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Sinorhizobium meliloti, a bacterium lacking the autoinducer-2 (AI-2) synthase, responds to AI-2 supplied by other bacteria

机译:Sinorhizobium Meliloti,一种缺乏AutoInucucer-2(AI-2)合成酶的细菌,响应其他细菌提供的AI-2

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摘要

Many bacterial species respond to the quorum-sensing signal autoinducer-2 (AI-2) by regulating different niche-specific genes. Here, we show that Sinorhizobium meliloti, a plant symbiont lacking the gene for the AI-2 synthase, while not capable of producing AI-2 can nonetheless respond to AI-2 produced by other species. We demonstrate that S. meliloti has a periplasmic binding protein that binds AI-2. The crystal structure of this protein (here named SmlsrB) with its ligand reveals that it binds (2R,4S)-2-methyl-2,3,3,4-tetrahydroxytetrahydrofuran (R-THMF), the identical AI-2 isomer recognized by LsrB of Salmonella typhimurium. The gene encoding SmlsrB is in an operon with orthologues of the lsr genes required for AI-2 internalization in enteric bacteria. Accordingly, S. meliloti internalizes exogenous AI-2, and mutants in this operon are defective in AI-2 internalization. S. meliloti does not gain a metabolic benefit from internalizing AI-2, suggesting that AI-2 functions as a signal in S. meliloti. Furthermore, S. meliloti can completely eliminate the AI-2 secreted by Erwinia carotovora, a plant pathogen shown to use AI-2 to regulate virulence. Our findings suggest that S. meliloti is capable of u27eavesdroppingu27 on the AI-2 signalling of other species and interfering with AI-2-regulated behaviours such as virulence.
机译:许多细菌物种通过调节不同的特异性基因来响应仲裁传感信号AutoInucucer-2(AI-2)。在这里,我们表明Sinorhizobium Meliloti,一种缺乏AI-2合酶基因的植物Symbiont,但不能产生AI-2的植物,尽管如此,可以响应其他物种产生的AI-2。我们证明S. Meliloti具有结合Ai-2的周质结合蛋白。具有其配体的该蛋白质(此处命名的Smlsrb)的晶体结构揭示了它结合(2R,4S)-2-甲基-2,3,3,4-四羟基四氢呋喃(R-THMF),相同的AI-2异构体认识到由沙门氏菌的LSRB伤寒伤寒。编码SMLSRB的基因位于具有在肠溶细菌中AI-2内化所需的LSR基因的矫形器的操纵子。因此,S. Meliloti内化​​外源AI-2,并且在AI-2内化中,该操纵子的突变体在缺陷。 S. Meliloti没有获得内化AI-2的代谢益处,表明AI-2作为S. Meliloti中的信号。此外,S.Meliloti可以完全消除由Erwinia Carotovora分泌的AI-2,该植物病原体被示出使用Ai-2调节毒力。我们的研究结果表明,Meliloti能够在其他物种的AI-2信号传导中能够 U2700ROPPING U27,并干扰AI-2调节的行为,例如毒力。

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