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Immunoproteasomes preserve protein homeostasis upon interferon-induced oxidative stress

机译:免疫蛋白酶体可在干扰素诱导的氧化应激时保持蛋白质稳态

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摘要

Interferon (IFN)-induced immunoproteasomes (i-proteasomes) have been associated with improved processing of major histocompatibility complex (MHC) class I antigens. Here, we show that i-proteasomes function to protect cell viability under conditions of IFN-induced oxidative stress. IFNs trigger the production of reactive oxygen species, which induce protein oxidation and the formation of nascent, oxidant-damaged proteins. We find that the ubiquitylation machinery is concomitantly upregulated in response to IFNs, functioning to target defective ribosomal products (DRiPs) for degradation by i-proteasomes. i-proteasome-deficiency in cells and in murine inflammation models results in the formation of aggresome-like induced structures and increased sensitivity to apoptosis. Efficient clearance of these aggregates by the enhanced proteolytic activity of the i-proteasome is important for the preservation of cell viability upon IFN-induced oxidative stress. Our findings suggest that rather than having?a specific role in the production of class I antigens, i-proteasomes increase the peptide supply for antigen presentation as part of a more general role in the maintenance of protein homeostasis.
机译:干扰素(IFN)诱导的免疫蛋白酶体(i-蛋白酶体)与主要组织相容性复合物(MHC)I类抗原的加工改善有关。在这里,我们显示i-蛋白酶体在IFN诱导的氧化应激条件下起到保护细胞活力的作用。干扰素触发活性氧物质的产生,从而诱导蛋白质氧化和新生的,氧化剂损坏的蛋白质的形成。我们发现,泛素化机制伴随着对IFN的响应而被上调,其功能是针对有缺陷的核糖体产物(DRiPs),以被i-蛋白酶体降解。细胞和鼠类炎症模型中的i-蛋白酶体缺乏症导致形成了类似聚集体的诱导结构并增加了对细胞凋亡的敏感性。通过增强i-蛋白酶体的蛋白水解活性来有效清除这些聚集体,对于在IFN诱导的氧化应激下保持细胞活力至关重要。我们的发现表明,i-蛋白酶体不是在I类抗原的产生中起特定作用,而是增加了用于抗原呈递的肽供应,这是维持蛋白质稳态的更一般作用的一部分。

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