首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The Divalent Metal Transporter 1 (DMT1) Is Required for Iron Uptake and Normal Development of Oligodendrocyte Progenitor Cells
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The Divalent Metal Transporter 1 (DMT1) Is Required for Iron Uptake and Normal Development of Oligodendrocyte Progenitor Cells

机译:二价金属转运蛋白1(DMT1)是寡突胚细胞祖细胞的熨斗吸收和正常发育所必需的

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摘要

The divalent metal transporter 1 (DMT1) is a multimetal transporter with a primary role in iron transport. Although DMT1 has been described previously in the CNS, nothing was known about the role of this metal transporter in oligodendrocyte maturation and myelination. To determine whether DMT1 is required for oligodendrocyte progenitor cell (OPC) maturation, we used siRNAs and the Cre-lox system to knock down/knock out DMT1 expression in vitro as well as in vivo. Blocking DMT1 synthesis in primary cultures of OPCs reduced oligodendrocyte iron uptake and significantly delayed OPC development. In vivo, a significant hypomyelination was found in DMT1 conditional knock-out mice in which DMT1 was postnatally deleted in NG2-or Sox10-positive OPCs. The brain of DMT1 knock-out animals presented a decrease in the expression levels of myelin proteins and a substantial reduction in the percentage of myelinated axons. This reduced postnatal myelination was accompanied by a decrease in the number of myelinating oligodendrocytes and a rise in proliferating OPCs. Furthermore, using the cuprizone model of demyelination, we established that DMT1 deletion in NG2-positive OPCs lead to less efficient remyelination of the adult brain. These results indicate that DMT1 is vital for OPC maturation and for the normal myelination of the mouse brain.
机译:二价金属转运蛋白1(DMT1)是一种多金属转运与铁转运的主要作用。虽然DMT1已在CNS先前描述的,什么也没有知道这件金属转运的少突胶质细胞成熟和髓鞘形成的作用。为了确定DMT1是否需要少突胶质细胞祖细胞(OPC)的成熟,我们使用的siRNA和酶Cre-lox系统击倒/体外敲除DMT1表达以及在体内。阻断的OPC降低少突胶质细胞的铁摄取的原代培养DMT1合成和显著延迟OPC发展。在体内,一个显著hypomyelination在DMT1发现条件敲除小鼠,其中DMT1在NG2-或SOX10阳性的OPC出生后删除。 DMT1敲除动物的大脑中提出髓鞘蛋白的表达水平下降和髓鞘的轴突的比例大幅减少。这种减小的产后髓鞘形成是伴随着在少突胶质细胞髓鞘的数目的减少和增殖的OPC的上升。此外,使用脱髓鞘的铜宗模型中,我们建立了NG2阳性的OPC是DMT1缺失导致成人脑的效率较低的髓鞘再生。这些结果表明,DMT1是OPC的成熟和小鼠大脑的正常髓鞘形成至关重要。

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