首页> 外文期刊>Circulation research: a journal of the American Heart Association >Molecular identification and functional characterization of a mitochondrial sulfonylurea receptor 2 splice variant generated by intraexonic splicing.
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Molecular identification and functional characterization of a mitochondrial sulfonylurea receptor 2 splice variant generated by intraexonic splicing.

机译:外显子内剪接产生的线粒体磺酰脲受体2剪接变体的分子鉴定和功能表征。

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RATIONALE: Cardioprotective pathways may involve a mitochondrial ATP-sensitive potassium (mitoK(ATP)) channel but its composition is not fully understood. OBJECTIVE: We hypothesized that the mitoK(ATP) channel contains a sulfonylurea receptor (SUR)2 regulatory subunit and aimed to identify the molecular structure. METHODS AND RESULTS: Western blot analysis in cardiac mitochondria detected a 55-kDa mitochondrial SUR2 (mitoSUR2) short form, 2 additional short forms (28 and 68 kDa), and a 130-kDa long form. RACE (Rapid Amplification of cDNA Ends) identified a 1.5-Kb transcript, which was generated by a nonconventional intraexonic splicing (IES) event within the 4th and 29th exons of the SUR2 mRNA. The translated product matched the predicted size of the 55-kDa short form. In a knockout mouse (SUR2KO), in which the SUR2 gene was disrupted, the 130-kDa mitoSUR2 was absent, but the short forms remained expressed. Diazoxide failed to induce increased fluorescence of flavoprotein oxidation in SUR2KO cells, indicating that the diazoxide-sensitive mitoK(ATP) channel activity was associated with 130-kDa-based channels. However, SUR2KO mice displayed similar infarct sizes to preconditioned wild type, suggesting a protective role for the remaining short form-based channels. Heterologous coexpression of the SUR2 IES variant and Kir6.2 in a K(+) transport mutant Escherichia coli strain permitted improved cell growth under acidic pH conditions. The SUR2 IES variant was localized to mitochondria, and removal of a predicted mitochondrial targeting sequence allowed surface expression and detection of an ATP-sensitive current when coexpressed with Kir6.2. CONCLUSIONS: We identify a novel SUR2 IES variant in cardiac mitochondria and provide evidence that the variant-based channel can form an ATP-sensitive conductance and may contribute to cardioprotection.
机译:理由:心脏保护途径可能涉及线粒体ATP敏感性钾(mitoK(ATP))通道,但其组成尚未完全明了。目的:我们假设mitoK(ATP)通道包含磺酰脲受体(SUR)2调节亚基,旨在鉴定分子结构。方法和结果:心脏线粒体的蛋白质印迹分析检测到55 kDa的线粒体SUR2(mitoSUR2)短形式,另外2个短形式(28和68 kDa)和130 kDa长形式。 RACE(cDNA末端的快速扩增)鉴定到1.5 Kb的转录本,该转录本是由SUR2 mRNA第4和第29外显子内的非常规外显子内剪接(IES)事件产生的。翻译的产品与55 kDa短形式的预期大小相符。在其中SUR2基因被破坏的基因敲除小鼠(SUR2KO)中,没有130 kDa的mitoSUR2,但仍保留了短形式。二氮嗪未能诱导SUR2KO细胞中黄素蛋白氧化的荧光增强,表明二氮嗪敏感的mitoK(ATP)通道活性与基于130 kDa的通道相关。然而,SUR2KO小鼠显示出与预处理的野生型相似的梗塞面积,表明对剩余的基于短形式的通道具有保护作用。 SUR2 IES变体和Kir6.2在K(+)转运突变型大肠杆菌菌株中的异源共表达使得在酸性pH条件下细胞生长得以改善。 SUR2 IES变体位于线粒体,与Kir6.2共表达时,去除预测的线粒体靶向序列可实现表面表达和ATP敏感电流的检测。结论:我们在心脏线粒体中鉴定了一个新的SUR2 IES变异体,并提供证据表明基于变异体的通道可以形成ATP敏感性电导,并可能有助于心脏保护。

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