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Enterohemorrhagic Escherichia coli Biofilms Are Inhibited by 7-Hydroxyindole and Stimulated by Isatin

机译:肠出血性大肠杆菌生物膜被7-羟基吲哚抑制并被Isatin刺激

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摘要

Since indole is present at up to 500 μM in the stationary phase and is an interspecies biofilm signal (J. Lee, A. Jayaraman, and T. K. Wood, BMC Microbiol. 7:42, 2007), we investigated hydroxyindoles as biofilm signals and found them also to be nontoxic interspecies biofilm signals for enterohemorrhagic Escherichia coli O157:H7 (EHEC), E. coli K-12, and Pseudomonas aeruginosa. The genetic basis of EHEC biofilm formation was also explored, and notably, virulence genes in biofilm cells were repressed compared to those in planktonic cells. In Luria-Bertani medium (LB) on polystyrene with quiescent conditions, 7-hydroxyindole decreased EHEC biofilm formation 27-fold and decreased K-12 biofilm formation 8-fold without affecting the growth of planktonic cells. 5-Hydroxyindole also decreased biofilm formation 11-fold for EHEC and 6-fold for K-12. In contrast, isatin (indole-2,3-dione) increased biofilm formation fourfold for EHEC, while it had no effect for K-12. When continuous-flow chambers were used, confocal microscopy revealed that EHEC biofilm formation was reduced 6-fold by indole and 10-fold by 7-hydroxyindole in LB. Whole-transcriptome analysis revealed that isatin represses indole synthesis by repressing tnaABC 7- to 37-fold in EHEC, and extracellular indole levels were found to be 20-fold lower. Furthermore, isatin repressed the AI-2 transporters lsrABCDFGKR, while significantly inducing the flagellar genes flgABCDEFGHIJK and fliAEFGILMNOPQ (which led to a 50% increase in motility). 7-Hydroxyindole induces the biofilm inhibitor/stress regulator ycfR and represses cysADIJPU/fliC (which led to a 50% reduction in motility) and purBCDEFHKLMNRT. Isogenic mutants showed that 7-hydroxyindole inhibits E. coli biofilm through cysteine metabolism. 7-Hydroxyindole (500 μM) also stimulates P. aeruginosa PAO1 biofilm formation twofold; therefore, hydroxyindoles are interspecies bacterial signals, and 7-hydroxyindole is a potent EHEC biofilm inhibitor.
机译:由于吲哚在固定相中的含量高达500μM,是种间生物膜信号(J. Lee,A. Jayaraman和TK Wood,BMC Microbiol。7:42,2007),因此我们研究了羟基吲哚作为生物膜信号并发现它们对于肠出血性大肠杆菌O157:H7(EHEC),大肠杆菌K-12和铜绿假单胞菌也是无毒的种间生物膜信号。还探讨了EHEC生物膜形成的遗传基础,值得注意的是,与浮游细胞相比,生物膜细胞中的毒力基因受到抑制。在静态的聚苯乙烯Luria-Bertani培养基(LB)中,7-羟基吲哚将EHEC生物膜形成减少了27倍,而K-12生物膜形成减少了8倍,而不会影响浮游细胞的生长。 5-羟基吲哚也使EHEC的生物膜形成降低了11倍,而K-12降低了6倍。相反,对于EHEC,靛红(吲哚-2,3-二酮)的生物膜形成增加了四倍,而对K-12没有影响。当使用连续流动室时,共聚焦显微镜检查显示,LB中EHEC生物膜的形成被吲哚减少6倍,被7-羟基吲哚减少10倍。全转录组分析显示,通过在EHEC中将tnaABC抑制7到37倍,靛红抑制了吲哚的合成,并且发现细胞外吲哚水平要低20倍。此外,Isatin抑制AI-2转运蛋白lsrABCDFGKR,同时显着诱导鞭毛基因flgABCDEFGHIJK和fliAEFGILMNOPQ(导致运动性增加50%)。 7-羟基吲哚诱导生物膜抑制剂/压力调节剂ycfR并抑制cysADIJPU / fliC(导致活力降低50%)和purBCDEFHKLMNRT。等基因突变体表明7-羟基吲哚通过半胱氨酸代谢抑制大肠杆菌生物膜。 7-羟基吲哚(500μM)也能刺激铜绿假单胞菌PAO1生物膜形成的两倍。因此,羟基吲哚是种间细菌信号,而7-羟基吲哚是有效的EHEC生物膜抑制剂。

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