首页> 美国卫生研究院文献>other >Chronic Mild Hypoxia Protects Heart-derived H9c2 Cells against Acute Hypoxia/Reoxygenation by Regulating Expression of the SUR2A Subunit of the ATP-sensitive K+ Channel
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Chronic Mild Hypoxia Protects Heart-derived H9c2 Cells against Acute Hypoxia/Reoxygenation by Regulating Expression of the SUR2A Subunit of the ATP-sensitive K+ Channel

机译:慢性轻度缺氧可通过调节ATP敏感K +通道SUR2A亚基的表达来保护心脏H9c2细胞免受急性缺氧/复氧

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摘要

Chronic exposure to lower oxygen tension may increase cellular resistance to different types of acute metabolic stress. Here, we show that 24-h-long exposure to slightly decreased oxygen tension (partial pressure of oxygen (PO2) of 100 mm Hg instead of normal 144 mm Hg) confers resistance against acute hypoxia/reoxygenation-induced Ca2+ loading in heart-derived H9c2 cells. The number of ATP-sensitive K+ (KATP) channels were increased in cells exposed to PO2 = 100 mm Hg relative to cells exposed to PO2 = 144 mm Hg. This was due to an increase in transcription of SUR2A, a KATP channel regulatory subunit, but not Kir6.2, a KATP channel pore-forming subunit. PO2 = 100 mm Hg also increased the SUR2 gene promoter activity. Experiments with cells overexpressing wild type of hypoxia-inducible factor (HIF)-1α and dominant negative HIF-1β suggested that the HIF-1-signaling pathway did not participate in observed PO2-mediated regulation of SUR2A expression. On the other hand, NADH inhibited the effect of PO2 = 100 mm Hg but not the effect of PO2 = 20 mm Hg. LY 294002 and PD 184 352 prevented PO2-mediated regulation of KATP channels, whereas rapamycin was without any effect. HMR 1098 inhibited the cytoprotective effect of PO2 = 100 mm Hg, and a decrease of PO2 from 144 to 100 mm Hg did not change the expression of any other gene, including those involved in stress and hypoxic response, as revealed by Affymetrix high density oligonucleotide arrays. We conclude that slight hypoxia activates HIF-1α-independent signaling cascade leading to an increase in SUR2A protein, a higher density of KATP channels, and a cellular phenotype more resistant to acute metabolic stress.
机译:长期暴露于较低的氧气压力下可能会增加细胞对不同类型的急性代谢应激的抵抗力。在这里,我们显示24小时长时间暴露于略微降低的氧气张力(100 mm Hg的氧气分压(PO2),而不是正常的144 mm Hg)赋予对急性缺氧/复氧诱导的Ca 2+的抵抗力加载到心脏来源的H9c2细胞中。相对于暴露于PO2 = 144 mm Hg的细胞,暴露于PO2 = 100 mm Hg的细胞中ATP敏感性K + (KATP)通道的数量增加。这是由于增加了SUR2A(一种KATP通道调节亚基)而不是Kir6.2(一种KATP通道成孔亚基)的转录。 PO2 = 100 mm Hg也可提高SUR2基因启动子活性。用过表达野生型缺氧诱导因子(HIF)-1α和显性负性HIF-1β的细胞进行的实验表明,HIF-1信号通路不参与PO2介导的SUR2A表达调控。另一方面,NADH抑制了PO2 = 100 mm Hg的作用,但没有抑制PO2 = 20 mm Hg的作用。 LY 294002和PD 184 352阻止了PO2介导的KATP通道调节,而雷帕霉素则没有任何作用。 HMR 1098抑制了PO2 = 100 mm Hg的细胞保护作用,PO2从144降至100 mm Hg并没有改变任何其他基因的表达,包括那些与压力和低氧反应有关的基因,如Affymetrix高密度寡核苷酸所揭示的那样数组。我们得出的结论是,轻微的缺氧激活了HIF-1α独立的信号传导级联,导致SUR2A蛋白增加,KATP通道密度更高以及对急性代谢压力更具抵抗力的细胞表型。

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