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Aldehyde dehydrogenases may modulate signaling by lipid peroxidation-derived bioactive aldehydes

机译:醛脱氢酶可以通过脂质过氧化衍生的生物活性醛调节信号传导

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Aldehyde molecules were shown to induce gene expression but because of their toxicity, the cell expresses ALDEHYDE DEHYDROGENASES (ALDH, EC 1.2.1.3) that oxidize them to carboxylic acids. To understand how the aldehydes may be both toxic and gene activators, we expressed the ALDH7B4 gene promoter fused to the b-glucuronidase reporter gene in independent transgenic lines and found that pentanal and trans-2-hexenal activated the promoter whereas trans-2-hexenal induced the ALDH7B4 protein. Paraquat ledto higher amounts of malondialdehyde compared to trans-2-hexenal and H2O2, and only the treatment by Paraquat activated the ALDH7B4 promoter, indicating that a threshold level of aldehydes is required for gene activation. These findings suggest that ALDH activity may also serve to fine-tune gene activation by the aldehydes.
机译:显示醛分子诱导基因表达,但由于它们的毒性,该细胞表达氧化醛脱氢酶(Aldh,EC 1.2.1.3),其将它们氧化成羧酸。 要了解醛可能是毒性和基因活化剂的方式,我们将ALDH7B4基因启动子以独立的转基因素融合在B-葡萄糖醛酸糖苷酶报告基因中,发现戊醛和反式-2-六甲酸活化促进剂,而Trans-2-hexebal 诱导ALDH7B4蛋白。 与Trans-2-hexenal和H 2 O 2相比,百草枯导致丙二醛较多,并且仅通过百草枯的处理激活ALDH7B4启动子,表明基因活化需要丙醛的阈值水平。 这些发现表明ALDH活性也可能用于通过醛进行微调基因活化。

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