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血红素加氧酶-1 调节培养星形胶质细胞中的 microRNA 表达:对慢性脑疾病的影响。

Heme oxygenase-1 modulates microRNA expression in cultured astroglia: implications for chronic brain disorders.

机构信息

Lady Davis Institute for Medical Research, Jewish General Hospital, Montreal, Quebec, Canada; Department of Neurology and Neurosurgery, McGill University, Montreal, Quebec, Canada.

出版信息

Glia. 2015 Jul;63(7):1270-84. doi: 10.1002/glia.22823. Epub 2015 Mar 25.

Abstract

BACKGROUND

Over-expression of the heme-degrading enzyme, heme oxygenase-1 (HO-1) promotes iron deposition, mitochondrial damage, and autophagy in astrocytes and enhances the vulnerability of nearby neuronal constituents to oxidative injury. These neuropathological features and aberrant brain microRNA (miRNA) expression patterns have been implicated in the etiopathogeneses of various neurodevelopmental and aging-related neurodegenerative disorders.

OBJECTIVE

To correlate glial HO-1 overexpression with altered miRNA patterns, which have been linked to the aforementioned "core" neuropathological features.

METHODS

miRNA microchip assays were performed on HMOX1- and sham-transfected primary rat astroglia and affected miRNAs were further validated by qPCR. The roles of the heme degradation products, carbon monoxide (CO), iron (Fe) and bilirubin on miRNA expression were assessed and salient mRNA targets of the impacted miRNAs were ascertained.

RESULTS

In HMOX1-transfected astrocytes, rno-miR-140*, rno-miR-17, and rno-miR-16 were significantly up-regulated, and rno-miR-297, rno-miR-206, rno-miR-187, rno-miR-181a, rno-miR-138 and rno-miR-29c were down-regulated, compared to sham-transfected controls. CO and Fe were implicated in the HMOX1 effects, whereas bilirubin was inert or counteracted the HMOX1-related changes. mRNA levels of Ngfr, Vglut1, Mapk3, Tnf-α, and Sirt1, known targets of the down-regulated miRNAs and abnormal in various human brain disorders, were significantly increased in the HMOX-1-transfected astrocytes.

CONCLUSIONS

In chronic CNS disorders, altered expression of salient miRNAs and their mRNA targets may contribute to the neural damage accruing from the over-expression of glial HO-1.

摘要

背景

血红素降解酶血红素加氧酶-1(HO-1)的过度表达会促进星形胶质细胞中铁的沉积、线粒体损伤和自噬,并增强附近神经元成分对氧化损伤的易感性。这些神经病理学特征和异常的脑 microRNA(miRNA)表达模式与各种神经发育和与年龄相关的神经退行性疾病的病因发病机制有关。

目的

将胶质 HO-1 的过度表达与改变的 miRNA 模式相关联,这些改变的 miRNA 模式与上述“核心”神经病理学特征有关。

方法

对 HMOX1 和假转染的原代大鼠星形胶质细胞进行 miRNA 微芯片检测,并通过 qPCR 进一步验证受影响的 miRNA。评估血红素降解产物一氧化碳(CO)、铁(Fe)和胆红素对 miRNA 表达的作用,并确定受影响 miRNA 的显著 mRNA 靶标。

结果

在 HMOX1 转染的星形胶质细胞中,rno-miR-140*、rno-miR-17 和 rno-miR-16 显著上调,而 rno-miR-297、rno-miR-206、rno-miR-187、rno-miR-181a、rno-miR-138 和 rno-miR-29c 下调,与假转染对照相比。CO 和 Fe 参与了 HMOX1 的作用,而胆红素惰性或抵消了 HMOX1 相关的变化。已知下调的 miRNA 及其在各种人类大脑疾病中异常的 mRNA 靶标 Ngfr、Vglut1、Mapk3、Tnf-α和 Sirt1 的 mRNA 水平在 HMOX-1 转染的星形胶质细胞中显著增加。

结论

在慢性中枢神经系统疾病中,显著的 miRNA 及其 mRNA 靶标的表达改变可能导致胶质 HO-1 过度表达引起的神经损伤。

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