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薄荷醇诱导突触前钙库释放钙离子,增强感觉突触传递。

Menthol-induced Ca2+ release from presynaptic Ca2+ stores potentiates sensory synaptic transmission.

作者信息

Tsuzuki Kenzo, Xing Hong, Ling Jennifer, Gu Jianguo G

机构信息

Department of Oral and Maxillofacial Surgery, McKnight Brain Institute and College of Dentistry, University of Florida, Gainesville, Florida, 32610, USA.

出版信息

J Neurosci. 2004 Jan 21;24(3):762-71. doi: 10.1523/JNEUROSCI.4658-03.2004.

Abstract

Menthol and many of its derivatives produce profound sensory and mental effects. The receptor for menthol has been cloned and named cold- and menthol-sensitive receptor-1 (CMR1) or transient receptor potential channel M8 (TRPM8) receptor. Using a dorsal root ganglion (DRG) and dorsal horn (DH) coculture system as a model for the first sensory synapse in the CNS, we studied menthol effects on sensory synaptic transmission and the underlying mechanisms. We found that menthol increased the frequency of miniature EPSCs (mEPSCs). The effects persisted under an extracellular Ca2+-free condition but were abolished by intracellular BAPTA and pretreatment with thapsigargin. Menthol-induced increases of mEPSC frequency were blocked by 2-aminoethoxydiphenylborane (2-APB) but not affected by the phospholipase C inhibitor U73122 [GenBank] or by the cADP receptor inhibitor 8-bromo-cADPR (8Br-cADPR). Double-patch recordings from DRG-DH pairs showed that menthol could potentiate evoked EPSCs (eEPSCs) and change the paired-pulse ratio of eEPSCs. A Ca2+ imaging study on DRG neurons demonstrated that menthol could directly release Ca2+ from intracellular Ca2+ stores. Menthol-induced Ca2+ release was abolished by 2-APB but not affected by U73122 [GenBank] or 8Br-cADPR. Taken together, our results indicate that menthol can act directly on presynaptic Ca2+ stores of sensory neurons to release Ca2+, resulting in a facilitation of glutamate release and a modulation of neuronal transmission at sensory synapses. Expression of TRPM8 receptor on presynaptic Ca2+ stores, a novel localization for this ligand-gated ion channel, is also strongly suggested.

摘要

薄荷醇及其许多衍生物会产生显著的感官和精神效应。薄荷醇的受体已被克隆,并被命名为冷和薄荷醇敏感受体-1(CMR1)或瞬时受体电位通道M8(TRPM8)受体。我们以背根神经节(DRG)和背角(DH)共培养系统作为中枢神经系统中第一感觉突触的模型,研究了薄荷醇对感觉突触传递及其潜在机制的影响。我们发现薄荷醇增加了微小兴奋性突触后电流(mEPSCs)的频率。在细胞外无Ca2+的条件下,这种效应仍然存在,但被细胞内BAPTA和毒胡萝卜素预处理所消除。薄荷醇诱导的mEPSC频率增加被2-氨基乙氧基二苯硼烷(2-APB)阻断,但不受磷脂酶C抑制剂U73122[基因库]或环ADP受体抑制剂8-溴环ADP核糖(8Br-cADPR)的影响。对DRG-DH对进行的双膜片钳记录表明,薄荷醇可以增强诱发的兴奋性突触后电流(eEPSCs)并改变eEPSCs的双脉冲比率。对DRG神经元进行的Ca2+成像研究表明,薄荷醇可以直接从细胞内Ca2+储存中释放Ca2+。薄荷醇诱导的Ca2+释放被2-APB消除,但不受U73122[基因库]或8Br-cADPR的影响。综上所述,我们的结果表明,薄荷醇可以直接作用于感觉神经元的突触前Ca2+储存,释放Ca2+,从而促进谷氨酸释放并调节感觉突触处的神经元传递。还强烈提示了TRPM8受体在突触前Ca2+储存上的表达,这是该配体门控离子通道的一种新定位。

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