首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >Oxygen-dependent distinct expression of hif-1 alpha gene in aerobic and anaerobic tissues of the Amazon Oscar, Astronotus crassipinnis
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Oxygen-dependent distinct expression of hif-1 alpha gene in aerobic and anaerobic tissues of the Amazon Oscar, Astronotus crassipinnis

机译:Astronotus crassipinnis的有氧和厌氧组织中HIF-1α基因HIF-1α基因的氧依赖性不同的表达

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The aquatic habitats of the Amazon basin present dramatic variation of oxygen level, and, to survive such changes, many aquatic animals developed biochemical and physiological adaptations. The advanced teleost Astronotus crassipinnis (Perciformes) is a fish tolerant to hypoxia and known to endure such naturally variable environments. Hypoxia-Inducible factor-1 alpha (hif-1 alpha) is among the most important and studied genes related to hypoxia-tolerance, maintaining regular cellular function and controlling anaerobic metabolism. In the present work, we studied hif-1 alpha expression and related it to changes in metabolic pathways of Astronotus crassipinnis exposed to 1, 3 and 5 h of hypoxia, followed by 3 h of recovery. The results show that A. crassipinnis depresses aerobic metabolic under hypoxia, with a decrease in glycolysis and oxidative enzyme activities, and increases its anaerobic metabolism with an increase in LDH activity coupled with a decrease in oxygen consumption, which indicates an increase in anaerobic capacity. In addition, the animal differentially regulates hif-1 alpha gene in each tissue studied, with a positive relationship to its metabolic profile, suggesting that hif-1 alpha might be one of the most important induction factors that regulate hypoxia tolerance in this species.
机译:亚马逊盆地的水生栖息地具有氧气水平的显着变化,并在这种变化中生存,许多水生动物发育了生物化学和生理适应。先进的Textost Astronotus crassipinnis(Perciformes)是对缺氧的一种鱼类,并且已知忍受这种自然可变环境。缺氧诱导因子-1α(HIF-1α)是与缺氧耐受,维持常规细胞功能和控制厌氧代谢相关的最重要和研究的基因中。在目前的工作中,我们研究了HIF-1α表达,并将其与暴露于缺氧1,3和5小时的Astronotus crassipinnis的代谢途径的变化,然后恢复3小时。结果表明,A.Crassipinnis在缺氧下抑制有氧代谢,随着糖酵解和氧化酶活性的降低,并增加其厌氧代谢随着氧气消耗降低而加速的LDH活性增加,这表明厌氧能力增加。此外,动物差异地调节所研究的每个组织中的HIF-1α基因,其与其代谢概况正相关,表明HIF-1α可能是调节该物种中缺氧耐受的最重要的诱导因子之一。

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