首页> 外文期刊>The Journal of Physiology >Acute inhibition of diacylglycerol lipase blocks endocannabinoid-mediated retrograde signalling: Evidence for on-demand biosynthesis of 2-arachidonoylglycerol
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Acute inhibition of diacylglycerol lipase blocks endocannabinoid-mediated retrograde signalling: Evidence for on-demand biosynthesis of 2-arachidonoylglycerol

机译:急性抑制二酰基甘油脂肪酶可阻断内源性大麻素介导的逆行信号转导:2-花生四烯酰基甘油按需生物合成的证据

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摘要

The endocannabinoid (eCB) 2-arachidonoylglycerol (2-AG) produced by diacylglycerol lipase α (DGLα) is one of the best-characterized retrograde messengers at central synapses. It has been thought that 2-AG is produced 'on demand' upon activation of postsynaptic neurons. However, recent studies propose that 2-AG is pre-synthesized by DGLα and stored in neurons, and that 2-AG is released from such 'pre-formed pools' without the participation of DGLα. To address whether the 2-AG source for retrograde signalling is the on-demand biosynthesis by DGLα or the mobilization from pre-formed pools, we examined the effects of acute pharmacological inhibition of DGL by a novel potent DGL inhibitor, OMDM-188, on retrograde eCB signalling triggered by Ca2+ elevation, Gq/11 protein-coupled receptor activation or synergy of these two stimuli in postsynaptic neurons. We found that pretreatment for 1 h with OMDM-188 effectively blocked depolarization-induced suppression of inhibition (DSI), a purely Ca2+-dependent form of eCB signalling, in slices from the hippocampus, striatum and cerebellum. We also found that at parallel fibre-Purkinje cell synapses in the cerebellum OMDM-188 abolished synaptically induced retrograde eCB signalling, which is known to be caused by the synergy of postsynaptic Ca2+ elevation and group I metabotropic glutamate receptor (I-mGluR) activation. Moreover, brief OMDM-188 treatments for several minutes were sufficient to suppress both DSI and the I-mGluR-induced retrograde eCB signalling in cultured hippocampal neurons. These results are consistent with the hypothesis that 2-AG for synaptic retrograde signalling is supplied as a result of on-demand biosynthesis by DGLα rather than mobilization from presumptive pre-formed pools.
机译:由二酰基甘油脂肪酶α(DGLα)产生的内源性大麻素(eCB)2-花生四烯酰基甘油(2-AG)是中央突触中最典型的逆行信使之一。已经认为2-AG是在突触后神经元激活后“按需”产生的。但是,最近的研究表明,2-AG由DGLα预先合成并存储在神经元中,并且2-AG在没有DGLα参与的情况下从这种“预先形成的库”中释放出来。为了解决2-AG逆向信号传导来源是DGLα的按需生物合成还是从预先形成的库中动员,我们研究了新型强效DGL抑制剂OMDM-188对DGL的急性药理抑制作用。钙离子升高,Gq / 11蛋白偶联受体激活或突触后神经元中这两个刺激的协同作用触发逆行eCB信号。我们发现,在海马,纹状体和小脑切片中,用OMDM-188预处理1小时可有效阻止去极化诱导的抑制作用(DSI),即纯Ca2 +依赖形式的eCB信号传导。我们还发现,在小脑OMDM-188中,平行的纤维-浦肯野细胞突触消除了突触诱导的逆行eCB信号传导,已知这是由突触后Ca2 +升高和I组代谢型谷氨酸受体(I-mGluR)激活的协同作用引起的。此外,短暂的OMDM-188处理几分钟足以抑制培养的海马神经元中DSI和I-mGluR诱导的逆行eCB信号。这些结果与这样的假设相符,即2-AG用于突触逆行信号传递是由于DGLα的按需生物合成而不是从假定的预先形成的池中动员而提供的。

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