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Specific iron chelators determine the route of ferritin degradation.

机译:特定的铁螯合剂决定了铁蛋白降解的途径。

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摘要

Deferoxamine (DFO) is a high-affinity Fe (III) chelator produced by Streptomyces pilosus. DFO is used clinically to remove iron from patients with iron overload disorders. Orally administered DFO cannot be absorbed, and therefore it must be injected. Here we show that DFO induces ferritin degradation in lysosomes through induction of autophagy. DFO-treated cells show cytosolic accumulation of LC3B, a critical protein involved in autophagosomal-lysosomal degradation. Treatment of cells with the oral iron chelators deferriprone and desferasirox did not show accumulation of LC3B, and degradation of ferritin occurred through the proteasome. Incubation of DFO-treated cells with 3-methyladenine, an autophagy inhibitor, resulted in degradation of ferritin by the proteasome. These results indicate that ferritin degradation occurs by 2 routes: a DFO-induced entry of ferritin into lysosomes and a cytosolic route in which iron is extracted from ferritin before degradation by the proteasome.
机译:Deferoxamine(DFO)是由毛链霉菌产生的高亲和力Fe(III)螯合剂。 DFO在临床上用于从铁过载症患者中去除铁。口服给药的DFO无法吸收,因此必须注射。在这里,我们显示DFO通过自噬诱导在溶酶体中诱导铁蛋白降解。经DFO处理的细胞显示出LC3B的胞质积累,LC3B是参与自噬吞噬体-溶酶体降解的关键蛋白。用口服铁螯合剂去铁酮和地拉罗司治疗细胞未显示出LC3B的积累,并且铁蛋白的降解通过蛋白酶体发生。将DFO处理过的细胞与3-甲基腺嘌呤(一种自噬抑制剂)一起孵育,会导致蛋白酶体降解铁蛋白。这些结果表明铁蛋白降解通过两种途径发生:DFO诱导的铁蛋白进入溶酶体的进入和胞质途径,其中铁被蛋白酶体降解之前从铁蛋白中提取铁。

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