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ATP-sensitive K+ channels: regulation of bursting by the sulphonylurea receptor PIP2 and regions of Kir6.2

机译:ATP敏感的K +通道:通过磺酰脲受体PIP2和Kir6.2区域调控突触

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摘要

ATP-sensitive K+ channels composed of the pore-forming protein Kir6.2 and the sulphonylurea receptor SUR1 are inhibited by ATP and activated by Phosphatidylinositol Bisphosphate (PIP2). Residues involved in binding of these ligands to the Kir6.2 cytoplasmic domain have been identified, and it has been hypothesized that gating mechanisms involve conformational changes in the regions of the bundle crossing and/or the selectivity filter of Kir6.2. Regulation of Kir6.2 by SUR1, however, is not well-understood, even though this process is ATP and PIP2 dependent. In this study, we investigated the relationship between channel regulation by SUR1 and PIP2 by comparing a number of single and double mutants known to affect open probability (Po), PIP2 affinity, and sulphonylurea and MgADP sensitivity. When coexpressed with SUR1, the Kir6.2 mutant C166A, which is characterized by a Po value close to 0.8, exhibits no sulphonylurea or MgADP sensitivity. However, when Po was reduced by combining mutations at the PIP2-sensitive residues R176 and R177 with C166A, sulphonylurea and MgADP sensitivities were restored. These effects correlated with a dramatic decrease in PIP2 affinity, as assessed by PIP2-induced channel reactivation and inhibition by neomycin, an antagonist of PIP2 binding. Based on macroscopic and single-channel data, we propose a model in which entry into the high-Po bursting state by the C166A mutation or by SUR1 depends on the interaction of PIP2 with R176 and R177 and, to a lesser extent, R54. In conjunction with this PIP2-dependent process, SUR1 also regulates channel activity via a PIP2-independent, but MgADP-dependent process.
机译:由成孔蛋白Kir6.2和磺酰脲受体SUR1组成的ATP敏感K + 通道被ATP抑制,并被磷脂酰肌醇双磷酸酯(PIP2)激活。已经鉴定了与这些配体结合到Kir6.2胞质结构域上有关的残基,并且已经假设门控机制涉及束交叉和/或Kir6.2选择性过滤器区域的构象变化。然而,尽管该过程是依赖于ATP和PIP2的,但SUR1对Kir6.2的调控却未被很好地理解。在这项研究中,我们通过比较已知影响开放概率(Po),PIP2亲和力和磺酰脲和MgADP敏感性的多个单突变体和双突变体,研究了SUR1和PIP2调控通道之间的关系。当与SUR1共表达时,以Po值接近0.8为特征的Kir6.2突变体C166A没有磺酰脲或MgADP敏感性。但是,当通过结合PIP2敏感残基R176和R177的突变与C166A降低Po时,磺酰脲和MgADP敏感性得以恢复。这些作用与PIP2亲和力的显着降低有关,如PIP2诱导的通道重新激活和新霉素(PIP2结合的拮抗剂)所抑制所评估的。基于宏观和单通道数据,我们提出了一个模型,其中通过C166A突变或SUR1进入高Po爆发状态取决于PIP2与R176和R177以及在较小程度上与R54的相互作用。结合此PIP2依赖性过程,SUR1还通过PIP2依赖性但MgADP依赖性过程调节通道活性。

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