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大麻素对突变型 alpha(1)S267I 甘氨酸受体缺乏正变构调节作用。

Lack of positive allosteric modulation of mutated alpha(1)S267I glycine receptors by cannabinoids.

机构信息

Clinic for Anaesthesia and Critical Care Medicine; OE 8050, Hannover Medical School, Carl-Neuberg-Str. 1, 30623 Hannover, Germany.

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 2010 May;381(5):477-82. doi: 10.1007/s00210-010-0506-9. Epub 2010 Mar 26.

Abstract

Loss of inhibitory synaptic transmission within the dorsal horn of the spinal cord plays a key role in the development of chronic pain following inflammation or nerve injury. Inhibitory postsynaptic transmission in the adult spinal cord involves mainly glycine. Ajulemic acid and HU210 are non-psychotropic, synthetic cannabinoids. Cannabidiol is a non-psychotropic plant constituent of cannabis sativa. There are hints that non-cannabinoid receptor mechanisms of these cannabinoids might be mediated via glycine receptors. In this study, we investigated the impact of the amino acid residue serine at position 267 on the glycine-modulatory effects of ajulemic acid, cannabidiol and HU210. Mutated alpha(1)S267I glycine receptors transiently expressed in HEK293 cells were studied by utilising the whole-cell clamp technique. The mutation of the alpha(1) subunit TM2 serine residue to isoleucine abolished the co-activation and the direct activation of the glycine receptor by the investigated cannabinoids. The nature of the TM2 (267) residue of the glycine alpha(1) subunit is crucial for the glycine-modulatory effect of ajulemic acid, cannabidiol and HU210. An investigation of the impact of such mutations on the in vivo interaction of cannabinoids with glycine receptors should permit a better understanding of the molecular determinants of action of cannabinoids.

摘要

脊髓背角抑制性突触传递的丧失在炎症或神经损伤后慢性疼痛的发展中起着关键作用。成人脊髓中的抑制性突触传递主要涉及甘氨酸。阿朱雷酸和 HU210 是非精神活性的合成大麻素。大麻二酚是大麻 sativa 的一种非精神活性植物成分。有迹象表明,这些大麻素的非大麻素受体机制可能通过甘氨酸受体介导。在这项研究中,我们研究了位置 267 上的氨基酸残基丝氨酸对阿朱雷酸、大麻二酚和 HU210 的甘氨酸调节作用的影响。利用全细胞钳技术研究了瞬时表达在 HEK293 细胞中的突变型 alpha(1)S267I 甘氨酸受体。TM2 丝氨酸残基突变为异亮氨酸会消除所研究的大麻素对甘氨酸受体的共同激活和直接激活。甘氨酸 alpha(1)亚基 TM2(267)残基的性质对于阿朱雷酸、大麻二酚和 HU210 的甘氨酸调节作用至关重要。对这种突变对大麻素与甘氨酸受体体内相互作用的影响的研究将有助于更好地理解大麻素作用的分子决定因素。

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