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Bioinformatic transcriptomic analysis of ApoE deficient mice suggests Alterations in atherosclerosis related molecular mechanisms

机译:Apoe缺陷小鼠的生物信息转录组分析表明动脉粥样硬化相关分子机制的改变

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Atherosclerosis is a multifactorial disease involving a lot of genes and proteins recruited throughout its manifestation. The present study represents an integrative effort, coupling the results of a bioinformatic analysis based on microarray data of atherosclerotic aortic lesions of apoE knockout mice, a model widely used in atherosclerosis research, together with gene expression measurements of human atherosclerotic lesions. A dynamic analysis was performed among young and aged animals, at three different ages. GO-based pathway analysis indicated altered processes related to immune response and to inflammation as well as lipid transport and metabolism. Cluster analysis partitioned the significantly differentiated genes in five clusters of similar expression profile. Promoter analysis applied in a representative cluster amid those derived, revealed shared putative cis-elements potentially contributing to a common regulatory mechanism. Finally, comparison with the expression profiles of retinoic acid pathway genes in human atherosclerotic lesions, traced some common patterns of expression between the two organisms.
机译:动脉粥样硬化是一种涉及许多基因和蛋白质在整个表现形式的多学会疾病。本研究代表了一种综合性努力,耦合基于Apoe敲除小鼠的动脉粥样硬化小鼠的微阵列数据的生物信息分析的结果,该模型广泛用于动脉粥样硬化研究的模型,以及人类动脉粥样硬化病变的基因表达测量。在三个不同年龄的年轻动物中进行动态分析。基于GO的途径分析表明改变与免疫应答和炎症以及脂质传输和代谢相关的过程。聚类分析在类似表达谱的五簇中分区了显着分化的基因。在得出的那些衍生的那些代表性集群中施用的启动子分析,揭示了潜在促进普通监管机制的共同推定的顺式联合会。最后,与人动脉粥样硬化病变中的视黄酸途径基因的表达谱进行比较,追踪了两种生物之间的一些常见表达模式。

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