首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Hypoxic stress-induced changes in adrenergic function: role of HIF1 alpha.
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Hypoxic stress-induced changes in adrenergic function: role of HIF1 alpha.

机译:低氧应激引起的肾上腺素功能改变:HIF1 alpha的作用。

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摘要

Sustaining epinephrine-elicited behavioral and physiological responses during stress requires replenishment of epinephrine stores. Egr-1 and Sp1 contribute by stimulating the gene encoding the epinephrine-synthesizing enzyme, phenylethanolamine N-methyltransferase (PNMT), as shown for immobilization stress in rats in adrenal medulla and for hypoxic stress in adrenal medulla-derived PC12 cells. Hypoxia (5% O(2)) also activates hypoxia inducible factor (HIF) 1alpha, increasing mRNA, nuclear protein and nuclear protein/hypoxia response element binding complex formation. Hypoxia and HIF1alpha over-expression also elevate PNMT promoter-driven luciferase activity in PC12 cells. Hypoxia may be limiting as HIF1alpha over-expression increases luciferase expression to no greater extent than oxygen reduction alone. HIF1alpha inducers CoCl(2) or deferoxamine elevate luciferase as well. PC12 cells harboring a HIF1alpha expression construct show markedly higher levels of Egr-1 and Sp1 mRNA and nuclear protein and PNMT mRNA and cytoplasmic protein. Inactivation of Egr-1 and Sp1 binding sites in the proximal -893 bp of PNMT promoter precludes HIF1alpha stimulation while a potential hypoxia response element (-282 bp) in the promoter shows weak HIF1alpha affinity at best. These findings are the first to suggest that hypoxia activates the proximal rat PNMT promoter primarily via HIF1alpha induction of Egr-1 and Sp1 rather than by co-activation by Egr-1, Sp1 and HIF1alpha. In addition, the rise in HIF1alpha protein leading to Egr-1 and Sp1 stimulation of PNMT appears to include HIF1alpha gene activation rather than simply prevention of HIF1alpha proteolytic degradation.
机译:在压力下维持肾上腺素引起的行为和生理反应需要补充肾上腺素储存。 Egr-1和Sp1通过刺激编码肾上腺素合成酶的基因苯乙醇胺N-甲基转移酶(PNMT)发挥作用,如在大鼠肾上腺髓质中的固定应激和对肾上腺髓质衍生的PC12细胞中的低氧应激所示。低氧(5%O(2))还激活低氧诱导因子(HIF)1alpha,增加mRNA,核蛋白和核蛋白/低氧反应元件结合复合物的形成。缺氧和HIF1alpha的过表达也提高了PC12细胞中PNMT启动子驱动的萤光素酶活性。缺氧可能会受到限制,因为HIF1alpha过度表达会增加萤光素酶表达的幅度不超过单独的氧气减少幅度。 HIF1alpha诱导剂CoCl(2)或去铁胺提高荧光素酶。带有HIF1alpha表达构建体的PC12细胞显示Egr-1和Sp1 mRNA和核蛋白以及PNMT mRNA和胞质蛋白的水平明显升高。 PNMT启动子的近端-893 bp中Egr-1和Sp1结合位点的失活排除了HIF1alpha刺激,而启动子中的潜在缺氧反应元件(-282 bp)最多显示出弱的HIF1alpha亲和力。这些发现是第一个表明缺氧主要通过EIF-1和Sp1的HIF1alpha诱导而不是通过Egr-1,Sp1和HIF1alpha的共激活来激活近端大鼠PNMT启动子的方法。此外,导致EMT-1和Sp1刺激PNMT的HIF1alpha蛋白的增加似乎包括HIF1alpha基因激活,而不是简单地防止HIF1alpha蛋白水解降解。

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