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首页> 外文期刊>Journal of Leukocyte Biology: An Official Publication of the Reticuloendothelial Society >Protein disulfide isomerase (PDI) associates with NADPH oxidase and is required for phagocytosis of Leishmania chagasi promastigotes by macrophages.
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Protein disulfide isomerase (PDI) associates with NADPH oxidase and is required for phagocytosis of Leishmania chagasi promastigotes by macrophages.

机译:蛋白质二硫键异构酶(PDI)与NADPH氧化酶缔合,是巨噬细胞吞噬利什曼原虫(Leishmania chagasi)前鞭毛体的吞噬作用所必需的。

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摘要

PDI, a redox chaperone, is involved in host cell uptake of bacteria/viruses, phagosome formation, and vascular NADPH oxidase regulation. PDI involvement in phagocyte infection by parasites has been poorly explored. Here, we investigated the role of PDI in in vitro infection of J774 macrophages by amastigote and promastigote forms of the protozoan Leishmania chagasi and assessed whether PDI associates with the macrophage NADPH oxidase complex. Promastigote but not amastigote phagocytosis was inhibited significantly by macrophage incubation with thiol/PDI inhibitors DTNB, bacitracin, phenylarsine oxide, and neutralizing PDI antibody in a parasite redox-dependent way. Binding assays indicate that PDI preferentially mediates parasite internalization. Bref-A, an ER-Golgi-disrupting agent, prevented PDI concentration in an enriched macrophage membrane fraction and promoted a significant decrease in infection. Promastigote phagocytosis was increased further by macrophage overexpression of wild-type PDI and decreased upon transfection with an antisense PDI plasmid or PDI siRNA. At later stages of infection, PDI physically interacted with L. chagasi, as revealed by immunoprecipitation data. Promastigote uptake was inhibited consistently by macrophage preincubation with catalase. Additionally, loss- or gain-of-function experiments indicated that PMA-driven NADPH oxidase activation correlated directly with PDI expression levels. Close association between PDI and the p22phox NADPH oxidase subunit was shown by confocal colocalization and coimmunoprecipitation. These results provide evidence that PDI not only associates with phagocyte NADPH oxidase but also that PDI is crucial for efficient macrophage infection by L. chagasi.
机译:PDI,氧化还原伴侣,参与细菌/病毒的宿主细胞摄取,吞噬体形成和血管NADPH氧化酶调节。 PDI参与寄生虫吞噬细胞感染的研究很少。在这里,我们调查了原生动物利什曼原虫恰加斯体的鞭毛体和前鞭毛体形式,PDI在J774巨噬细胞体外感染中的作用,并评估了PDI是否与巨噬细胞NADPH氧化酶复合体相关。巨噬细胞与硫醇/ PDI抑制剂DTNB,杆菌肽,苯ar氧化物和中和PDI抗体以寄生物氧化还原依赖性方式被巨噬细胞孵育,可显着抑制前鞭毛体的吞噬作用,但不会抑制鞭毛体的吞噬作用。结合试验表明,PDI优先介导寄生虫内在化。 ER-高尔基体破坏剂Bref-A阻止了巨噬细胞膜富集部分的PDI浓度升高,并显着降低了感染率。野生型PDI的巨噬细胞过表达进一步增加了前鞭毛虫的吞噬作用,而用反义PDI质粒或PDI siRNA转染后,前鞭毛虫的吞噬作用进一步降低。免疫沉淀数据显示,在感染的后期,PDI与恰加斯乳杆菌发生了物理相互作用。巨噬细胞与过氧化氢酶预孵育一致地抑制了前鞭毛体的摄取。此外,功能丧失或获得功能的实验表明,PMA驱动的NADPH氧化酶激活与PDI表达水平直接相关。共聚焦共定位和共免疫沉淀显示PDI和p22phox NADPH氧化酶亚基之间的紧密联系。这些结果提供了证据,PDI不仅与吞噬细胞NADPH氧化酶相关,而且PDI对于南美锥虫的有效巨噬细胞感染至关重要。

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