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Alternative sulfonylurea receptor expression defines metabolic sensitivity of K-ATP channels in dopaminergic midbrain neurons.

机译:磺酰脲受体的替代表达定义了多巴胺能中脑神经元中K-ATP通道的代谢敏感性。

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摘要

ATP-sensitive potassium (K-ATP) channels couple the metabolic state to cellular excitability in various tissues. Several isoforms of the K-ATP channel subunits, the sulfonylurea receptor (SUR) and inwardly rectifying K channel (Kir6.X), have been cloned, but the molecular composition and functional diversity of native neuronal K-ATP channels remain unresolved. We combined functional analysis of K-ATP channels with expression profiling of K-ATP subunits at the level of single substantia nigra (SN) neurons in mouse brain slices using an RT-multiplex PCR protocol. In contrast to GABAergic neurons, single dopaminergic SN neurons displayed alternative co-expression of either SUR1, SUR2B or both SUR isoforms with Kir6.2. Dopaminergic SN neurons expressed alternative K-ATP channel species distinguished by significant differences in sulfonylurea affinity and metabolic sensitivity. In single dopaminergic SN neurons, co-expression of SUR1 + Kir6.2, but not of SUR2B + Kir6.2, correlated with functional K-ATP channels highly sensitive to metabolic inhibition. In contrast to wild-type, surviving dopaminergic SN neurons of homozygous weaver mouse exclusively expressed SUR1 + Kir6.2 during the active period of dopaminergic neurodegeneration. Therefore, alternative expression of K-ATP channel subunits defines the differential response to metabolic stress and constitutes a novel candidate mechanism for the differential vulnerability of dopaminergic neurons in response to respiratory chain dysfunction in Parkinson's disease.
机译:ATP敏感性钾(K-ATP)通道将新陈代谢状态与各种组织中的细胞兴奋性耦合。已克隆了K-ATP通道亚基的几种同工型,磺酰脲受体(SUR)和向内整流的K通道(Kir6.X),但天然神经元K-ATP通道的分子组成和功能多样性仍未得到解决。我们将RT-Multiple PCR协议在小鼠脑切片中单个黑质(SN)神经元水平上将K-ATP通道的功能分析与K-ATP亚基的表达谱相结合。与GABA能神经元相反,单个多巴胺能SN神经元表现出SUR1,SUR2B或两种SUR亚型与Kir6.2的替代共表达。多巴胺能SN神经元表达了替代性K-ATP通道种类,其特征在于磺酰脲亲和力和代谢敏感性存在显着差异。在单个多巴胺能SN神经元中,SUR1 + Kir6.2的共表达而不是SUR2B + Kir6.2的共表达与对代谢抑制高度敏感的功能性K-ATP通道相关。与野生型相反,纯合织布鼠的存活多巴胺能SN神经元在多巴胺能神经变性的活跃期仅表达SUR1 + Kir6.2。因此,K-ATP通道亚基的替代表达定义了对代谢应激的差异反应,并构成了多巴胺能神经元对帕金森氏病中呼吸链功能障碍的差异脆弱性的新型候选机制。

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