首页> 外文期刊>Computational and Structural Biotechnology Journal >Functional divergence of flagellar type III secretion system: A case study in a non-flagellated, predatory bacterium
【24h】

Functional divergence of flagellar type III secretion system: A case study in a non-flagellated, predatory bacterium

机译:鞭毛型III分泌系统的功能分歧:一种非鞭毛,掠食性细菌的案例研究

获取原文
           

摘要

The lack of functional flagella and the ability to prey upon other microorganisms are well-known traits of Lysobacter enzymogenes , a plant beneficial bacterial species. Here, we report a possible link between these two traits in the model strain L. enzymogenes OH11 (OH11). The genome of OH11 encompasses several homologous genes involved in the flagellum formation but it lacks a functional fliC , encoding the flagellin. Despite the lack of the main component of the flagellum, OH11 genome includes genes involved in the flagellar type III secretion system (FT3SS), which is commonly deployed by flagellated bacteria to transport flagellar subunit proteins. To understand the role played by FT3SS in OH11, we showed that the remaining FT3SS genes were expressed under laboratory conditions. Subsequently, we showed that the identified FT3SS genes involved in the secretion of the hook-capping protein FlgD, suggesting OH11 likely possessed a functional FT3SS system. Blocking FT3SS in OH11 via inactivation of the ATPase FliI impaired the secretion of the proteins Le3970 (protease), Le4493 (?-1,3-glucanase A) and Le1659 (halo acid dehalogenase family), that showed a toxic activity against the yeast Saccharomyces cerevisiae . The possible link between FT3SS and OH11 antagonism towards S. cerevisiae was also confirmed by loss of toxicity in both mutants of Δ fliI and Δ flhB that lacks the FT3SS structural gene flhB when co-cultured with the yeast strain. The design of synthetic proteins toxic against the Gram-negative bacterium Ralstonia solanacearum further supported the involvement of FT3SS in the ability of OH11 to parasitize other microorganisms. Overall, these results revealed a possible cooption of components of FT3SS system in the competition with other microorganisms in the plant beneficial bacterium OH11 and highlighted a functional divergence of FT3SS between flagellated and non-flagellated bacteria.
机译:缺乏功能性鞭毛和捕食其他微生物的能力是遗传症酶原的众所周知的特征,一种植物有益的细菌种类。在这里,我们在模型菌株L.酶OH11(OH11)中的这两个性状之间的可能链接。 OH11的基因组包括几种涉及鞭毛形成的同源基因,但缺乏鞭毛蛋白的功能叶片。尽管缺乏鞭毛的主要成分,但OH11基因组包括参与鞭毛III型分泌系统(FT3S)的基因,其通常由被鞭打的细菌展开到运输鞭毛亚基蛋白。要了解OH11中FT3SS的作用,我们表明剩余的FT3SS基因在实验室条件下表达。随后,我们表明,涉及钩封蛋白FLGD分泌的鉴定的FT3SS基因,表明OH11可能具有功能性FT3SS系统。通过灭活ATPase FLII的OH11中阻断FT3S损害蛋白质LE3970(蛋白酶),LE4493(α-1,3-葡聚糖酶A)和LE1659(卤酸脱卤酶系列)的分泌,这对酵母糖酵母显示出有毒活性酿酒岛。通过在用酵母菌株共培养时缺乏FT3SS结构基因FLHB的ΔF1II和δF1Hb的毒性丧失,CT3SS和OH11对S.宫内节炎的可能链接。合成蛋白质对革兰氏阴性细菌的毒性菌毒素的设计进一步支持FT3s在OH11寄生其他微生物的能力中的累积。总的来说,这些结果与在所述植物有益细菌OH11其他微生物竞争揭示FT3SS系统的组件的一个可能的共择并强调FT3SS的鞭毛和非鞭毛细菌之间的功能差异。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号