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Comparative iTRAQ-Based Quantitative Proteomic Analysis of Pelteobagrus vachelli Liver under Acute Hypoxia: Implications in Metabolic Responses

机译:急性缺氧下Pelteobagrus vachelli肝脏的基于比较的Itraq的定量蛋白质组学分析:代谢反应的影响

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摘要

More and more frequently these days, aquatic ecosystems are being stressed by nutrient enrichment, pollutants, and global warming, leading to a serious depletion in oxygen concentrations. Although a sudden, significant lack of oxygen will result in mortality, fishes can have an acute behavior (e.g., an increase in breathing rate, reduction in swimming frequency) and physiology responses (e.g., increase in oxygen delivery, and reduction in oxygen consumption) to hypoxia, which allows them to maintain normal physical activity. Therefore, in order to shed further light on the molecular mechanisms of hypoxia adaptation in fishes, the authors conduct comparative quantitative proteomics on Pelteobagrus vachelli livers using iTRAQ. The research identifies 511 acute hypoxia-responsive proteins in P. vachelli. Furthermore, comparison of several of the diverse key pathways studied (e.g., peroxisome pathway, PPAR signaling pathway, lipid metabolism, glycolysis/gluco-neogenesis, and amino acid metabolism) help to articulate the different mechanisms involved in the hypoxia response of P. vachelli. Data from proteome analysis shows that P. vachelli can have an acute reaction to hypoxia, including detoxification of metabolic by-products and oxidative stress in light of continued metabolic activity (e.g., peroxisomes), an activation in the capacity of catabolism to get more energy (e.g., lipolysis and amino acid catabolism), a depression in the capacity of biosynthesis to reduce energy consumption (e.g., biosynthesis of amino acids and lipids), and a shift in the aerobic and anaerobic contributions to total metabolism. The observed hypoxia-related changes in the liver proteome of the fish can help to understand or can be related to the hypoxia-related response that takes place in similar conditions in the liver or other proteomes of mammals.
机译:这些天越来越频繁地,水生生态系统受到营养丰富,污染物和全球变暖的强调,导致氧气浓度严重耗尽。虽然突然缺乏氧气会导致死亡率,但是鱼类可以具有急性行为(例如,呼吸速率的增加,游泳频率降低)和生理反应(例如,氧气输送增加,降低氧气消耗)缺氧,这使他们能够维持正常的身体活动。因此,为了进一步阐明鱼类缺氧适应的分子机制,作者使用ITRAQ对比较定量蛋白质组学进行Pelteobagrus vachelli肝脏。该研究鉴定了P.Vachelli中的511个急性缺氧响应蛋白。此外,研究了几种不同关键途径的比较(例如,过氧化物血清途径,PPAR信号传导途径,脂质代谢,糖酵解/葡糖基因和氨基酸代谢)有助于阐明缺氧抗缺氧响应的不同机制。来自蛋白质组分析的数据表明,vachelli可以对缺氧具有急性反应,包括鉴于逐行代谢活性(例如过氧缺体)的代谢性副产物和氧化应激的溶解,以获得更多能量的激活。 (例如,脂解和氨基酸分解代谢),生物合成能力的抑郁症,以减少能量消耗(例如,氨基酸和脂质的生物合成),以及对总代谢的好氧和厌氧贡献的转变。观察到的鱼类肝脏蛋白质组的缺氧相关变化可以有助于理解或可能与缺氧相关的反应有关,该反应发生在肝脏或哺乳动物其他蛋白质组中的类似条件下。

著录项

  • 来源
    《Proteomics》 |2017年第18期|共10页
  • 作者单位

    Nanjing Normal Univ Coll Life Sci Key Lab Biodivers &

    Biotechnol Jiangsu Prov Nanjing Jiangsu;

    Nanjing Normal Univ Coll Life Sci Key Lab Biodivers &

    Biotechnol Jiangsu Prov Nanjing Jiangsu;

    Nanjing Normal Univ Coll Life Sci Key Lab Biodivers &

    Biotechnol Jiangsu Prov Nanjing Jiangsu;

    Nanjing Normal Univ Coll Life Sci Key Lab Biodivers &

    Biotechnol Jiangsu Prov Nanjing Jiangsu;

    Nanjing Normal Univ Coll Life Sci Key Lab Biodivers &

    Biotechnol Jiangsu Prov Nanjing Jiangsu;

    Nanjing Normal Univ Coll Life Sci Key Lab Biodivers &

    Biotechnol Jiangsu Prov Nanjing Jiangsu;

    Nanjing Normal Univ Coll Life Sci Key Lab Biodivers &

    Biotechnol Jiangsu Prov Nanjing Jiangsu;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

    Environmental stress; Fish physiology; Hypoxia; Itraq; Pelteobagrus vachelli;

    机译:环境压力;鱼生理学;缺氧;ITRAQ;PELTEOBAGRUS VACHELLI;

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