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Human ISG15 conjugation targets both IFN-induced and constitutively expressed proteins functioning in diverse cellular pathways

机译:人类ISG15偶联物靶向在多种细胞途径中起作用的IFN诱导型和组成型表达的蛋白

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摘要

IFN-α/β plays an essential role in innate immunity against viral and bacterial infection. Among the proteins induced by IFN-α/β are the ubiquitin-like ISG15 protein and its E1- (Ube1L) and E2- (UbcH8) conjugating enzymes, leading to the conjugation of ISG15 to cellular proteins. It is likely that ISG15 conjugation plays an important role in antiviral response because a human virus, influenza B virus, inhibits ISG15 conjugation. However, the biological function of ISG15 modification remains unknown, largely because only a few human ISG15 target proteins have been identified. Here we purify ISG15-modified proteins from IFN-β-treated human (HeLa) cells by using double-affinity selection and use mass spectroscopy to identify a large number (158) of ISG15 target proteins. Eight of these proteins were subjected to further analysis and verified to be ISG15 modified in IFN-β-treated cells, increasing the likelihood that most, if not all, targets identified by mass spectroscopy are bona fide ISG15 targets. Several of the targets are IFN-α/β-induced antiviral proteins, including PKR, MxA, HuP56, and RIG-I, providing a rationale for the inhibition of ISG15 conjugation by influenza B virus. Most targets are constitutively expressed proteins that function in diverse cellular pathways, including RNA splicing, chromatin remodeling/polymerase II transcription, cytoskeleton organization and regulation, stress responses, and translation. These results indicate that ISG15 conjugation impacts nuclear as well as cytoplasmic functions. By targeting a wide array of constitutively expressed proteins, ISG15 conjugation greatly extends the repertoire of cellular functions that are affected by IFN-α/β.
机译:IFN-α/β在抵抗病毒和细菌感染的先天免疫中起着至关重要的作用。 IFN-α/β诱导的蛋白中有泛素样ISG15蛋白及其E1-(Ube1L)和E2-(UbcH8)结合酶,导致ISG15与细胞蛋白结合。 ISG15偶联可能在抗病毒应答中起重要作用,因为人类病毒B流感病毒会抑制ISG15偶联。但是,ISG15修饰的生物学功能仍然未知,主要是因为仅鉴定了少数人ISG15靶蛋白。在这里,我们通过使用双亲和力选择从IFN-β处理的人(HeLa)细胞中纯化ISG15修饰的蛋白质,并使用质谱法鉴定大量(158)ISG15目标蛋白质。对这些蛋白中的八个进行了进一步分析,并证实在IFN-β处理的细胞中被ISG15修饰,从而增加了大多数(如果不是全部)通过质谱法鉴定的靶标为真正的ISG15靶标的可能性。几个靶标是IFN-α/β诱导的抗病毒蛋白,包括PKR,MxA,HuP56和RIG-1,为B型流感病毒抑制ISG15结合提供了理论依据。大多数靶标是组成型表达的蛋白,可在多种细胞途径中起作用,包括RNA剪接,染色质重塑/聚合酶II转录,细胞骨架组织和调节,应激反应和翻译。这些结果表明,ISG15结合会影响核以及细胞质功能。通过靶向多种组成性表达的蛋白质,ISG15缀合极大地扩展了受IFN-α/β影响的细胞功能的组成部分。

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