Key Laboratory of Applied Marine Biotechnology by the Ministry of Education, School of Marine Sciences, Ningbo University, Ningbo, Zhejiang 315211, China.
Key Laboratory of Applied Marine Biotechnology by the Ministry of Education, School of Marine Sciences, Ningbo University, Ningbo, Zhejiang 315211, China. E-mail:
Zool Res. 2021 Nov 18;42(6):746-760. doi: 10.24272/j.issn.2095-8137.2021.224.
Oxygen is an essential molecule for animal respiration, growth, and survival. Unlike in terrestrial environments, contamination and climate change have led to the frequent occurrence of hypoxia in aquatic environments, thus impacting aquatic animal survival. However, the adaptative mechanisms underlying fish responses to environmental hypoxia remain largely unknown. Here, we used large yellow croaker ( ) and large yellow croaker fry (LYCF) cells to investigate the roles of the Hif-1α/Hsf1/Hsp70 signaling pathway in the regulation of cellular redox homeostasis, and apoptosis. We confirmed that hypoxia induced the expression of Hif-1α, Hsf1, and Hsp70 and . Genetic knockdown/overexpression indicated that Hsp70 was required for maintaining redox homeostasis and resisting oxidative stress in LYCF cells under hypoxic stress. Hsp70 inhibited caspase-dependent intrinsic apoptosis by maintaining normal mitochondrial membrane potential, enhancing Bcl-2 mRNA and protein expression, inhibiting and mRNA expression, and suppressing caspase-3 and caspase-9 activation. Hsp70 suppressed caspase-independent intrinsic apoptosis by inhibiting nuclear translocation of apoptosis-inducing factor (AIF) and disturbed extrinsic apoptosis by inactivating caspase-8. Genetic knockdown/overexpression of and dual-luciferase reporter assay indicated that Hif-1α activated the DNA promoter and enhanced mRNA transcription. Hsf1 enhanced mRNA transcription in a similar manner. In summary, the Hif-1α/Hsf1/Hsp70 signaling pathway plays an important role in regulating redox homeostasis and anti-apoptosis in under hypoxic stress.
氧气是动物呼吸、生长和生存所必需的分子。与陆地环境不同,污染和气候变化导致水生环境中经常发生缺氧,从而影响水生动物的生存。然而,鱼类对环境缺氧的适应机制在很大程度上仍然未知。在这里,我们使用大黄鱼()和大黄鱼鱼苗(LYCF)细胞来研究 Hif-1α/Hsf1/Hsp70 信号通路在调节细胞氧化还原稳态和细胞凋亡中的作用。我们证实,缺氧诱导 Hif-1α、Hsf1 和 Hsp70 的表达,并在缺氧应激下通过维持氧化还原稳态和抵抗氧化应激,需要 Hsp70 来维持 LYCF 细胞的氧化还原稳态。Hsp70 通过维持正常的线粒体膜电位、增强 Bcl-2 mRNA 和蛋白表达、抑制和 mRNA 表达以及抑制 caspase-3 和 caspase-9 的激活来抑制 caspase 依赖性内在凋亡。Hsp70 通过抑制凋亡诱导因子(AIF)的核易位抑制 caspase 非依赖性内在凋亡,并通过失活 caspase-8 干扰外在凋亡。的基因敲低/过表达和双荧光素酶报告基因检测表明,Hif-1α 激活 DNA 启动子并增强 mRNA 转录。Hsf1 以类似的方式增强 mRNA 转录。总之,Hif-1α/Hsf1/Hsp70 信号通路在调节缺氧应激下大黄鱼的氧化还原稳态和抗细胞凋亡中发挥重要作用。