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首页> 外文期刊>Metallomics. integrated biometal science >Biochemical characterization of the selenoproteome in Gallus gallus via bioinformatics analysis: structure-function relationships and interactions of binding molecules
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Biochemical characterization of the selenoproteome in Gallus gallus via bioinformatics analysis: structure-function relationships and interactions of binding molecules

机译:通过生物信息学分析的综合肠蛋白的生化表征:结构 - 函数关系与结合分子的相互作用

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摘要

Knowledge about mammalian selenoproteins is increasing. However, the selenoproteome of birds remains considerably less understood, especially concerning its biochemical characterization, structure-function relationships and the interactions of binding molecules. In this work, the SECIS elements, subcellular localization, protein domains and interactions of binding molecules of the selenoproteome in Gallus gallus were analyzed using bioinformatics tools. We carried out comprehensive analyses of the structure-function relationships and interactions of the binding molecules of selenoproteins, to provide biochemical characterization of the selenoproteome in Gallus gallus. Our data provided a wealth of information on the biochemical functions of bird selenoproteins. Members of the selenoproteome were found to be involved in various biological processes in chickens, such as in antioxidants, maintenance of the redox balance, Se transport, and interactions with metals. Six membrane-bound selenoproteins (SelI, SelK, SelS, SelT, DIO1 and DIO3) played important roles in maintaining the membrane integrity. Chicken selenoproteins were classified according to their ligand binding sites as zinc-containing matrix metalloselenoproteins (Sep15, MsrB1, SelW and SelM), POP-containing selenoproteins (GPx1-4), FAD-interacting selenoproteins (TrxR1-3), secretory transport selenoproteins (GPx3 and SelPa) and other selenoproteins. The results of our study provided new evidence for the unknown biological functions of the selenoproteome in birds. Future research is required to confirm the novel biochemical functions of bird selenoproteins.
机译:关于哺乳动物硒蛋白的知识正在增加。然而,鸟类蛋白酶组仍然不太明朗地理解,特别是其生化表征,结构功能关系和结合分子的相互作用。在这项工作中,使用生物信息学工具分析了SECIS元件,亚丁蛋白酶组合分子的结合分子的相互作用。我们对硒蛋白结合分子的结构函数关系和相互作用进行了综合分析,以提供在巨大血小板中硒代蛋白的生化表征。我们的数据提供了有关禽硒蛋白的生化功能的大量信息。发现硒代蛋白酶的成员参与鸡中的各种生物过程,例如在抗氧化剂中,维持氧化还原平衡,SE运输和金属相互作用。六个膜结合的硒蛋白(Seli,Selk,SEL,SELT,DIO1和DIO3)在保持膜完整性方面发挥了重要作用。根据它们的配体结合位点根据含锌基质金属蛋白酶(SEP15,MSRB1,SELW和SELM)来分类鸡硒蛋白,含流体的硒代蛋白(GPX1-4),FAD-相互作用硒蛋白(TRXR1-3),分泌转移硒蛋白( gpx3和selpa)和其他硒蛋白。我们研究的结果为鸟类中硒蛋白酶的未知生物学功能提供了新的证据。未来的研究是确认鸟类蛋白蛋白的新型生化功能。

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