Xu Zhan-Ning, Zheng Guo-Dong, Wu Cheng-Bin, Jiang Xia-Yun, Zou Shu-Ming
Key Laboratory of Freshwater Aquatic Genetic Resources, Ministry of Agriculture, Shanghai Ocean University, Huchenghuan Road 999, Shanghai, 201306, China.
Genetics and Breeding Center for Blunt Snout Bream, Ministry of Agriculture, Shanghai Ocean University, Huchenghuan Road 999, Shanghai, 201306, China.
Fish Physiol Biochem. 2019 Apr;45(2):743-752. doi: 10.1007/s10695-018-0599-5. Epub 2019 Feb 13.
Two-dimensional gel electrophoresis (2-DE) was combined with liquid chromatography-mass spectrometry (LC-MS/MS) to identify the differential proteomics of grass carp gills after hypoxic stress to better understand the roles of proteins in the hypoxic response and to explore the possible molecular mechanisms. Protein spots were obtained from a hypoxia-stressed group (372 ± 11 individuals) and a control group (406 ± 14 individuals) using the lmage Master 2D Platinum 7.0 analysis software. Fifteen protein spots were expressed differentially in the hypoxia-stressed group and varied significantly after exposure to the hypoxic conditions. In addition, these differential proteins were identified by mass spectrometry and then searched in a database. We found the expression and upregulation of the toll-like receptor 4, ephx1 protein, isocitrate dehydrogenase, L-lactate dehydrogenase, GTP-binding nuclear protein Ran, and glyceraldehyde-3-phosphate dehydrogenase; however, the expression of the keratin type II cytoskeletal 8, type I cytokeratin, ARP3 actin-related protein 3 homolog, thyroid hormone receptor alpha-A, ATP synthase subunit beta, citrate synthase, tropomyosin 2, and tropomyosin 3 were downregulated. Six proteins were found in the hypoxia-inducible factor-1 (HIF-1) signaling pathway. We concluded that the grass carp gill is involved in response processes, including energy generation, metabolic processes, cellular structure, antioxidation, immunity, and signal transduction, to hypoxic stress. To our knowledge, this is the first study to conduct a proteomics analysis of expressed proteins in the gills of grass carp, and this study will help increase the understanding of the molecular mechanisms involved in hypoxic stress responses in fish at the protein level.
二维凝胶电泳(2-DE)与液相色谱-质谱联用(LC-MS/MS)相结合,以鉴定草鱼鳃在缺氧应激后的差异蛋白质组学,从而更好地了解蛋白质在缺氧反应中的作用,并探索可能的分子机制。使用Image Master 2D Platinum 7.0分析软件,从缺氧应激组(372±11只个体)和对照组(406±14只个体)中获取蛋白质斑点。在缺氧应激组中有15个蛋白质斑点表达存在差异,在暴露于缺氧条件后有显著变化。此外,通过质谱鉴定这些差异蛋白质,然后在数据库中进行搜索。我们发现Toll样受体4、环氧化物水解酶1蛋白、异柠檬酸脱氢酶、L-乳酸脱氢酶、GTP结合核蛋白Ran和甘油醛-3-磷酸脱氢酶的表达上调;然而,角蛋白II型细胞骨架8、I型细胞角蛋白、肌动蛋白相关蛋白3同源物ARP3、甲状腺激素受体α-A、ATP合酶β亚基、柠檬酸合酶、原肌球蛋白2和原肌球蛋白3的表达下调。在缺氧诱导因子-1(HIF-1)信号通路中发现了6种蛋白质。我们得出结论,草鱼鳃参与了对缺氧应激的反应过程,包括能量产生、代谢过程、细胞结构、抗氧化、免疫和信号转导。据我们所知,这是首次对草鱼鳃中表达的蛋白质进行蛋白质组学分析的研究,该研究将有助于在蛋白质水平上增进对鱼类缺氧应激反应所涉及分子机制的理解。