National Bureau of Fish Genetic Resources (ICAR), Canal Ring Road, P.O. Dilkusha, Lucknow, 226002, UP, India,
Mol Biol Rep. 2013 Oct;40(10):5805-15. doi: 10.1007/s11033-013-2685-1. Epub 2013 Sep 25.
The present study aimed at characterization of three HIF-α subunits, HIF-1α -2α and -3α from hypoxia-tolerant Clarias batrachus, as well as to elucidate their expression pattern under short and long-term hypoxic conditions and identification of biomarker candidate. The complete cDNAs of HIF-1α, -2α and -3α were 2,833, 4,270 and 3,256 bp in length, encoding 774, 818 and 628 amino acid residues, respectively. In C. batrachus, HIF-α subunits were structurally similar in DNA binding, dimerization, degradation and transcriptional activation domains, but differed in their oxygen-dependent degradation domains. Presence of c-Jun N-terminal kinase binding domain in HIF-α subunits was reported here for the first time in fish. In adult C. batrachus, three HIF-α mRNAs were detected in different tissues under normoxic conditions, however HIF-1α was highly expressed in all the tissues studied, in comparison to HIF-2α and -3α. Short-term hypoxia exposure caused significant increase in three HIF-α transcripts in brain, liver and head kidney, while after long-term hypoxia exposure, significant up-regulation of HIF-1α in spleen and -2α in muscle was observed and HIF-3α significantly down-regulated in head kidney. These observations suggest that the differential expression of HIF-α subunits in C. batrachus was hypoxic time period dependent and may play specialized roles in adaptive response to hypoxia. HIF-2α, with its highly elevated expression in muscle tissues, can be a robust biomarker candidate for exposure to hypoxic environment.
本研究旨在对三种耐低氧鱼类胡子鲶(Clarias batrachus)的 HIF-α 亚基(HIF-1α、-2α 和 -3α)进行鉴定,阐明它们在短期和长期低氧条件下的表达模式,并鉴定候选生物标志物。HIF-1α、-2α 和 -3α 的全长 cDNA 分别为 2833、4270 和 3256bp,编码 774、818 和 628 个氨基酸残基。在胡子鲶中,HIF-α 亚基在 DNA 结合、二聚化、降解和转录激活结构域结构相似,但在其氧依赖性降解结构域存在差异。本研究首次在鱼类中报道了 HIF-α 亚基存在 c-Jun N 端激酶结合域。在正常氧条件下,成年胡子鲶的三种 HIF-αmRNA 在不同组织中均有检测到,然而与 HIF-2α 和 -3α 相比,HIF-1α 在所有研究的组织中均高度表达。短期低氧暴露会导致脑、肝和头肾中三种 HIF-α 转录本显著增加,而长期低氧暴露后,脾中 HIF-1α 和肌肉中 HIF-2α 的表达显著上调,头肾中 HIF-3α 的表达显著下调。这些观察结果表明,胡子鲶 HIF-α 亚基的差异表达与低氧时间有关,可能在对低氧环境的适应反应中发挥特定作用。HIF-2α 在肌肉组织中的高表达,可作为暴露于低氧环境的一种强有力的生物标志物候选。