首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Cannabinoid agonists stimulate (3H)GABA release in the globus pallidus of the rat when G(i) protein-receptor coupling is restricted: role of dopamine D2 receptors.
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Cannabinoid agonists stimulate (3H)GABA release in the globus pallidus of the rat when G(i) protein-receptor coupling is restricted: role of dopamine D2 receptors.

机译:当G(i)蛋白-受体偶联受到限制时,大麻素激动剂刺激大鼠苍白球的(3H)GABA释放:多巴胺D2受体的作用。

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摘要

The motor effects of cannabinoids in the globus pallidus appear to be caused by increases in interstitial GABA. To elucidate the mechanism of this response, we investigated the effect of the selective cannabinoid type 1 receptor (CB1) cannabinoid agonist arachidonyl-2-chloroethylamide (ACEA) on [(3)H]GABA release in slices of the rat globus pallidus. ACEA had two effects: concentrations between 10(-8) and 10(-6) M stimulated release, whereas higher concentrations (IC(50) approximately 10(-6) M) inhibited it. Another cannabinoid agonist, WIN-55,212-2, also had bimodal effects on release. Studies of cAMP production indicate that under conditions of low G(i/o), availability the coupling of CB1 receptors with G(i/o) proteins can be changed into CB1:G(s/olf) coupling; therefore, we determined the effects of conditions that limit G(i/o) availability on [(3)H]GABA release. Blockers of G(i/o) protein interactions, pertussis toxin and N-ethylmaleimide, transformed the inhibitory effects of ACEA on GABA release into stimulation. It also has been suggested that stimulation of D2 receptors can reduce G(i/o) availability. Blocking D2 receptors with sulpiride [(S)-5-aminosulfonyl-N-[(1-ethyl-2-pyrrolidinyl)methyl]-2-methoxybenzamidersqb] or depleting dopamine with reserpine inhibited the ACEA-induced stimulation of release. Thus, the D2 dependence of stimulation is consistent with the proposal that D2 receptors reduce G(i/o) proteins available for binding to the CB1 receptor. In summary, CB1 receptor activation has dual effects on GABA release in the globus pallidus. Low concentrations stimulate release through a process that depends on activation of dopamine D2 receptors that may limit G(i/o) protein availability. Higher concentrations of cannabinoid inhibit GABA release through mechanisms that are independent of D2 receptor activation.
机译:苍白球中的大麻素的运动作用似乎是由间质GABA升高引起的。为了阐明此响应的机制,我们研究了选择性大麻素1型受体(CB1)大麻素激动剂花生四烯基-2-氯乙酰胺(ACEA)对大鼠苍白球切片中[(3)H] GABA释放的影响。 ACEA有两种作用:浓度在10(-8)和10(-6)M之间刺激释放,而较高的浓度(IC(50)约10(-6)M)抑制释放。另一个大麻素激动剂WIN-55,212-2也对释放具有双峰效应。对cAMP产生的研究表明,在低G(i / o)的条件下,可用性可将CB1受体与G(i / o)蛋白的偶联改变为CB1:G(s / olf)偶联;因此,我们确定了限制G(i / o)可用性的条件对[(3)H] GABA释放的影响。 G(i / o)蛋白相互作用,百日咳毒素和N-乙基马来酰亚胺的阻滞剂将ACEA对GABA释放的抑制作用转化为刺激。也有人建议刺激D2受体可以减少G(i / o)的可用性。用舒必利[(S)-5-氨基磺酰基-N-[(1-乙基-2-吡咯烷基)甲基] -2-甲氧基苯甲酰胺qb]阻断D2受体或用利血平消耗多巴胺可抑制ACEA诱导的释放刺激。因此,刺激的D2依赖性与D2受体减少可用于结合CB1受体的G(i / o)蛋白的提议相一致。总之,CB1受体激活对苍白球中GABA的释放具有双重影响。低浓度通过取决于多巴胺D2受体激活的过程刺激释放,这可能会限制G(i / o)蛋白质的利用率。更高浓度的大麻素通过独立于D2受体激活的机制抑制GABA的释放。

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