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Regulation of the divalent metal ion transporter via membrane budding

机译:通过膜出芽调节二价金属离子转运蛋白

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The release of extracellular vesicles (EVs) is important for both normal physiology and disease. However, a basic understanding of the targeting of EV cargoes, composition and mechanism of release is lacking. Here we present evidence that the divalent metal ion transporter (DMT1) is unexpectedly regulated through release in EVs. This process involves the Nedd4-2 ubiquitin ligase, and the adaptor proteins Arrdc1 and Arrdc4 via different budding mechanisms. We show that mouse gut explants release endogenous DMT1 in EVs. Although we observed no change in the relative amount of DMT1 released in EVs from gut explants in Arrdc1 or Arrdc4 deficient mice, the extent of EVs released was significantly reduced indicating an adaptor role in biogenesis. Furthermore, using Arrdc1 or Arrdc4 knockout mouse embryonic fibroblasts, we show that both Arrdc1 and Arrdc4 are non-redundant positive regulators of EV release. Our results suggest that DMT1 release from the plasma membrane into EVs may represent a novel mechanism for the maintenance of iron homeostasis, which may also be important for the regulation of other membrane proteins.
机译:细胞外囊泡(EVs)的释放对于正常的生理和疾病都很重要。但是,对电动汽车货物的目标,组成和释放机理缺乏基本的了解。在这里,我们提供证据表明二价金属离子转运蛋白(DMT1)通过在电动汽车中释放而出人意料地受到调节。此过程涉及Nedd4-2泛素连接酶,以及衔接子蛋白Arrdc1和Arrdc4通过不同的出芽机制。我们显示,小鼠肠道外植体在电动汽车中释放内源性DMT1。尽管我们观察到Arrdc1或Arrdc4缺陷小鼠的肠道外植体中EV释放的DMT1的相对量没有变化,但EV释放的程度显着降低,表明适配器在生物发生中起作用。此外,使用Arrdc1或Arrdc4敲除小鼠胚胎成纤维细胞,我们显示Arrdc1和Arrdc4都是EV释放的非冗余正调节剂。我们的结果表明DMT1从质膜释放到EV中可能代表了维持铁稳态的新机制,这对于调节其他膜蛋白也可能很重要。

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