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首页> 外文期刊>Biological research: BR >Gene expression profiling in wild-type and metallothionein mutant fibroblast cell lines
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Gene expression profiling in wild-type and metallothionein mutant fibroblast cell lines

机译:野生型和金属硫蛋白突变的成纤维细胞系中的基因表达谱

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摘要

The role of metallothioneins (MT) in copper homeostasis is of great interest, as it appears to be partially responsible for the regulation of intracellular copper levels during adaptation to extracellular excess of the metal. To further investigate a possible role of MTs in copper metabolism, a genomics approach was utilized to evaluate the role of MT on gene expression. Microarray analysis was used to examine the effects of copper overload in fibroblast cells from normal and MT I and II double knock-out mice (MT-/-). As a first step, we compared genes that were significantly upregulated in wild-type and MT-/- cells exposed to copper. Even though wild-type and mutant cells are undistinguishable in terms of their morphological features and rates of growth, our results show that MT-/- cells do not respond with induction of typical markers of cellular stress under copper excess conditions, as observed in the wild-type cell line, suggesting that the transcription initiation rate or the mRNA stability of stress genes is affected when there is an alteration in the copper store capacity. The functional classification of other up-regulated genes in both cell lines indicates that a large proportion (>80%) belong to two major categories: 1) metabolism; and 2) cellular physiological processes, suggesting that at the transcriptional level copper overload induces the expression of genes associated with diverse molecular functions. These results open the possibility to understand how copper homeostasis is being coordinated with other metabolic pathways.
机译:金属硫蛋白(MT)在铜稳态中的作用引起了极大的兴趣,因为它似乎在部分适应细胞外金属的过程中负责调节细胞内铜水平。为了进一步研究MT在铜代谢中的可能作用,采用了一种基因组学方法来评估MT在基因表达中的作用。微阵列分析用于检查正常和MT I和II双敲除小鼠(MT-/-)的成纤维细胞中铜超载的影响。第一步,我们比较了暴露于铜的野生型和MT-/-细胞中显着上调的基因。即使野生型和突变型细胞在形态特征和生长速度方面无法区分,我们的结果表明,MT-/-细胞在铜过量条件下对典型的细胞应激标志物的诱导没有反应,如在野生型细胞系,表明当铜储存能力发生变化时,应激基因的转录起始速率或mRNA稳定性会受到影响。两种细胞系中其他上调基因的功能分类表明,很大一部分(> 80%)属于两个主要类别:1)新陈代谢; 2)新陈代谢。 2)细胞生理过程,这表明铜的超载在转录水平上诱导了与多种分子功能相关的基因的表达。这些结果为了解铜稳态如何与其他代谢途径协调开辟了可能性。

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