Grassi Silvarosa, Frondaroli Adele, Pettorossi Vito Enrico
Department of Internal Medicine, Section of Human Physiology, University of Perugia, I-06100 Perugia, Italy.
Neuroreport. 2005 Aug 22;16(12):1303-7. doi: 10.1097/01.wnr.0000174406.32386.36.
In brainstem slices from developing rats, metabotropic glutamate receptors mGluR2/3 and mGluR5 play different inhibitory roles in synaptic transmission and plasticity of the medial vestibular nuclei. The mGluR2/3 block (LY341495) reduces the occurrence of long-term depression after vestibular afferent high frequency stimulation at P8-P10, and increases that of long-term potentiation, while the mGluR5 block prevents high frequency stimulation long-term depression. Later on, the receptor block does not influence high frequency stimulation effects. In addition, while mGluR2/3 agonist (APDC) always provokes a transient reduction of synaptic responses, that of mGluR5 (CHPG) induces long-term depression per se at P8-P10. These results show a key role of mGluR5 in inducing high frequency stimulation long-term depression in developing medial vestibular nuclei, while mGluR2/3 modulate synaptic transmission, probably through presynaptic control of glutamate release.
在发育中大鼠的脑干切片中,代谢型谷氨酸受体mGluR2/3和mGluR5在前庭内侧核的突触传递和可塑性中发挥不同的抑制作用。mGluR2/3阻断剂(LY341495)减少了P8 - P10时前庭传入高频刺激后长时程抑制的发生,并增加了长时程增强的发生,而mGluR5阻断剂则阻止高频刺激长时程抑制。随后,受体阻断不影响高频刺激效应。此外,虽然mGluR2/3激动剂(APDC)总是引起突触反应的短暂降低,但mGluR5激动剂(CHPG)在P8 - P10时本身可诱导长时程抑制。这些结果表明,mGluR5在发育中的前庭内侧核诱导高频刺激长时程抑制中起关键作用,而mGluR2/3可能通过对谷氨酸释放的突触前控制来调节突触传递。