首页> 外文期刊>American Journal of Physiology >Persisting mild hypothermia suppresses hypoxia-inducible factor-1alpha protein synthesis and hypoxia-inducible factor-1-mediated gene expression.
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Persisting mild hypothermia suppresses hypoxia-inducible factor-1alpha protein synthesis and hypoxia-inducible factor-1-mediated gene expression.

机译:持续的轻度低温会抑制低氧诱导因子1α蛋白的合成和低氧诱导因子1介导的基因表达。

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The transcription factor hypoxia-inducible factor-1 (HIF-1) plays an essential role in regulating gene expression in response to hypoxia-ischemia. Ischemia causes the tissue not only to be hypoxic but also to be hypothermic because of the hypoperfusion under certain circumstances. On the other hand, the induced hypothermia is one of the most common therapeutic modalities to extend tolerance to hypoxia. Although hypoxia elicits a variety of cellular and systemic responses at different organizational levels in the body, little is known about how hypoxia-induced responses are affected by low temperature. We examined the influence of mild hypothermic conditions (28-32 degrees C) on HIF-1 in both in vitro and in vivo settings. In vitro experiments adopting cultured cells elucidated that hypoxia-induced HIF-1 activation was resistant to 4-h exposure to the low temperature. In contrast, exposure to the low temperature as long as 24 h suppressed HIF-1 activation and the subsequent upregulation of HIF-1 target genes such as VEGF or GLUT-1. HIF-1alpha protein stability in the cell was not affected by hypothermic treatment. Furthermore, intracellular ATP content was reduced under 1% O(2) conditions but was not largely affected by hypothermic treatment. The evidence indicates that reduction of oxygen consumption is not largely involved in suppression of HIF-1. In addition, we demonstrated that HIF-1 DNA-binding activity and HIF-1-dependent gene expressions induced under 10% O(2) atmosphere in mouse brain were not influenced by treatment under 3-h hypothermic temperature but were inhibited under 5-h treatment. On the other hand, we indicated that warming ischemic legs of mice for 24 h preserved HIF-1 activity. In this report we describe for the first time that persisting low temperature significantly reduced HIF-1alpha neosynthesis under hypoxic conditions, leading to a decrease in gene expression for adaptation to hypoxia in both in vitro and in vivo settings.
机译:转录因子缺氧诱导因子-1(HIF-1)在调节缺氧缺血的基因表达中起重要作用。由于在某些情况下的灌注不足,局部缺血不仅会导致组织缺氧,还会导致体温过低。另一方面,诱导性体温过低是扩大对低氧耐受性的最常见治疗方式之一。尽管缺氧会在体内不同的组织水平上引起多种细胞和全身反应,但对于低温引起的缺氧反应如何影响知之甚少。我们检查了温和的低温条件(28-32摄氏度)在体外和体内对HIF-1的影响。采用培养细胞的体外实验表明,低氧诱导的HIF-1激活可抵抗4小时的低温暴露。相反,长时间暴露在低温下长达24小时抑制了HIF-1的激活和随后对HIF-1目标基因(例如VEGF或GLUT-1)的上调。细胞中的HIF-1alpha蛋白稳定性不受低温处理的影响。此外,在1%O(2)条件下,细胞内ATP含量降低,但低温处理的影响不大。有证据表明减少氧气消耗与抑制HIF-1没有很大关系。此外,我们证明了小鼠脑在10%O(2)气氛下诱导的HIF-1 DNA结合活性和HIF-1依赖性基因表达不受低温3 h的处理的影响,但在5-h下受到抑制h治疗。另一方面,我们表明24小时的小鼠缺血腿升温可保持HIF-1活性。在本报告中,我们首次描述了持续低温在缺氧条件下显着降低了HIF-1α的新合成,从而导致在体外和体内环境中都适应低氧的基因表达下降。

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