MRC Centre for Molecular Bacteriology and Infection (CMBI), Division of Cell and Molecular Biology, Imperial College London, London, SW7 2AZ, UK.
Mol Microbiol. 2012 Oct;86(2):437-56. doi: 10.1111/j.1365-2958.2012.08204.x. Epub 2012 Aug 29.
In Pseudomonas aeruginosa three type VI secretion systems (T6SSs) coexist, called H1- to H3-T6SSs. Several T6SS components are proposed to be part of a macromolecular complex resembling the bacteriophage tail. The T6SS protein HsiE1 (TagJ) is unique to the H1-T6SS and absent from the H2- and H3-T6SSs. We demonstrate that HsiE1 interacts with a predicted N-terminal α-helix in HsiB1 (TssB) thus forming a novel subcomplex of the T6SS. HsiB1 is homologous to the Vibrio cholerae VipA component, which contributes to the formation of a bacteriophage tail sheath-like structure. We show that the interaction between HsiE1 and HsiB1 is specific and does not occur between HsiE1 and HsiB2. Proteins of the TssB family encoded in T6SS clusters lacking a gene encoding a TagJ-like component are often devoid of the predicted N-terminal helical region, which suggests co-evolution. We observe that a synthetic peptide corresponding to the N-terminal 20 amino acids of HsiB1 interacts with purified HsiE1 protein. This interaction is a common feature to other bacterial T6SSs that display a TagJ homologue as shown here with Serratia marcescens. We further show that hsiE1 is a non-essential gene for the T6SS and suggest that HsiE1 may modulate incorporation of HsiB1 into the T6SS.
在铜绿假单胞菌中存在三种类型 VI 分泌系统 (T6SS),分别称为 H1-T6SS 到 H3-T6SS。有几种 T6SS 组件被认为是类似于噬菌体尾部的大分子复合物的一部分。T6SS 蛋白 HsiE1(TagJ)是 H1-T6SS 的特有蛋白,不存在于 H2-T6SS 和 H3-T6SS 中。我们证明 HsiE1 与 HsiB1(TssB)中预测的 N 端α-螺旋相互作用,从而形成 T6SS 的新型亚复合物。HsiB1 与霍乱弧菌的 VipA 成分同源,有助于形成噬菌体尾部鞘状结构。我们表明 HsiE1 与 HsiB1 之间的相互作用是特异性的,并且不会发生在 HsiE1 与 HsiB2 之间。在缺乏编码类似于 TagJ 成分的基因的 T6SS 簇中编码的 TssB 家族蛋白通常缺乏预测的 N 端螺旋区,这表明它们共同进化。我们观察到与 HsiB1 的 N 端 20 个氨基酸相对应的合成肽与纯化的 HsiE1 蛋白相互作用。这种相互作用是其他具有类似于 TagJ 的细菌 T6SS 的共同特征,如在这里与粘质沙雷氏菌的情况所示。我们进一步表明 hsiE1 是 T6SS 的非必需基因,并表明 HsiE1 可能调节 HsiB1 掺入 T6SS。