Faculty of Physics, Department of Macromolecular Physics, Adam Mickiewicz University, Uniwersytetu Poznańskiego, Poznań, Poland.
Faculty of Biology, Department of Bioenergetics, Adam Mickiewicz University, Uniwersytetu Poznańskiego, Poznań, Poland.
PLoS One. 2021 Aug 23;16(8):e0244260. doi: 10.1371/journal.pone.0244260. eCollection 2021.
Mitochondrial alternative oxidase (AOX) is predicted to be present in mitochondria of several invertebrate taxa including tardigrades. Independently of the reason concerning the enzyme occurrence in animal mitochondria, expression of AOX in human mitochondria is regarded as a potential therapeutic strategy. Till now, relevant data were obtained due to heterologous AOX expression in cells and animals without natively expressed AOX. Application of animals natively expressing AOX could importantly contribute to the research. Thus, we decided to investigate AOX activity in intact specimens of the tardigrade Hypsibius exemplaris. We observed that H. exemplaris specimens' tolerance to the blockage of the mitochondrial respiratory chain (MRC) cytochrome pathway was diminished in the presence of AOX inhibitor and the inhibitor-sensitive respiration enabled the tardigrade respiration under condition of the blockage. Importantly, these observations correlated with relevant changes of the mitochondrial inner membrane potential (Δψ) detected in intact animals. Moreover, detection of AOX at protein level required the MRC cytochrome pathway blockage. Overall, we demonstrated that AOX activity in tardigrades can be monitored by the animals' behavior observation as well as by measurement of intact specimens' whole-body respiration and Δψ. Furthermore, it is also possible to check the impact of the MRC cytochrome pathway blockage on AOX level as well as AOX inhibition in the absence of the blockage on animal functioning. Thus, H. exemplaris could be consider as a whole-animal model suitable to study AOX.
线粒体替代氧化酶(AOX)被预测存在于包括缓步动物在内的几个无脊椎动物类群的线粒体中。独立于该酶在动物线粒体中存在的原因,人线粒体中 AOX 的表达被认为是一种潜在的治疗策略。到目前为止,相关数据是通过在没有天然表达 AOX 的细胞和动物中异源表达 AOX 获得的。应用天然表达 AOX 的动物可以为研究做出重要贡献。因此,我们决定研究缓步动物 Hypsibius exemplaris 完整标本中的 AOX 活性。我们观察到,在 AOX 抑制剂存在的情况下,H. exemplaris 标本对线粒体呼吸链(MRC)细胞色素途径阻断的耐受性降低,并且抑制剂敏感呼吸使缓步动物在阻断条件下进行呼吸。重要的是,这些观察结果与在完整动物中检测到的相关线粒体内膜电位(Δψ)变化相关。此外,在蛋白质水平上检测 AOX 需要阻断 MRC 细胞色素途径。总的来说,我们证明了可以通过观察动物的行为、测量完整标本的全身呼吸和 Δψ 来监测缓步动物 AOX 的活性。此外,还可以在不阻断动物功能的情况下检查 MRC 细胞色素途径阻断对 AOX 水平以及 AOX 抑制的影响。因此,H. exemplaris 可以被视为适合研究 AOX 的整体动物模型。