杂交河鲀抗氧化相关基因Nrf2SIRT1OXR1的分子特征和功能分析

MOLECULAR CHARACTERISTICS AND FUNCTIONAL ANALYSIS OF ANTIOXIDANT-RELATED GENES NRF2, SIRT1, AND OXR1 IN HYBRID PUFFERFISH (TAKIFUGU RUBRIPES × TAKIFUGU OBSCURUS)

  • 摘要: 为探讨杂交河鲀(Takifugu rubripes×Takifugu obscurus)对氧化应激的反应机理, 文章克隆了杂交河鲀抗氧化的关键基因Nrf2SIRT1OXR1的cDNA序列, 并进行了基因的分子特征与功能分析。利用荧光定量PCR方法检测了3个基因在心、皮肤、肝、脑、脾、眼、肾和肌肉中的分布情况, 结果显示Nrf2在肝、脾和肌肉中高表达, SIRT1在心、肝、脑、脾等多个组织中高表达, OXR1则在肝、脑和眼中高表达。蛋白结构预测分析发现, Nrf2的Neh1(Nrf2-ECH homology 1)功能域保守, 推测其功能与其他物种相似。进一步通过Nrf2的真核表达实验发现Nrf2的转染可以引起FHM(Fathead minnow cell)细胞中ho-1基因的上调表达, 并在氧化应激条件下提高细胞存活率, 降低细胞活性氧含量, 提示Nrf2具有一定的抗氧化功能。研究结果增加了对河鲀抗氧化基因的认识, 也有利于深入了解河鲀面对氧化应激的生理生化机制。

     

    Abstract: : Takifugu, commonly known as pufferfish, belongs to the family Tetraodontidae within the order Tetraodontiformes and is a warm-water marine benthic fish. This species is distributed along the coasts of China and in the western North Pacific. While primarily found in marine environments, some populations also inhabit freshwater. The fish is renowned for its rich, succulent skin, which contains spines and melts in the mouth, offering an aromatic and exquisite flavor, especially in wild specimens. However, with the increasing demand and production of pufferfish, intensive aquaculture practices have been associated with oxidative stress, leading to economic losses. To investigate the response mechanisms of hybrid pufferfish (Takifugu rubripes × Takifugu obscurus) to oxidative stress, this study cloned the cDNA sequences of key antioxidant genes Nrf2, SIRT1, and OXR1, followed by molecular characterization and functional analysis of these genes. Quantitative real-time PCR was employed to assess the tissue distribution of these genes. Results indicated that Nrf2 was highly expressed in the liver, spleen, and muscle, while SIRT1 exhibited high expression levels in the heart, liver, brain, and spleen. OXR1 was predominantly expressed in the liver, brain, and eyes. Structural prediction analyses of the Nrf2 protein revealed a conserved Neh1 functional domain, suggesting its function may be similar across species. Further investigations using eukaryotic expression assays demonstrated that the transfection of Nrf2 could induce the upregulation of the ho-1 gene in cells. Under oxidative stress conditions, this led to enhanced cell viability and a reduction in reactive oxygen species levels, indicating that Nrf2 possesses antioxidant functions. The findings of this study enhance the understanding of antioxidant genes in pufferfish and contribute to the elucidation of the physiological and biochemical mechanisms employed by these fish in response to oxidative stress.

     

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