Department of Pathology and Biological Responses, Nagoya University Graduate School of Medicine, Nagoya, Japan.
Centre for Cancer Cell Biology and Drug Discovery, Griffith Institute for Drug Discovery, Griffith University, Nathan, Brisbane, QLD, Australia.
Blood. 2021 Oct 21;138(16):1490-1503. doi: 10.1182/blood.2021010995.
Extracellular vesicles (EVs) transfer functional molecules between cells. CD63 is a widely recognized EV marker that contributes to EV secretion from cells. However, the regulation of its expression remains largely unknown. Ferritin is a cellular iron storage protein that can also be secreted by the exosome pathway, and serum ferritin levels classically reflect body iron stores. Iron metabolism-associated proteins such as ferritin are intricately regulated by cellular iron levels via the iron responsive element-iron regulatory protein (IRE-IRP) system. Herein, we present a novel mechanism demonstrating that the expression of the EV-associated protein CD63 is under the regulation of the IRE-IRP system. We discovered a canonical IRE in the 5' untranslated region of CD63 messenger RNA that is responsible for regulating its expression in response to increased iron. Cellular iron loading caused a marked increase in CD63 expression and the secretion of CD63+ EVs from cells, which were shown to contain ferritin-H and ferritin-L. Our results demonstrate that under iron loading, intracellular ferritin is transferred via nuclear receptor coactivator 4 (NCOA4) to CD63+ EVs that are then secreted. Such iron-regulated secretion of the major iron storage protein ferritin via CD63+ EVs, is significant for understanding the local cell-to-cell exchange of ferritin and iron.
细胞外囊泡 (EVs) 在细胞间传递功能分子。CD63 是一种广泛认可的 EV 标志物,有助于细胞分泌 EV。然而,其表达的调节仍然很大程度上未知。铁蛋白是一种细胞内铁储存蛋白,也可以通过外体途径分泌,血清铁蛋白水平经典地反映了体内铁储存。铁代谢相关蛋白(如铁蛋白)通过铁反应元件-铁调节蛋白 (IRE-IRP) 系统,受到细胞内铁水平的精细调节。在此,我们提出了一种新的机制,证明与 EV 相关的蛋白 CD63 的表达受 IRE-IRP 系统的调节。我们在 CD63 信使 RNA 的 5'非翻译区发现了一个典型的 IRE,它负责调节其表达,以响应增加的铁。细胞内铁负荷导致 CD63 表达和 CD63+EV 的分泌显著增加,其中含有铁蛋白-H 和铁蛋白-L。我们的结果表明,在铁负荷下,细胞内铁蛋白通过核受体共激活因子 4 (NCOA4) 转移到 CD63+EV 中,然后被分泌出来。这种通过 CD63+EV 对主要铁储存蛋白铁蛋白进行铁调节分泌,对于理解铁蛋白和铁在细胞间的局部交换具有重要意义。