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使用严格的选择参数鉴定小鼠肝脏和比目鱼肌中可能对硒有反应的标记基因。

Use of stringent selection parameters for the identification of possible selenium-responsive marker genes in mouse liver and gastrocnemius.

机构信息

Alltech Center for Animal Nutrigenomics and Applied Animal Nutrition, Nicholasville, KY, USA.

出版信息

Biol Trace Elem Res. 2011 Nov;143(2):992-1006. doi: 10.1007/s12011-010-8894-8. Epub 2010 Nov 16.

DOI:10.1007/s12011-010-8894-8
PMID:21080100
Abstract

Selenium is a trace element that, although toxic in higher concentrations, is essential for human and animal health. In this study, we looked at microarray-based gene expression patterns from liver and gastrocnemius tissues in mice fed either a selenium-deficient diet or diets containing sodium selenite, selenomethionine, or a yeast-derived selenium supplement. A p value cutoff of 0.01 was used to identify a select set of selenium-responsive genes that were consistently differentially expressed across three age groups of mice with both ANOVA and t test analyses. A total of 19 gene transcripts were found to be differentially expressed across the three age groups with at least one selenium-deficient/selenium-supplemented diet comparison. Of those 19 genes, 12 had been previously identified as selenoprotein-encoding genes, and four of the genes, Gpx1, Selh, Sep15, and Sepw1, were differentially expressed in both tissues, all three mouse age groups, and all three diet comparisons. Activities associated with non-selenoproteins encoded by selenium-responsive genes included transport and stress response. The selenophosphate synthetase 2 gene Sephs2 in gastrocnemius tissue and the solute carrier gene Slc48a1 in liver tissue, both up-regulated with selenium-deficient diets compared to all three selenium-supplemented diets, are previously overlooked candidates for dietary selenium marker genes.

摘要

硒是一种微量元素,虽然在高浓度下有毒,但对人类和动物的健康是必不可少的。在这项研究中,我们观察了用缺硒饮食或含亚硒酸钠、硒代蛋氨酸或酵母衍生的硒补充剂的饮食喂养的小鼠的肝脏和比目鱼肌组织的基于微阵列的基因表达模式。使用 p 值截止值 0.01 来识别一组选择性的硒反应基因,这些基因在三个年龄组的小鼠中通过 ANOVA 和 t 检验分析一致表现出差异表达。共有 19 个基因转录本在至少一种硒缺乏/硒补充饮食比较中在三个年龄组中表现出差异表达。在这 19 个基因中,有 12 个先前被鉴定为硒蛋白编码基因,其中 4 个基因 Gpx1、Selh、Sep15 和 Sepw1 在两种组织中均有差异表达,在所有三个小鼠年龄组中均有差异表达,在所有三种饮食比较中也均有差异表达。与硒反应基因编码的非硒蛋白相关的活性包括运输和应激反应。比目鱼肌组织中的硒磷酸酯合成酶 2 基因 Sephs2 和肝脏组织中的溶质载体基因 Slc48a1 在与所有三种硒补充饮食相比时,由于缺硒饮食而上调,它们都是以前被忽视的膳食硒标记基因候选物。

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