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IFI16 新型转录本异构体抑制 AIM2 炎性小体激活。

Inhibition of AIM2 inflammasome activation by a novel transcript isoform of IFI16.

机构信息

School of Biomedical Sciences, The University of Hong Kong, Pokfulam, Hong Kong.

Department of Microbiology, The University of Hong Kong, Pokfulam, Hong Kong.

出版信息

EMBO Rep. 2018 Oct;19(10). doi: 10.15252/embr.201845737. Epub 2018 Aug 13.

Abstract

Mouse p202 is a disease locus for lupus and a dominant-negative inhibitor of AIM2 inflammasome activation. A human homolog of p202 has not been identified so far. Here, we report a novel transcript isoform of human IFI16-designated IFI16-β, which has a domain architecture similar to that of mouse p202. Like p202, IFI16-β contains two HIN domains, but lacks the pyrin domain. IFI16-β is ubiquitously expressed in various human tissues and cells. Its mRNA levels are also elevated in leukocytes of patients with lupus, virus-infected cells, and cells treated with interferon-β or phorbol ester. IFI16-β co-localizes with AIM2 in the cytoplasm, whereas IFI16-α is predominantly found in the nucleus. IFI16-β interacts with AIM2 to impede the formation of a functional AIM2-ASC complex. In addition, IFI16-β sequesters cytoplasmic dsDNA and renders it unavailable for AIM2 sensing. Enforced expression of IFI16-β inhibits the activation of AIM2 inflammasome, whereas knockdown of IFI16-β augments interleukin-1β secretion triggered by dsDNA but not dsRNA Thus, cytoplasm-localized IFI16-β is functionally equivalent to mouse p202 that exerts an inhibitory effect on AIM2 inflammasome.

摘要

小鼠 p202 是狼疮的疾病位点,也是 AIM2 炎性小体激活的显性负抑制剂。到目前为止,尚未鉴定出 p202 的人类同源物。在这里,我们报告了一种人类 IFI16 的新型转录本异构体,命名为 IFI16-β,它具有与小鼠 p202 相似的结构域架构。与 p202 一样,IFI16-β 包含两个 HIN 结构域,但缺乏 pyrin 结构域。IFI16-β 在各种人类组织和细胞中广泛表达。狼疮患者的白细胞、病毒感染的细胞以及用干扰素-β或佛波酯处理的细胞中,其 mRNA 水平也升高。IFI16-β 在细胞质中与 AIM2 共定位,而 IFI16-α 主要存在于细胞核中。IFI16-β 与 AIM2 相互作用,阻碍功能性 AIM2-ASC 复合物的形成。此外,IFI16-β 可将细胞质中的 dsDNA 隔离,使其无法被 AIM2 识别。强制表达 IFI16-β 可抑制 AIM2 炎性小体的激活,而 IFI16-β 的敲低则增强了 dsDNA 而非 dsRNA 触发的白细胞介素-1β 的分泌。因此,定位于细胞质的 IFI16-β 在功能上相当于小鼠 p202,对 AIM2 炎性小体具有抑制作用。

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