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首页> 外文期刊>Journal of occupational health >DNA microarray analysis of altered gene expression in cadmium-exposed human cells.
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DNA microarray analysis of altered gene expression in cadmium-exposed human cells.

机译:暴露于镉的人类细胞中基因表达改变的DNA微阵列分析。

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摘要

Cadmium (Cd) is a heavy metal known to be toxic and carcinogenic, but its mechanism of action remains to be elucidated. Development of the DNA microarray technology has recently made the comprehensive analysis of gene expression possible, and it could be a powerful tool also in toxicological studies. With microarray slides containing 7,000-9,000 genes, we have been studying the gene expression profiles of a human cell line exposed to Cd. By exposure to a non-lethal concentration of Cd, 46 upregulated and 10 downregulated genes whose expression levels changed twofold or greater were observed. The expression of genes related to cellular protection and damage control mechanisms such as those encoding metallothioneins, anti-oxidant proteins and heat shock proteins was simultaneously induced. In addition, altered expression of many genes involved in signaling, metabolism and so on was newly observed. As a whole, a number of genes appear to be coordinately regulated toward survival from Cd toxicity. When cells were exposed to a higher concentration of Cd, more remarkable effects were observed both in the number of affected genes and in the extent of altered expression. These findings will contribute to the understanding of the complicated biological effects of Cd.
机译:镉(Cd)是一种重金属,已知有毒且具有致癌性,但其作用机理尚待阐明。 DNA微阵列技术的发展使基因表达的全面分析成为可能,并且在毒理学研究中也可能是一个强大的工具。对于包含7,000-9,000个基因的微阵列载玻片,我们一直在研究暴露于Cd的人类细胞系的基因表达谱。通过暴露于非致死浓度的Cd,观察到46个上调的基因和10个下调的基因,其表达水平变化了两倍或以上。同时诱导了与细胞保护和损伤控制机制有关的基因的表达,例如编码金属硫蛋白,抗氧化蛋白和热休克蛋白的那些基因。另外,新观察到许多与信号转导,代谢等有关的基因表达的改变。总体而言,许多基因似乎对Cd毒性的存活具有协调性的调控。当细胞暴露于较高浓度的Cd时,在受影响基因的数量和表达改变的程度上都观察到了更显着的效果。这些发现将有助于理解镉的复杂生物学作用。

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