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首页> 外文期刊>Journal of land use science >Vitamin C alters the amount of specific endoplasmic reticulum associated proteins involved in lipid metabolism in the liver of mice synthesizing a nonfunctional Werner syndrome (Wrn) mutant protein
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Vitamin C alters the amount of specific endoplasmic reticulum associated proteins involved in lipid metabolism in the liver of mice synthesizing a nonfunctional Werner syndrome (Wrn) mutant protein

机译:维生素C在合成非功能性Werner综合征(WRN)突变蛋白的小鼠肝脏中,改变了参与脂质代谢的特定内质网相关蛋白的量

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摘要

Werner syndrome (WS) is a premature aging disorder caused by mutations in a protein containing both a DNA exonuclease and DNA helicase domain. Mice lacking the helicase domain of the Wrn protein orthologue exhibit transcriptomic and metabolic alterations, some of which are reversed by vitamin C. Recent studies on these animals indicated that the mutant protein is associated with enriched endoplasmic reticulum (ER) fractions of tissues resulting in an ER stress response. In this study, we identified proteins that exhibit actual level differences in the ER enriched fraction between the liver of wild type and Wrn mutant mice using quantitative proteomic profiling with label-free Liquid Chromatography-Tandem Mass Spectrometry (LC-MS/MS). Multiple Reaction Monitoring (MRM) and immunoblotting were performed to validate findings in a secondary independent cohort of wild type and Wrn mutant mice. DAVID 6.7 (NIH) was used for functional annotation analysis and indicated that the identified proteins exhibiting level changes between untreated wild type, Wrn mutant, and vitamin C treated Wrn mutant mice (ANOVA P-value 0.05) were involved in fatty acid and steroid metabolism pathways (Bonferroni P-value = 0.0137). Finally, when we compared the transcriptomic and the proteomic data of our mouse cohorts only similar to 7% of the altered mRNA profiles encoding for ER gene products were consistent with their corresponding protein profiles measured by the label-free quantification methods. These results suggest that a great number of ER gene products are regulated at the post-transcriptional level in the liver of Wrn mutant mice exhibiting an ER stress response.
机译:Werner综合征(WS)是由含有DNA外切核酸酶和DNA螺旋酶结构域的蛋白质中的突变引起的过早衰老障碍。缺乏WRN蛋白质原子的螺旋酶结构域的小鼠表现出转录组和代谢改变,其中一些由维生素C逆转。最近对这些动物的研究表明突变蛋白与富集的内质网(ER)组织相关联的组织相关联呃压力反应。在这项研究中,我们使用定量蛋白质组学分析与无标记的液相色谱 - 串联质谱(LC-MS / MS)的定量蛋白质组学分析鉴定了表现出在野生型和WRN突变小鼠肝脏浓缩级分的实际水平差异的蛋白质。进行多重反应监测(MRM)和免疫印迹,以验证野生型和WRN突变小鼠的二级独立队列中的发现。 David 6.7(NIH)用于功能性注释分析,并表明所鉴定的蛋白质表现出在未处理的野生型,WRN突变体和维生素C处理的WRN突变小鼠(ANOVA p值<0.05)之间的水平变化涉及脂肪酸和类固醇代谢途径(Bonferroni p值= 0.0137)。最后,当我们比较转录组和我们的小鼠群体的蛋白质组学数据,只有类似于ER基因产物的改变的mRNA谱的7%,它们与通过无标记定量方法测量的相应蛋白质谱的一致。这些结果表明,大量的ER基因产物在WRN突变体小鼠的肝脏后术后水平调节,表现出ER应激反应。

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  • 来源
    《Journal of land use science》 |2018年第3期|共23页
  • 作者单位

    Univ Laval CHU Quebec Fac Med Ctr Rech Quebec City PQ Canada;

    Univ Laval CHU Quebec Fac Med Ctr Rech Proteom Platform Ctr Quebec City PQ Canada;

    Univ Laval CHU Quebec Fac Med Ctr Rech Proteom Platform Ctr Quebec City PQ Canada;

    Univ Laval CHU Quebec Fac Med Ctr Rech Proteom Platform Ctr Quebec City PQ Canada;

    Univ Laval CHU Quebec Fac Med Ctr Rech Quebec City PQ Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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