首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Na+/H+ Exchanger 9 Regulates Iron Mobilization at the Blood-Brain Barrier in Response to Iron Starvation
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Na+/H+ Exchanger 9 Regulates Iron Mobilization at the Blood-Brain Barrier in Response to Iron Starvation

机译:Na + / H +交换子9调节铁饥饿时血脑屏障中的铁动员

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摘要

Iron is essential for brain function, with loss of iron homeostasis in the brain linked to neurological diseases ranging from rare syndromes to more common disorders, such as Parkinson's and Alzheimer's diseases. Iron entry into the brain is regulated by the blood-brain barrier (BBB). Molecular mechanisms regulating this transport are poorly understood. Using an in vitro model of the BBB, we identify NHE9, an endosomal cation/proton exchanger, as a novel regulator of this system. Human brain microvascular endothelial cells (hBMVECs) that constitute the BBB receive brain iron status information via paracrine signals from ensheathing astrocytes. In hBMVECs, we show that NHE9 expression is up-regulated very early in a physiological response invoked by paracrine signals from iron-starved astrocytes. Ectopic expression of NHE9 in hBMVECs without external cues induced up-regulation of the transferrin receptor (TfR) and down-regulation of ferritin, leading to an increase in iron uptake. Mechanistically, we demonstrate that NHE9 localizes to recycling endosomes in hBMVECs where it raises the endosomal pH. The ensuing alkalization of the endosomal lumen increased translocation of TfRs to the hBMVEC membrane. TfRs on the membrane were previously shown to facilitate both recycling-dependent and -independent iron uptake. We propose that NHE9 regulates TfR-dependent, recycling-independent iron uptake in hBMVECs by fine-tuning the endosomal pH in response to paracrine signals and is therefore an important regulator in iron mobilization pathway at the BBB.
机译:铁是大脑功能必不可少的元素,大脑中铁稳态的丧失与神经系统疾病(从罕见的综合症到更常见的疾病,如帕金森氏症和阿尔茨海默氏病)有关。铁进入大脑受血脑屏障(BBB)的调节。调节这种运输的分子机制了解甚少。使用BBB的体外模型,我们将NHE9(内体阳离子/质子交换剂)鉴定为该系统的新型调节剂。构成BBB的人脑微血管内皮细胞(hBMVEC)通过包皮星形胶质细胞的旁分泌信号接收脑铁状态信息。在hBMVECs中,我们显示NHE9表达在铁饥饿星形胶质细胞的旁分泌信号所引起的生理反应中非常早就被上调。没有外部提示的hBMVEC中NHE9的异位表达诱导了转铁蛋白受体(TfR)的上调和铁蛋白的下调,从而导致铁摄取的增加。从机制上讲,我们证明NHE9定位于hBMVECs中的回收内体,在该处它会提高内体pH值。内体腔的随后碱化增加了TfRs向hBMVEC膜的易位。膜上的TfRs先前已显示出促进铁依赖和循环依赖。我们建议NHE9通过微调内体pH以响应旁分泌信号来调节hBMVECs中TfR依赖,循环独立的铁摄取,因此是BBB铁动员途径中的重要调节剂。

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