
The modulation of calcium channels by metabotropic glutamate receptors (mGluRs) is a key event in the fine-tuning of neurotransmitter release. Here we report that, in cerebrocortical nerve terminals of adult rats, the inhibition of glutamate release is mediated by mGluR7. In this preparation, the major component of glutamate release is supported by P/Q-type Ca2+ channels (72.7%). However, mGluR7 selectively reduced the release component that is associated with N-type Ca2+ channels (29.9%). Inhibition of P/Q channels by mGluR7 is not masked by the higher efficiency of these channels in driving glutamate release when compared with N-type channels. Thus, activation of mGluR7 failed to reduce the release associated with P/Q channels when the extracellular calcium concentration, ([Ca2+]o), was reduced from 1.3 to 0.5 mM. Through Ca2+ imaging, we show that Ca2+ channels are distributed in a heterogeneous manner in individual nerve terminals. Indeed, in this preparation, nerve terminals were observed that contain N-type (31.1%; conotoxin GVIA-sensitive) or P/Q-type (64.3%; agatoxin IVA-sensitive) channels or that were insensitive to these two toxins (4.6%). Interestingly, the great majority of the responses to L-AP4 (95.4%) were observed in nerve terminals containing N-type channels. This specific co-localization of mGluR7 and N-type Ca2+-channels could explain the failure of the receptor to inhibit the P/Q channel-associated release component and also reveal the existence of specific targeting mechanisms to localize the two proteins in the same nerve terminal subset.
Publishing Year
Date Published
2003-07-27
Journal Title
Journal of Biological Chemistry
Publisher
American Society for Biochemistry and Molecular Biology
Volume
278
Issue
26
Page
23955 - 23962
IST-REx-ID

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Millán C, Castro E, Torres M, Shigemoto R, Sánchez Prieto J. Co-expression of metabotropic glutamate receptor 7 and N-type Ca2+ channels in single cerebrocortical nerve terminals of adult rats. Journal of Biological Chemistry. 2003;278(26):23955-23962. doi:10.1074/jbc.M211471200
Millán, C., Castro, E., Torres, M., Shigemoto, R., & Sánchez Prieto, J. (2003). Co-expression of metabotropic glutamate receptor 7 and N-type Ca2+ channels in single cerebrocortical nerve terminals of adult rats. Journal of Biological Chemistry. American Society for Biochemistry and Molecular Biology. https://doi.org/10.1074/jbc.M211471200
Millán, Carmelo, Enrique Castro, Magdalena Torres, Ryuichi Shigemoto, and José Sánchez Prieto. “Co-Expression of Metabotropic Glutamate Receptor 7 and N-Type Ca2+ Channels in Single Cerebrocortical Nerve Terminals of Adult Rats.” Journal of Biological Chemistry. American Society for Biochemistry and Molecular Biology, 2003. https://doi.org/10.1074/jbc.M211471200.
C. Millán, E. Castro, M. Torres, R. Shigemoto, and J. Sánchez Prieto, “Co-expression of metabotropic glutamate receptor 7 and N-type Ca2+ channels in single cerebrocortical nerve terminals of adult rats,” Journal of Biological Chemistry, vol. 278, no. 26. American Society for Biochemistry and Molecular Biology, pp. 23955–23962, 2003.
Millán C, Castro E, Torres M, Shigemoto R, Sánchez Prieto J. 2003. Co-expression of metabotropic glutamate receptor 7 and N-type Ca2+ channels in single cerebrocortical nerve terminals of adult rats. Journal of Biological Chemistry. 278(26), 23955–23962.
Millán, Carmelo, et al. “Co-Expression of Metabotropic Glutamate Receptor 7 and N-Type Ca2+ Channels in Single Cerebrocortical Nerve Terminals of Adult Rats.” Journal of Biological Chemistry, vol. 278, no. 26, American Society for Biochemistry and Molecular Biology, 2003, pp. 23955–62, doi:10.1074/jbc.M211471200.

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