首页> 美国卫生研究院文献>Frontiers in Immunology >Murine Hyperglycemic Vasculopathy and Cardiomyopathy: Whole-Genome Gene Expression Analysis Predicts Cellular Targets and Regulatory Networks Influenced by Mannose Binding Lectin
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Murine Hyperglycemic Vasculopathy and Cardiomyopathy: Whole-Genome Gene Expression Analysis Predicts Cellular Targets and Regulatory Networks Influenced by Mannose Binding Lectin

机译:小鼠高血糖性血管病和心肌病:全基因组基因表达分析预测受甘露糖结合凝集素影响的细胞靶标和调控网络。

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摘要

Hyperglycemia, in the absence of type 1 or 2 diabetes, is an independent risk factor for cardiovascular disease. We have previously demonstrated a central role for mannose binding lectin (MBL)-mediated cardiac dysfunction in acute hyperglycemic mice. In this study, we applied whole-genome microarray data analysis to investigate MBL’s role in systematic gene expression changes. The data predict possible intracellular events taking place in multiple cellular compartments such as enhanced insulin signaling pathway sensitivity, promoted mitochondrial respiratory function, improved cellular energy expenditure and protein quality control, improved cytoskeleton structure, and facilitated intracellular trafficking, all of which may contribute to the organismal health of MBL null mice against acute hyperglycemia. Our data show a tight association between gene expression profile and tissue function which might be a very useful tool in predicting cellular targets and regulatory networks connected with in vivo observations, providing clues for further mechanistic studies.
机译:在没有1型或2型糖尿病的情况下,高血糖是心血管疾病的独立危险因素。我们以前已经证明了急性高血糖小鼠中甘露糖结合凝集素(MBL)介导的心脏功能障碍的核心作用。在这项研究中,我们应用了全基因组微阵列数据分析来研究MBL在系统基因表达变化中的作用。数据预测在多个细胞区室中可能发生的细胞内事件,例如增强的胰岛素信号通路敏感性,促进的线粒体呼吸功能,改善的细胞能量消耗和蛋白质质量控​​制,改善的细胞骨架结构以及促进的细胞内运输,所有这些都可能有助于MBL无效小鼠对急性高血糖的机体健康。我们的数据显示基因表达谱与组织功能之间的紧密联系,这可能是预测与体内观察相关的细胞靶标和调控网络的非常有用的工具,为进一步的机理研究提供了线索。

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