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ISG15与免疫疾病。

ISG15 and immune diseases.

作者信息

Jeon Young Joo, Yoo Hee Min, Chung Chin Ha

机构信息

School of Biological Sciences, Seoul National University, Seoul 151-742, Republic of Korea.

出版信息

Biochim Biophys Acta. 2010 May;1802(5):485-96. doi: 10.1016/j.bbadis.2010.02.006. Epub 2010 Feb 12.

Abstract

ISG15, the product of interferon (IFN)-stimulated gene 15, is the first identified ubiquitin-like protein, consisting of two ubiquitin-like domains. ISG15 is synthesized as a precursor in certain mammals and, therefore, needs to be processed to expose the C-terminal glycine residue before conjugation to target proteins. A set of three-step cascade enzymes, an E1 enzyme (UBE1L), an E2 enzyme (UbcH8), and one of several E3 ligases (e.g., EFP and HERC5), catalyzes ISG15 conjugation (ISGylation) of a specific protein. These enzymes are unique among the cascade enzymes for ubiquitin and other ubiquitin-like proteins in that all of them are induced by type I IFNs or other stimuli, such as exposure to viruses and lipopolysaccharide. Mass spectrometric analysis has led to the identification of several hundreds of candidate proteins that can be conjugated by ISG15. Some of them are type I IFN-induced proteins, such as PKR and RIG-I, and some are the key regulators that are involved in IFN signaling, such as JAK1 and STAT1, implicating the role of ISG15 and its conjugates in type I IFN-mediated innate immune responses. However, relatively little is known about the functional significance of ISG15 induction due to the lack of information on the consequences of its conjugation to target proteins. Here, we describe the recent progress made in exploring the biological function of ISG15 and its reversible modification of target proteins and thus in their implication in immune diseases.

摘要

ISG15是干扰素(IFN)刺激基因15的产物,是首个被鉴定出的类泛素蛋白,由两个类泛素结构域组成。在某些哺乳动物中,ISG15以前体形式合成,因此,在与靶蛋白结合之前,需要进行加工以暴露出C末端甘氨酸残基。一组三步级联酶,即E1酶(UBE1L)、E2酶(UbcH8)和几种E3连接酶之一(如EFP和HERC5),催化特定蛋白的ISG15结合(ISGylation)。这些酶在泛素和其他类泛素蛋白的级联酶中是独特的,因为它们全部由I型干扰素或其他刺激(如暴露于病毒和脂多糖)诱导产生。质谱分析已鉴定出数百种可被ISG15结合的候选蛋白。其中一些是I型干扰素诱导的蛋白,如PKR和RIG-I,还有一些是参与IFN信号传导的关键调节因子,如JAK1和STAT1,这暗示了ISG15及其结合物在I型干扰素介导的先天性免疫反应中的作用。然而,由于缺乏关于其与靶蛋白结合后果的信息,人们对ISG15诱导的功能意义了解相对较少。在此,我们描述了在探索ISG15的生物学功能及其对靶蛋白的可逆修饰以及它们在免疫疾病中的意义方面所取得的最新进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0924/7127291/9a3df10d5270/gr1_lrg.jpg

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