Department of Neurology & Neuroscience, Weill Cornell Medical College/Burke Medical Research Institute, White Plains, New York, USA.
J Neurochem. 2011 Aug;118(3):440-8. doi: 10.1111/j.1471-4159.2011.07333.x. Epub 2011 Jun 24.
These experiments reveal for the first time that microRNAs (miRNAs) mediate oxidant regulated expression of a mitochondrial tricarboxylic acid cycle gene (mdh2). mdh2 encoded malate dehydrogenase (MDH) is elevated by an unknown mechanism in brains of patients that died with Alzheimer's disease. Oxidative stress, an early and pervasive event in Alzheimer's disease, increased MDH activity and mRNA level of mdh2 by 19% and 22%, respectively, in a mouse hippocampal cell line (HT22). Post-transcriptional events underlie the change in mRNA because actinomycin D did not block the elevated mdh2 mRNA. Since miRNAs regulate gene expression post-transcriptionally, the expression of miR-743a, a miRNA predicted to target mdh2, was determined and showed a 52% reduction after oxidant treatment. Direct interaction of miR-743a with mdh2 was demonstrated with a luciferase based assay. Over-expression or inhibition of miR-743a led to a respective reduction or increase in endogenous mRNA and MDH activity. The results demonstrate that miR-743a negatively regulates mdh2 at post-transcriptional level by directly targeting the mdh2 3'UTR. The findings are consistent with the suggestion that oxidative stress can elevate the activity of MDH through miR-743a, and provide new insights into possible roles of miRNA in oxidative stress and neurodegeneration.
这些实验首次揭示了 microRNAs(miRNAs)介导了氧化应激调节的线粒体三羧酸循环基因(mdh2)的表达。mdh2 编码的苹果酸脱氢酶(MDH)在死于阿尔茨海默病的患者的大脑中以未知机制升高。氧化应激是阿尔茨海默病早期和普遍存在的事件,它使鼠海马细胞系(HT22)中的 MDH 活性和 mdh2 的 mRNA 水平分别增加了 19%和 22%。mRNA 的变化是由转录后事件引起的,因为放线菌素 D 不能阻断升高的 mdh2 mRNA。由于 miRNAs 可以通过转录后调节基因表达,因此确定了预测靶向 mdh2 的 miRNA miR-743a 的表达情况,结果显示氧化应激处理后其表达降低了 52%。通过基于荧光素酶的测定证实了 miR-743a 与 mdh2 的直接相互作用。miR-743a 的过表达或抑制分别导致内源性 mRNA 和 MDH 活性的减少或增加。结果表明,miR-743a 通过直接靶向 mdh2 的 3'UTR 来负调控 mdh2 的转录后水平。这些发现与氧化应激可以通过 miR-743a 升高 MDH 活性的建议一致,并为 miRNA 在氧化应激和神经变性中的可能作用提供了新的见解。