State Key Laboratory of Integrated Management of Pest Insects and Rodents, Institute of Zoology, Chinese Academy of Sciences, Beijing, China.
Beijing Institutes of Life Science, Chinese Academy of Sciences, Beijing, China.
Elife. 2022 Aug 30;11:e74554. doi: 10.7554/eLife.74554.
The hypoxia inducible factor (Hif) pathway is functionally conserved across metazoans in modulating cellular adaptations to hypoxia. However, the functions of this pathway under aerobic physiological conditions are rarely investigated. Here, we show that Hif-1α2, a locust Hif-1α isoform, does not induce canonical hypoxic responses but functions as a specific regulator of locust flight, which is a completely aerobic physiological process. Two Hif-1α splice variants were identified in locusts, a ubiquitously expressed Hif-1α1 and a muscle-predominantly expressed Hif-1α2. Hif-1α1 that induces typical hypoxic responses upon hypoxia exposure remains inactive during flight. By contrast, the expression of Hif-1α2, which lacks C-terminal transactivation domain, is less sensitive to oxygen tension but induced extensively by flying. Hif-1α2 regulates physiological processes involved in glucose metabolism and antioxidation during flight and sustains flight endurance by maintaining redox homeostasis through upregulating the production of a reactive oxygen species (ROS) quencher, DJ-1. Overall, this study reveals a novel Hif-mediated mechanism underlying prolonged aerobic physiological activity.
缺氧诱导因子 (Hif) 通路在调节细胞对缺氧的适应方面在后生动物中具有功能保守性。然而,很少研究该途径在有氧生理条件下的功能。在这里,我们表明,蝗虫 Hif-1α 的一种同工型 Hif-1α2 不会诱导典型的缺氧反应,而是作为蝗虫飞行的特定调节剂发挥作用,而飞行是一个完全有氧的生理过程。在蝗虫中鉴定出两种 Hif-1α 剪接变体,一种广泛表达的 Hif-1α1 和一种主要在肌肉中表达的 Hif-1α2。在缺氧暴露下诱导典型缺氧反应的 Hif-1α1 在飞行过程中保持不活跃。相比之下,缺乏 C 端反式激活结构域的 Hif-1α2 对氧张力的敏感性较低,但在飞行时广泛诱导。Hif-1α2 通过上调活性氧 (ROS) 清除剂 DJ-1 的产生来调节飞行过程中涉及葡萄糖代谢和抗氧化的生理过程,并通过维持氧化还原稳态来维持飞行耐力。总的来说,这项研究揭示了一个新的 Hif 介导的机制,该机制在延长有氧生理活动中起作用。