Post-Subfunctionalization Functions of HIF-1αA and HIF-1αB in Cyprinid Fish: Fine-Tuning Mitophagy and Apoptosis Regulation Under Hypoxic Stress.

IF 2.1 3区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Molecular Evolution Pub Date : 2023-12-01 Epub Date: 2023-11-04 DOI:10.1007/s00239-023-10138-9
Wei Chi, Juanjuan Fu, Chris J Martyniuk, Jiangyong Wang, Libin Zhou
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Abstract

Hypoxia-inducible factor 1 (HIF-1) is a crucial transcriptional factor that can restore oxygen balance in the body by regulating multiple vital activities. Two HIF-1α copies were retained in cyprinid fish after experiencing a teleost-specific genome duplication. How the "divergent collaboration" of HIF-1αA and HIF-1αB proceeds in regulating mitophagy and apoptosis under hypoxic stress in cells of cyprinid fish remains unclear. In this study, zebrafish HIF-1αA/B expression plasmids were constructed and transfected into the epithelioma papulosum cyprini cells and were subjected to hypoxic stress. HIF-1αA induced apoptosis through promoting ROS generation and mitochondrial depolarization when cells were subjected to oxygen deficiency. Conversely, HIF-1αB was primarily responsible for mitophagy induction, prompting ATP production to mitigate apoptosis. HIF-1αA did not induce mitophagy in the mitochondria and lysosomes co-localization assay but it was involved in the regulation of different mitophagy pathways. Over-expression of HIF-1αA increased the expression of bnip3, fundc1, Beclin1, and foxo3, suggesting it has a dual role in mitochondrial autophagy and cell death. Each duplicated copy also experienced functional divergence and target shifting in the regulation of complexes in the mitochondrial electron transport chain (ETC). Our findings shed light on the post-subfunctionalization function of HIF-1αA and HIF-1αB in zebrafish to fine-tune regulation of mitophagy and apoptosis following hypoxia exposure.

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HIF-1αA和HIF-1αB在鲤鱼中的亚功能化后功能:低氧胁迫下线粒体自噬和细胞凋亡的微调调节。
缺氧诱导因子1(HIF-1)是一种重要的转录因子,可以通过调节多种生命活动来恢复体内的氧平衡。在经历硬骨鱼特异性基因组复制后,两个HIF-1α拷贝在塞浦路斯鱼中被保留。HIF-1αA和HIF-1αB的“不同协作”如何在低氧应激下调节塞浦路斯鱼细胞的线粒体自噬和凋亡仍不清楚。在本研究中,构建了斑马鱼HIF-1αA/B表达质粒,并将其转染到丘疹上皮瘤细胞中,并对其进行缺氧应激。当细胞缺氧时,HIF-1αA通过促进ROS的产生和线粒体去极化诱导细胞凋亡。相反,HIF-1αB主要负责线粒体自噬诱导,促使ATP产生以减轻细胞凋亡。HIF-1αA在线粒体和溶酶体共定位试验中不诱导线粒体自噬,但参与不同线粒体自噬途径的调节。HIF-1αA的过度表达增加了bnip3、fundc1、Beclin1和foxo3的表达,表明其在线粒体自噬和细胞死亡中具有双重作用。每个复制拷贝在线粒体电子传输链(ETC)中的复合物调节中也经历了功能分化和靶点转移。我们的研究结果揭示了斑马鱼HIF-1αA和HIF-1αB亚功能化后的功能,以微调缺氧暴露后线粒体自噬和细胞凋亡的调节。
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来源期刊
Journal of Molecular Evolution
Journal of Molecular Evolution 生物-进化生物学
CiteScore
5.50
自引率
2.60%
发文量
36
审稿时长
3 months
期刊介绍: Journal of Molecular Evolution covers experimental, computational, and theoretical work aimed at deciphering features of molecular evolution and the processes bearing on these features, from the initial formation of macromolecular systems through their evolution at the molecular level, the co-evolution of their functions in cellular and organismal systems, and their influence on organismal adaptation, speciation, and ecology. Topics addressed include the evolution of informational macromolecules and their relation to more complex levels of biological organization, including populations and taxa, as well as the molecular basis for the evolution of ecological interactions of species and the use of molecular data to infer fundamental processes in evolutionary ecology. This coverage accommodates such subfields as new genome sequences, comparative structural and functional genomics, population genetics, the molecular evolution of development, the evolution of gene regulation and gene interaction networks, and in vitro evolution of DNA and RNA, molecular evolutionary ecology, and the development of methods and theory that enable molecular evolutionary inference, including but not limited to, phylogenetic methods.
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