效应器
VI型分泌系统
生物
大肠杆菌
DNA
细胞生物学
分泌物
功能(生物学)
沙门氏菌
毒力
微生物学
生物化学
遗传学
细菌
基因
作者
Julia Takuno Hespanhol,Daniel Enrique Sanchez-Limache,Gianlucca Gonçalves Nicastro,Liam Mead,E.E. Llontop,Gustavo Chagas-Santos,Chuck Shaker Farah,Robson Francisco de Souza,Rodrigo S. Galhardo,Andrew Lovering,Ethel Bayer-Santos
出处
期刊:eLife
[eLife Sciences Publications, Ltd.]
日期:2022-10-13
卷期号:11
摘要
The type VI secretion system (T6SS) secretes antibacterial effectors into target competitors. Salmonella spp. encode five phylogenetically distinct T6SSs. Here we characterize the function of the SPI-22 T6SS of Salmonella bongori showing that it has antibacterial activity and identify a group of antibacterial T6SS effectors (TseV1-4) containing an N-terminal PAAR-like domain and a C-terminal VRR-Nuc domain encoded next to cognate immunity proteins with a DUF3396 domain (TsiV1-4). TseV2 and TseV3 are toxic when expressed in Escherichia coli and bacterial competition assays confirm that TseV2 and TseV3 are secreted by the SPI-22 T6SS. Phylogenetic analysis reveals that TseV1-4 are evolutionarily related to enzymes involved in DNA repair. TseV3 recognizes specific DNA structures and preferentially cleave splayed arms, generating DNA double-strand breaks and inducing the SOS response in target cells. The crystal structure of the TseV3:TsiV3 complex reveals that the immunity protein likely blocks the effector interaction with the DNA substrate. These results expand our knowledge on the function of Salmonella pathogenicity islands, the evolution of toxins used in biological conflicts, and the endogenous mechanisms regulating the activity of these toxins.
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