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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >An effective method for profiling the selenium-binding proteins using its reactive metabolic intermediate
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An effective method for profiling the selenium-binding proteins using its reactive metabolic intermediate

机译:一种利用其反应性代谢中间体分析硒结合蛋白的有效方法

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Currently, the intracellular reduction and/or transport of selenium still remain unknown. Certain reduced forms of selenium species are thought to be reactive with various endogenous molecules, particularly thiol-containing proteins. In this study, a profiling method for identifying the selenium-binding proteins using l-penicillamine selenotrisulfide (PenSSeSPen) as a model of the selenium metabolic intermediate was applied to the cell lysate generated from the rat liver. Several proteins with cysteine thiol were found to be reactive with PenSSeSPen through the thiol-exchange reaction by MALDI TOF-MS analysis. The most distinctive cysteine-containing protein at m/z 14,313 in the liver cell lysate was identified as the liver fatty acid-binding protein based on a rat protein database search and a tryptic fragmentation experiment. This methodology could be used for determining the selenium-binding proteins and/or selenium-interactive species and provide a better understanding of the selenium metabolism and utilization in biological systems.
机译:目前,细胞内硒的减少和/或转运仍然未知。人们认为某些还原形式的硒物质可与各种内源性分子,特别是含硫醇的蛋白质发生反应。在这项研究中,以大鼠肝脏产生的细胞裂解物为基础,采用一种以l-青霉胺硒代壬硫醚(PenSSeSPen)为硒代谢中间体的模型来鉴定硒结合蛋白的分析方法。通过MALDI TOF-MS分析,发现通过巯基交换反应,几种具有半胱氨酸巯基的蛋白质可与PenSSeSPen反应。根据大鼠蛋白质数据库搜索和胰蛋白酶消化实验,肝细胞裂解物中m / z 14,313处最独特的含半胱氨酸的蛋白质被鉴定为肝脂肪酸结合蛋白。该方法可用于确定硒结合蛋白和/或硒相互作用物种,并提供对硒在生物系统中代谢和利用的更好理解。

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