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化学伴侣可减轻内质网应激并防止突变型HFE聚集体形成。

Chemical chaperones reduce endoplasmic reticulum stress and prevent mutant HFE aggregate formation.

作者信息

de Almeida Sérgio F, Picarote Gonçalo, Fleming John V, Carmo-Fonseca Maria, Azevedo Jorge E, de Sousa Maria

机构信息

Iron Genes and the Immune System Laboratory, Instituto de Biologia, Molecular e Celular, Universidade do Porto and Instituto de Ciências Biomédicas Abel Salazar, 4150-180 Porto, Portugal.

出版信息

J Biol Chem. 2007 Sep 21;282(38):27905-12. doi: 10.1074/jbc.M702672200. Epub 2007 Jul 11.

Abstract

HFE C282Y, the mutant protein associated with hereditary hemochromatosis (HH), fails to acquire the correct conformation in the endoplasmic reticulum (ER) and is targeted for degradation. We have recently shown that an active unfolded protein response (UPR) is present in the cells of patients with HH. Now, by using HEK 293T cells, we demonstrate that the stability of HFE C282Y is influenced by the UPR signaling pathway that promotes its degradation. Treatment of HFE C282Y-expressing cells with tauroursodeoxycholic acid (TUDCA), a bile acid derivative with chaperone properties, or with the chemical chaperone sodium 4-phenylbutyrate (4PBA) impeded the UPR activation. However, although TUDCA led to an increased stability of the mutant protein, 4PBA contributed to a more efficient disposal of HFE C282Y to the degradation route. Fluorescence microscopy and biochemical analysis of the subcellular localization of HFE revealed that a major portion of the C282Y mutant protein forms intracellular aggregates. Although neither TUDCA nor 4PBA restored the correct folding and intracellular trafficking of HFE C282Y, 4PBA prevented its aggregation. These data suggest that TUDCA hampers the UPR activation by acting directly on its signal transduction pathway, whereas 4PBA suppresses ER stress by chemically enhancing the ER capacity to cope with the expression of misfolded HFE, facilitating its degradation. Together, these data shed light on the molecular mechanisms involved in HFE C282Y-related HH and open new perspectives on the use of orally active chemical chaperones as a therapeutic approach for HH.

摘要

与遗传性血色素沉着症(HH)相关的突变蛋白HFE C282Y在内质网(ER)中无法获得正确的构象,并被靶向降解。我们最近发现HH患者的细胞中存在活跃的未折叠蛋白反应(UPR)。现在,通过使用HEK 293T细胞,我们证明HFE C282Y的稳定性受促进其降解的UPR信号通路影响。用具有伴侣性质的胆汁酸衍生物牛磺熊去氧胆酸(TUDCA)或化学伴侣4-苯丁酸钠(4PBA)处理表达HFE C282Y的细胞可阻碍UPR激活。然而,尽管TUDCA导致突变蛋白的稳定性增加,但4PBA有助于更有效地将HFE C282Y导向降解途径。HFE亚细胞定位的荧光显微镜和生化分析表明,C282Y突变蛋白的大部分形成细胞内聚集体。尽管TUDCA和4PBA均未恢复HFE C282Y的正确折叠和细胞内运输,但4PBA可防止其聚集。这些数据表明,TUDCA通过直接作用于其信号转导途径来阻碍UPR激活,而4PBA通过化学增强内质网应对错误折叠的HFE表达的能力来抑制内质网应激,促进其降解。总之,这些数据揭示了与HFE C282Y相关的HH所涉及的分子机制,并为使用口服活性化学伴侣作为HH的治疗方法开辟了新的前景。

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