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Aldehyde dehydrogenase 1A1 increases NADH levels and promotes tumor growth via glutathione/dihydrolipoic acid-dependent NAD+ reduction

机译:醛脱氢酶1A1可通过谷胱甘肽/二氢硫辛酸依赖性NAD +还原来提高NADH含量并促进肿瘤生长

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摘要

Aldehyde dehydrogenase 1A1 (ALDH1A1) is a member of the aldehyde dehydrogenase superfamily that oxidizes aldehydes to their corresponding acids, reactions that are coupled to the reduction of NAD+ to NADH. We report here that ALDH1A1 can also use glutathione (GSH) and dihydrolipoic acid (DHLA) as electron donors to reduce NAD+ to NADH. The GSH/DHLA-dependent NAD+-reduction activity of ALDH1A1 is not affected by the aldehyde dehydrogenase inhibitor or by mutation of the residues in its aldehyde-binding pocket. It is thus a distinct biochemical reaction from the classic aldehyde-dehydrogenase activity catalyzed by ALDH1A1. We also found that the ectopic expression of ALDH1A1 decreased the intracellular NAD+/NADH ratio, while knockout of ALDH1A1 increased the NAD+/NADH ratio. Simultaneous knockout of ALDH1A1 and its isozyme ALDH3A1 in lung cancer cell line NCI-H460 inhibited tumor growth in a xenograft model. Moreover, the ALDH1A1 mutants that retained their GSH/DHLA-dependent NAD+ reduction activity but lost their aldehyde-dehydrogenase activity were able to decrease the NAD+/NADH ratio and to rescue the impaired growth of ALDH1A1/3A1 double knockout tumor cells. Collectively, these results suggest that this newly characterized GSH/DHLA-dependent NAD+-reduction activity of ALDH1A1 can decrease cellular NAD+/NADH ratio and promote tumor growth.
机译:醛脱氢酶1A1(ALDH1A1)是醛脱氢酶超家族的成员,该家族将醛氧化为相应的酸,该反应与将NAD + 还原为NADH有关。我们在这里报告ALDH1A1还可以使用谷胱甘肽(GSH)和二氢硫辛酸(DHLA)作为电子供体来将NAD + 还原为NADH。 ALDH1A1的GSH / DHLA依赖性NAD + -还原活性不受醛脱氢酶抑制剂或其醛结合口袋中残基突变的影响。因此,这是与ALDH1A1催化的经典醛脱氢酶活性截然不同的生化反应。我们还发现,ALDH1A1的异位表达降低了细胞内NAD + / NADH的比率,而敲除ALDH1A1则提高了NAD + / NADH的比率。在肺癌细胞系NCI-H460中同时敲除ALDH1A1及其同工酶ALDH3A1在异种移植模型中抑制了肿瘤的生长。此外,保留了GSH / DHLA依赖性NAD + 还原活性但丧失了醛脱氢酶活性的ALDH1A1突变体能够降低NAD + / NADH比例,从而降低挽救ALDH1A1 / 3A1双敲除肿瘤细胞受损的生长。总的来说,这些结果表明,这种新表征的ALDH1A1 GSH / DHLA依赖性NAD + -还原活性可以降低细胞NAD + / NADH比例并促进肿瘤生长。

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