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鼠伤寒沙门氏菌效应子-免疫系统Tae4/Tai4的结构解析

Structural Insights into the Effector - Immunity System Tae4/Tai4 from Salmonella typhimurium.

作者信息

Benz Juliane, Reinstein Jochen, Meinhart Anton

机构信息

Department of Biomolecular Mechanisms, Max Planck Institute for Medical Research, Heidelberg, Germany.

出版信息

PLoS One. 2013 Jun 27;8(6):e67362. doi: 10.1371/journal.pone.0067362. Print 2013.

Abstract

Type-6-secretion systems of Gram-negative bacteria are widely distributed needle-like multi-protein complexes that are involved in microbial defense mechanisms. During bacterial competition these injection needles dispense effector proteins into the periplasm of competing bacteria where they induce degradation of the peptidoglycan scaffold and lead to cell lysis. Donor cells co-produce immunity proteins and shuttle them into their own periplasm to prevent accidental toxication by siblings. Recently, a plethora of previously unidentified hydrolases have been suggested to be peptidoglycan degrading amidases. These hydrolases are part of effector/immunity pairs that have been associated with bacterial warfare by type-6-secretion systems. The Tae4 and Tai4 operon encoded by Salmonella typhimurium is one of these newly discovered effector/immunity pairs. The Tae4 effector proteins induce cell lysis by cleaving the γ-D-glutamyl-L-meso-diaminopimelic acid amide bond of acceptor stem muropeptides of the Gram-negative peptidoglycan. Although homologues of the Tae4/Tai4 system have been identified in various different pathogens, little is known about the functional mechanism of effector protein activity and their inhibition by the cognate immunity proteins. Here, we present the high-resolution crystal structure of the effector Tae4 of S. typhimurium in complex with its immunity protein Tai4. We show that Tae4 contains a classical NlpC/P60-peptidase core which is common to other effector proteins of the type-6-secretion system. However, Tae4 has unique structural features that are exclusively conserved within the family of Tae4 effectors and which are important for the substrate specificity. Most importantly, we show that although the overall structure of Tai4 is different to previously described immunity proteins, the essential mode of enzyme inhibition is conserved. Additionally, we provide evidence that inhibition in the Tae4/Tai4 heterotetramer relies on a central Tai4 dimer in order to acquire functionality.

摘要

革兰氏阴性菌的VI型分泌系统是广泛分布的针状多蛋白复合物,参与微生物防御机制。在细菌竞争过程中,这些注射针将效应蛋白释放到竞争细菌的周质中,在那里它们诱导肽聚糖支架降解并导致细胞裂解。供体细胞共同产生免疫蛋白并将它们转运到自身周质中,以防止被同类细菌意外毒害。最近,大量先前未鉴定的水解酶被认为是肽聚糖降解酰胺酶。这些水解酶是效应蛋白/免疫蛋白对的一部分,与VI型分泌系统介导的细菌竞争有关。鼠伤寒沙门氏菌编码的Tae4和Tai4操纵子就是这些新发现的效应蛋白/免疫蛋白对之一。Tae4效应蛋白通过切割革兰氏阴性菌肽聚糖受体茎部肽聚糖的γ-D-谷氨酰-L-中-二氨基庚二酸酰胺键来诱导细胞裂解。尽管在各种不同病原体中已鉴定出Tae4/Tai4系统的同源物,但对效应蛋白活性的功能机制及其被同源免疫蛋白抑制的情况知之甚少。在此,我们展示了鼠伤寒沙门氏菌效应蛋白Tae4与其免疫蛋白Tai4形成复合物的高分辨率晶体结构。我们表明,Tae4包含一个典型的NlpC/P60肽酶核心,这是VI型分泌系统其他效应蛋白所共有的。然而,Tae4具有独特的结构特征,这些特征仅在Tae4效应蛋白家族中保守,并且对底物特异性很重要。最重要的是,我们表明,尽管Tai4的整体结构与先前描述的免疫蛋白不同,但酶抑制的基本模式是保守的。此外,我们提供证据表明,Tae4/Tai4异源四聚体中的抑制作用依赖于一个中央Tai4二聚体以获得功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/953c/3695027/9dc266364900/pone.0067362.g001.jpg

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