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病毒抑制 TIR gcADPR 信号传导以克服细菌防御。

Viruses inhibit TIR gcADPR signalling to overcome bacterial defence.

机构信息

Department of Molecular Genetics, Weizmann Institute of Science, Rehovot, Israel.

Department of Microbiology, Harvard Medical School, Boston, MA, USA.

出版信息

Nature. 2022 Nov;611(7935):326-331. doi: 10.1038/s41586-022-05375-9. Epub 2022 Sep 29.

Abstract

The Toll/interleukin-1 receptor (TIR) domain is a key component of immune receptors that identify pathogen invasion in bacteria, plants and animals. In the bacterial antiphage system Thoeris, as well as in plants, recognition of infection stimulates TIR domains to produce an immune signalling molecule whose molecular structure remains elusive. This molecule binds and activates the Thoeris immune effector, which then executes the immune function. We identified a large family of phage-encoded proteins, denoted here as Thoeris anti-defence 1 (Tad1), that inhibit Thoeris immunity. We found that Tad1 proteins are 'sponges' that bind and sequester the immune signalling molecule produced by TIR-domain proteins, thus decoupling phage sensing from immune effector activation and rendering Thoeris inactive. Tad1 can also efficiently sequester molecules derived from a plant TIR-domain protein, and a high-resolution crystal structure of Tad1 bound to a plant-derived molecule showed a unique chemical structure of 1 ''-2' glycocyclic ADPR (gcADPR). Our data furthermore suggest that Thoeris TIR proteins produce a closely related molecule, 1''-3' gcADPR, which activates ThsA an order of magnitude more efficiently than the plant-derived 1''-2' gcADPR. Our results define the chemical structure of a central immune signalling molecule and show a new mode of action by which pathogens can suppress host immunity.

摘要

Toll/白细胞介素-1 受体 (TIR) 结构域是识别细菌、植物和动物中病原体入侵的免疫受体的关键组成部分。在细菌噬菌体抗噬菌体系统 Thoeris 中,以及在植物中,感染的识别会刺激 TIR 结构域产生一种免疫信号分子,但其分子结构仍不清楚。这种分子结合并激活 Thoeris 免疫效应物,然后执行免疫功能。我们鉴定了一大类噬菌体编码蛋白,这里称为 Thoeris 抗防御蛋白 1 (Tad1),它们可以抑制 Thoeris 免疫。我们发现 Tad1 蛋白是“海绵”,可以结合和隔离由 TIR 结构域蛋白产生的免疫信号分子,从而将噬菌体的感应与免疫效应物的激活解耦,并使 Thoeris 失活。Tad1 还可以有效地隔离来自植物 TIR 结构域蛋白的分子,并且 Tad1 与植物衍生分子结合的高分辨率晶体结构显示了独特的 1 ''-2' 糖环 ADPR (gcADPR) 化学结构。我们的数据还表明,Thoeris TIR 蛋白产生一种密切相关的分子,1 ''-3' gcADPR,它比植物衍生的 1 ''-2' gcADPR 更有效地激活 ThsA,效率高出一个数量级。我们的结果定义了一种中心免疫信号分子的化学结构,并展示了一种新的作用模式,病原体可以通过这种模式抑制宿主免疫。

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