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首页> 外文期刊>Journal of bacteriology >Autoinducer 2 Controls Biofilm Formation in Escherichia coli through a Novel Motility Quorum-Sensing Regulator (MqsR, B3022)
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Autoinducer 2 Controls Biofilm Formation in Escherichia coli through a Novel Motility Quorum-Sensing Regulator (MqsR, B3022)

机译:Autoinducer 2通过新型运动群体感应调节器(MqsR,B3022)控制大肠杆菌中生物膜的形成

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The cross-species bacterial communication signal autoinducer 2 (AI-2), produced by the purified enzymes Pfs (nucleosidase) and LuxS (terminal synthase) from S-adenosylhomocysteine, directly increased Escherichia coli biofilm mass 30-fold. Continuous-flow cells coupled with confocal microscopy corroborated these results by showing the addition of AI-2 significantly increased both biofilm mass and thickness and reduced the interstitial space between microcolonies. As expected, the addition of AI-2 to cells which lack the ability to transport AI-2 (lsr null mutant) failed to stimulate biofilm formation. Since the addition of AI-2 increased cell motility through enhanced transcription of five motility genes, we propose that AI-2 stimulates biofilm formation and alters its architecture by stimulating flagellar motion and motility. It was also found that the uncharacterized protein B3022 regulates this AI-2-mediated motility and biofilm phenotype through the two-component motility regulatory system QseBC. Deletion of b3022 abolished motility, which was restored by expressing b3022 in trans. Deletion of b3022 also decreased biofilm formation significantly, relative to the wild-type strain in three media (46 to 74%) in 96-well plates, as well as decreased biomass (8-fold) and substratum coverage (19-fold) in continuous-flow cells with minimal medium (growth rate not altered and biofilm restored by expressing b3022 in trans). Deleting b3022 changed the wild-type biofilm architecture from a thick (54-μm) complex structure to one that contained only a few microcolonies. B3022 positively regulates expression of qseBC, flhD, fliA, and motA, since deleting b3022 decreased their transcription by 61-, 25-, 2.4-, and 18-fold, respectively. Transcriptome analysis also revealed that B3022 induces crl (26-fold) and flhCD (8- to 27-fold). Adding AI-2 (6.4 μM) increased biofilm formation of wild-type K-12 MG1655 but not that of the isogenic b3022, qseBC, fliA, and motA mutants. Adding AI-2 also increased motA transcription for the wild-type strain but did not stimulate motA transcription for the b3022 and qseB mutants. Together, these results indicate AI-2 induces biofilm formation in E. coli through B3022, which then regulates QseBC and motility; hence, b3022 has been renamed the motility quorum-sensing regulator gene (the mqsR gene).
机译: S-腺苷同型半胱氨酸的纯化酶Pfs(核苷酸酶)和LuxS(末端合酶)产生的跨物种细菌通讯信号自动诱导物2(AI-2),直接增加了 Escherichia coli < / em>生物膜质量30倍。连续流动细胞与共聚焦显微镜相结合,通过证明添加AI-2可以显着增加生物膜质量和厚度,并减少微菌落之间的间隙,从而证实了这些结果。不出所料,向缺乏运输AI-2能力的细胞( lsr null突变体)添加AI-2未能刺激生物膜的形成。由于AI-2的添加通过增强五个运动基因的转录而增加了细胞运动,因此我们建议AI-2刺激生物膜形成并通过刺激鞭毛运动和运动来改变其结构。还发现未表征的蛋白B3022通过两组分运动调节系统QseBC调节AI-2介导的运动和生物膜表型。 b3022的删除消除了活力,通过在 trans 中表达b3022可以恢复活力。相对于96孔板中的三种培养基中的野生型菌株(46%至74%),b3022的缺失也显着降低了生物膜的形成,并且在30%的生物量中基质的覆盖率降低了(19倍)。培养基最少的连续流动细胞(通过在 trans 中表达b3022,生长速率不变,生物膜得以恢复)。删除b3022将野生型生物膜结构从厚的(54-μm)复杂结构更改为仅包含几个微菌落的结构。 B3022积极调节 qseBC flhD fliA motA 的表达,因为删除b3022会使它们的转录降低61 -,25-,2.4-和18倍。转录组分析还显示,B3022诱导 crl (26倍)和 flhCD (8-27倍)。加入AI-2(6.4μM)可以增加野生型K-12 MG1655的生物膜形成,但不能增加同基因的b3022, qseBC fliA motA的生物膜形成。 突变体。添加AI-2也会增加野生型菌株的 motA 转录,但不会刺激b3022和 qseB 突变体的 motA 转录。总之,这些结果表明AI-2诱导了 E中生物膜的形成。大肠杆菌通过B3022,然后调控QseBC和运动。因此,b3022已被重命名为运动群体感应调节基因( mqsR 基因)。

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