Millán Carmelo, Castro Enrique, Torres Magdalena, Shigemoto Ryuichi, Sánchez-Prieto José
Departamento de Bioquímica, Facultad de Veterinaria, Universidad Complutense, 28040 Madrid, Spain.
J Biol Chem. 2003 Jun 27;278(26):23955-62. doi: 10.1074/jbc.M211471200. Epub 2003 Apr 11.
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.
代谢型谷氨酸受体(mGluRs)对钙通道的调节是神经递质释放精细调节中的关键事件。在此我们报告,在成年大鼠的大脑皮质神经末梢中,谷氨酸释放的抑制是由mGluR7介导的。在此实验准备中,谷氨酸释放的主要成分由P/Q型Ca2+通道支持(72.7%)。然而,mGluR7选择性地减少了与N型Ca2+通道相关的释放成分(29.9%)。与N型通道相比,mGluR7对P/Q通道的抑制作用不会因这些通道在驱动谷氨酸释放方面的更高效率而被掩盖。因此,当细胞外钙浓度([Ca2+]o)从1.3 mM降至0.5 mM时,mGluR7的激活未能减少与P/Q通道相关的释放。通过Ca2+成像,我们表明Ca2+通道在单个神经末梢中以异质方式分布。实际上,在此实验准备中,观察到的神经末梢含有N型(31.1%;芋螺毒素GVIA敏感)或P/Q型(64.3%;蜘蛛毒素IVA敏感)通道,或对这两种毒素不敏感(4.6%)。有趣的是,对l-AP4的绝大多数反应(95.4%)在含有N型通道的神经末梢中观察到。mGluR7与N型Ca2+通道的这种特异性共定位可以解释该受体无法抑制与P/Q通道相关的释放成分,也揭示了在同一神经末梢亚群中定位这两种蛋白质的特定靶向机制的存在。