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Targeted expression of Kir6.2 in mitochondria confers protection against hypoxic stress

机译:线粒体中Kir6.2的靶向表达赋予针对低氧应激的保护

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摘要

Selective K+ transport in the inner mitochondrial membrane has been attributed to at least three different channel types: ATP-sensitive, Ca2+-regulated and voltage-dependent K+ channels. Studies utilizing their selective modulators have suggested that an increased activity of these channels plays an important role in the cellular protection from metabolic stress. However, direct evidence for this effect is largely absent, and recent findings on the lack of specificity for several channel openers and blockers have questioned the actual contribution of the mitochondrial K+ channels in the preservation of cellular viability. In order to directly investigate the role of enhanced mitochondrial K+ uptake in cellular protection, we selectively expressed the inward rectifying K+ channel Kir6.2 in the mitochondria of HEK293 and HL-1 cells. Targeted Kir6.2 expression was achieved by cloning the Kir6.2 gene in pCMV/mito/GFP vector and the proper trafficking to mitochondria was confirmed by colocalization studies and Western blot. An increased K+ influx to mitochondria overexpressing Kir6.2, as evidenced by using the K+-sensitive PBFI AM fluorescent dye, substantially improved the cellular viability after hypoxic stress, which was assessed by lactate dehydrogenase (LDH) release. In parallel, monitoring of mitochondrial Ca2+ during stress, via the specific indicator rhod-2, revealed a significant attenuation of Ca2+ accumulation in mitochondria overexpressing K+ channels. This effect was abolished in mitochondria expressing an inactive mutant of Kir6.2. Mitochondria expressing Kir6.2 K+ channel also exhibited a significant degree of depolarization that became even more pronounced during the stress. In conclusion, this study provides the first non-pharmacological evidence that an increased K+ influx to mitochondria protects against hypoxic stress by preventing detrimental effects of Ca2+ overload.
机译:线粒体内膜上的选择性K + 转运至少归因于三种不同的通道类型:ATP敏感,Ca 2 + 调节和电压依赖性K + 频道。利用其选择性调节剂的研究表明,这些通道的活性增加在细胞免受代谢应激的保护中起着重要作用。然而,这种作用的直接证据还很缺乏,最近关于几种通道开放剂和阻断剂缺乏特异性的发现也质疑线粒体K + 通道在维持细胞活力方面的实际作用。为了直接研究增强的线粒体K + 摄取在细胞保护中的作用,我们在HEK293和HL的线粒体中选择性表达内向整流的K + 通道Kir6.2。 -1个细胞。通过在pCMV / mito / GFP载体中克隆Kir6.2基因可以实现靶向Kir6.2的表达,并通过共定位研究和Western blot证实了向线粒体的正确运输。通过使用对K + 敏感的PBFI AM荧光染料证明,增加的K + 流入线粒体过表达Kir6.2,从而显着改善了低氧应激后的细胞活力,从而通过乳酸脱氢酶(LDH)释放评估。同时,通过特定的指示剂rhod-2监测线粒体Ca 2 + 在应激过程中,发现过表达K 的线粒体中Ca 2 + 积累明显减弱。 + 频道。表达线粒体Kir6.2的无活性突变体的线粒体已消除了这种作用。表达Kir6.2 K + 通道的线粒体也表现出显着的去极化程度,该去极化程度在胁迫期间变得更加明显。总之,这项研究提供了第一个非药理学证据,即增加的线粒体K + 内流通过防止Ca 2 + 超载的有害作用来保护免受低氧胁迫。

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