首页> 美国卫生研究院文献>Antioxidants Redox Signaling >Hydrogen Sulfide Inhibits Hypoxia- But Not Anoxia-Induced Hypoxia-Inducible Factor 1 Activation in a von Hippel-Lindau- and Mitochondria-Dependent Manner
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Hydrogen Sulfide Inhibits Hypoxia- But Not Anoxia-Induced Hypoxia-Inducible Factor 1 Activation in a von Hippel-Lindau- and Mitochondria-Dependent Manner

机译:硫化氢抑制缺氧但不是缺氧诱导的缺氧诱导因子1活化的von Hippel-Lindau和线粒体依赖性。

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摘要

>Aims: In addition to nitric oxide and carbon monoxide, hydrogen sulfide (H2S) is an endogenously synthesized gaseous molecule that acts as an important signaling molecule in the living body. Transcription factor hypoxia-inducible factor 1 (HIF-1) is known to respond to intracellular reduced oxygen (O2) availability, which is regulated by an elaborate balance between O2 supply and demand. However, the effect of H2S on HIF-1 activity under hypoxic conditions is largely unknown in mammalian cells. In this study, we tried to elucidate the effect of H2S on hypoxia-induced HIF-1 activation adopting cultured cells and mice. >Results: The H2S donors sodium hydrosulfide and sodium sulfide in pharmacological concentrations reversibly reduced cellular O2 consumption and inhibited hypoxia- but not anoxia-induced HIF-1α protein accumulation and expression of genes downstream of HIF-1 in established cell lines. H2S did not affect HIF-1 activation induced by the HIF-α hydroxylases inhibitors desferrioxamine or CoCl2. Experimental evidence adopting von Hippel-Lindau (VHL)- or mitochondria-deficient cells indicated that H2S did not affect neosynthesis of HIF-1α protein but destabilized HIF-1α in a VHL- and mitochondria-dependent manner. We also demonstrate that exogenously administered H2S inhibited HIF-1–dependent gene expression in mice. >Innovation: For the first time, we show that H2S modulates intracellular O2 homeostasis and regulates activation of HIF-1 and the subsequent gene expression induced by hypoxia by using an in vitro system with established cell lines and an in vivo system in mice. >Conclusions: We demonstrate that H2S inhibits hypoxia-induced HIF-1 activation in a VHL- and mitochondria-dependent manner. Antioxid. Redox Signal. 16, 203–216.
机译:>目标::除了一氧化氮和一氧化碳,硫化氢(H2S)是一种内源性合成的气态分子,在生物体内起着重要的信号分子的作用。已知转录因子低氧诱导因子1(HIF-1)对细胞内降低的氧气(O2)可用性有反应,氧气的可用性受氧气供需之间精心平衡的调节。但是,在低氧条件下,H2S对HIF-1活性的影响在哺乳动物细胞中尚不清楚。在这项研究中,我们试图通过培养的细胞和小鼠阐明H2S对缺氧诱导的HIF-1激活的影响。 >结果:既定浓度的H2S供体氢硫化钠和硫化钠可逆地减少细胞耗氧量,并抑制缺氧诱导的缺氧诱导的HIF-1α蛋白积累和HIF-1下游基因的表达细胞系。 H2S不会影响HIF-α羟化酶抑制剂去铁胺或CoCl2诱导的HIF-1活化。采用von Hippel-Lindau(VHL)或线粒体缺陷细胞的实验证据表明,H2S不会影响HIF-1α蛋白的新合成,但会以VHL和线粒体依赖性方式破坏HIF-1α的稳定性。我们还证明了外源性H2S抑制了小鼠中HIF-1依赖性基因的表达。 >创新:我们首次通过使用已建立的细胞系和体外培养的体外系统,证明H2S调节细胞内O2稳态并调节HIF-1的激活以及缺氧诱导的后续基因表达。小鼠体内的系统。 >结论:我们证明H2S以VHL和线粒体依赖性方式抑制缺氧诱导的HIF-1活化。抗氧化。氧化还原信号。 16,203–216。

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