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铜激活转录的机制:AP-1、JNK/SAPK和p38信号转导途径的激活。

Mechanism of copper-activated transcription: activation of AP-1, and the JNK/SAPK and p38 signal transduction pathways.

作者信息

Mattie Michael D, McElwee Matthew K, Freedman Jonathan H

机构信息

Nicholas School of the Environment and Earth Sciences, Duke University, Durham, NC 27708, USA.

出版信息

J Mol Biol. 2008 Nov 28;383(5):1008-18. doi: 10.1016/j.jmb.2008.08.080. Epub 2008 Sep 9.

Abstract

Copper is an essential metal that is able to produce reactive oxygen species and to induce intracellular oxidative stress. Several studies have examined the effects of excessive copper and oxidative stress on various organisms and tissues, but few have addressed the molecular mechanisms by which copper affects transcription. Our results demonstrated that, in COS-7 cells, copper treatment caused an increase in the binding of nuclear proteins to activating protein-1 and antioxidant response elements. The level of copper-inducible nuclear protein binding was modulated by increasing or decreasing the level of intracellular oxidative stress. Copper exposure also led to an increase in the steady-state levels of c-fos, c-jun, and c-myc mRNAs. Exposure to copper resulted in an increase in the levels of phosphorylation and activation of the c-Jun N-terminal kinase/stress-activated protein kinase and p38 pathways. The activation of these pathways resulted in a concomitant increase in c-Jun phosphorylation. We investigated the hypothesis that copper-induced oxidative stress leads to the formation of stable lipid peroxidation by-products that activate mitogen-activated protein kinase (MAPK) pathways, ultimately affecting transcription. While exposure did result in the production of 4-hydroxynonenal, the timing of the increased levels of proto-oncogene mRNA, phosphorylation of c-jun, and phosphorylation and activation of MAPKs, as well as the inability of the lipophilic antioxidant vitamin E to abrogate MAPK phosphorylation, suggest that the formation of stable lipid peroxidation by-products may not be the primary mechanism by which copper activates MAPKs. These results further elucidate the effects of copper on signal transduction pathways to alter gene expression.

摘要

铜是一种必需金属,能够产生活性氧并诱导细胞内氧化应激。多项研究探讨了过量铜和氧化应激对各种生物体和组织的影响,但很少有研究涉及铜影响转录的分子机制。我们的结果表明,在COS-7细胞中,铜处理导致核蛋白与激活蛋白-1和抗氧化反应元件的结合增加。通过增加或降低细胞内氧化应激水平来调节铜诱导的核蛋白结合水平。铜暴露还导致c-fos、c-jun和c-myc mRNA的稳态水平增加。铜暴露导致c-Jun N端激酶/应激激活蛋白激酶和p38信号通路的磷酸化和激活水平增加。这些信号通路的激活导致c-Jun磷酸化随之增加。我们研究了这样一个假设,即铜诱导的氧化应激导致稳定的脂质过氧化副产物形成,从而激活丝裂原活化蛋白激酶(MAPK)信号通路,最终影响转录。虽然暴露确实导致了4-羟基壬烯醛的产生,但原癌基因mRNA水平增加、c-jun磷酸化、MAPKs磷酸化和激活的时间,以及亲脂性抗氧化剂维生素E无法消除MAPK磷酸化,表明稳定的脂质过氧化副产物的形成可能不是铜激活MAPKs的主要机制。这些结果进一步阐明了铜对信号转导通路以改变基因表达的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b211/2662727/a49476fd37f7/nihms77635f1.jpg

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