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Probing glycine receptor stoichiometry in superficial dorsal horn neurones using the spasmodic mouse

机译:使用痉挛性小鼠探索浅表背角神经元中的甘氨酸受体化学计量

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摘要

Non-technical summaryGlycine receptors (GlyRs) play an important role in inhibiting neurone activity in the spinal cord. Until recently adult GlyRs were thought to comprise α1 and β subunits. A new form of the receptor containing α3 subunits has been discovered in the superficial dorsal horn (SDH), a region of the spinal cord important for pain. This raises questions about the precise subunit composition of GlyRs and glycinergic synapses in the SDH. We used the spasmodic mouse, where α1 subunit containing GlyRs have altered agonist sensitivity and electrophysiological properties, to ask how α1 and α3 subunits are assembled to form GlyRs on SDH neurones. We found most (∼75%) GlyRs and glycinergic synapses in the SDH contain α1 subunits and few are composed exclusively of α3 subunits. Therefore, future efforts to design pain drugs that target the α3 subunit must consider the potential interaction between α1 and α3 subunits in the GlyR.
机译:非技术摘要甘氨酸受体(GlyRs)在抑制脊髓神经元活性中起重要作用。直到最近,成年的GlyRs被认为包含α1和β亚基。已经在浅背角(SDH)中发现了一种新的形式的含有α3亚基的受体,这是脊髓中一个对疼痛很重要的区域。这引起了关于SDH中GlyR和甘氨酸突触的精确亚基组成的问题。我们使用了痉挛性小鼠,其中含有GlyRs的α1亚基改变了激动剂敏感性和电生理特性,询问了如何在SDH神经元上组装α1和α3亚基形成GlyRs。我们发现SDH中的大多数GlyR和甘氨酸能突触均含有α1亚基,而仅由α3亚基组成,约占75%。因此,未来设计针对α3亚基的止痛药的工作必须考虑GlyR中α1和α3亚基之间的潜在相互作用。

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