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铁诱导的转铁蛋白受体的非经典内吞作用和转运。

Unconventional endocytosis and trafficking of transferrin receptor induced by iron.

机构信息

Department of Biomedical Sciences for Health, University of Milan, 20133 Milan, Italy.

IEO, Istituto Europeo di Oncologia IRCCS, 20141 Milan, Italy.

出版信息

Mol Biol Cell. 2021 Jan 15;32(2):98-108. doi: 10.1091/mbc.E20-02-0129. Epub 2020 Nov 25.

Abstract

The posttranslational regulation of transferrin receptor (TfR1) is largely unknown. We investigated whether iron availability affects TfR1 endocytic cycle and protein stability in HepG2 hepatoma cells exposed to ferric ammonium citrate (FAC). NHCl and bafilomycin A1, but not the proteasomal inhibitor MG132, prevented the FAC-mediated decrease in TfR1 protein levels, thus indicating lysosomal involvement. Knockdown experiments showed that TfR1 lysosomal degradation is independent of 1) endocytosis mediated by the clathrin adaptor AP2; 2) Tf, which was suggested to facilitate TfR1 internalization; 3) H-ferritin; and 4) MARCH8, previously implicated in TfR1 degradation. Notably, FAC decreased the number of TfR1 molecules at the cell surface and increased the Tf endocytic rate. Colocalization experiments confirmed that, upon FAC treatment, TfR1 was endocytosed in an AP2- and Tf-independent pathway and trafficked to the lysosome for degradation. This unconventional endocytic regulatory mechanism aimed at reducing surface TfR1 may represent an additional posttranslational control to prevent iron overload. Our results show that iron is a key regulator of the trafficking of TfR1, which has been widely used to study endocytosis, often not considering its function in iron homeostasis.

摘要

转铁蛋白受体 (TfR1) 的翻译后调控在很大程度上是未知的。我们研究了铁的可用性是否会影响暴露于柠檬酸铁铵 (FAC) 的 HepG2 肝癌细胞中的 TfR1 内吞循环和蛋白质稳定性。NHCl 和巴弗洛霉素 A1,但不是蛋白酶体抑制剂 MG132,可防止 FAC 介导的 TfR1 蛋白水平下降,从而表明溶酶体参与。敲低实验表明,TfR1 的溶酶体降解与以下因素无关:1)网格蛋白衔接蛋白 AP2 介导的内吞作用;2)Tf,Tf 被认为可促进 TfR1 的内化;3)H 铁蛋白;和 4)MARCH8,先前与 TfR1 降解有关。值得注意的是,FAC 减少了细胞表面 TfR1 的分子数量,并增加了 Tf 的内吞速率。共定位实验证实,在用 FAC 处理后,TfR1 以 AP2 和 Tf 独立的途径被内吞,并转运到溶酶体进行降解。这种旨在减少表面 TfR1 的非常规内吞调节机制可能代表了防止铁过载的另一种翻译后控制。我们的研究结果表明,铁是 TfR1 运输的关键调节剂,铁已被广泛用于研究内吞作用,而通常不考虑其在铁稳态中的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c3d/8120689/3cfae662b7c8/mbc-32-98-g001.jpg

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