Wang Tianyu, Ding Jinjing, Zhang Ying, Wang Da-Cheng, Liu Wei
National Laboratory of Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, People's Republic of China.
Acta Crystallogr D Biol Crystallogr. 2013 Oct;69(Pt 10):1889-900. doi: 10.1107/S090744491301576X. Epub 2013 Sep 20.
The type VI secretion system (T6SS) is a bacterial protein-export machine that is capable of delivering virulence effectors between Gram-negative bacteria. The T6SS of Pseudomonas aeruginosa transports two lytic enzymes, Tse1 and Tse3, to degrade cell-wall peptidoglycan in the periplasm of rival bacteria that are competing for niches via amidase and muramidase activities, respectively. Two cognate immunity proteins, Tsi1 and Tsi3, are produced by the bacterium to inactivate the two antibacterial effectors, thereby protecting its siblings from self-intoxication. Recently, Tse1-Tsi1 has been structurally characterized. Here, the structure of the Tse3-Tsi3 complex is reported at 1.9 Å resolution. The results reveal that Tse3 contains a C-terminal catalytic domain that adopts a soluble lytic transglycosylase (SLT) fold in which three calcium-binding sites were surprisingly observed close to the catalytic Glu residue. The electrostatic properties of the substrate-binding groove are also distinctive from those of known structures with a similar fold. All of these features imply that a unique catalytic mechanism is utilized by Tse3 in cleaving glycosidic bonds. Tsi3 comprises a single domain showing a β-sandwich architecture that is reminiscent of the immunoglobulin fold. Three loops of Tsi3 insert deeply into the groove of Tse3 and completely occlude its active site, which forms the structural basis of Tse3 inactivation. This work is the first crystallographic report describing the three-dimensional structure of the Tse3-Tsi3 effector-immunity pair.
VI型分泌系统(T6SS)是一种细菌蛋白输出机器,能够在革兰氏阴性菌之间传递毒力效应蛋白。铜绿假单胞菌的T6SS可转运两种裂解酶Tse1和Tse3,分别通过酰胺酶和溶菌酶活性来降解竞争生态位的对手细菌周质中的细胞壁肽聚糖。该细菌产生两种同源免疫蛋白Tsi1和Tsi3,使这两种抗菌效应蛋白失活,从而保护其同类免受自身毒害。最近,Tse1-Tsi1的结构已得到表征。在此,报道了Tse3-Tsi3复合物在1.9 Å分辨率下的结构。结果表明,Tse3含有一个C端催化结构域,其采用可溶性裂解转糖基酶(SLT)折叠,令人惊讶的是,在靠近催化性Glu残基处观察到三个钙结合位点。底物结合凹槽的静电特性也与具有相似折叠的已知结构不同。所有这些特征表明,Tse3在切割糖苷键时利用了独特的催化机制。Tsi3由一个显示β三明治结构的单一结构域组成,让人联想到免疫球蛋白折叠。Tsi3的三个环深深插入Tse3的凹槽并完全封闭其活性位点,这构成了Tse3失活的结构基础。这项工作是描述Tse3-Tsi3效应蛋白-免疫蛋白对三维结构的首篇晶体学报告。