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首页> 外文期刊>Microbiology >Autoinducer 2 activity in Escherichia coli culture supernatants can be actively reduced despite maintenance of an active synthase, LuxS
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Autoinducer 2 activity in Escherichia coli culture supernatants can be actively reduced despite maintenance of an active synthase, LuxS

机译:尽管维持活性合成酶,Luxs,但在大肠杆菌培养上清液中的Auto uchia Coli培养上清液可以积极降低

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Production of the signalling molecule (autoinducer-2) synthesized by LuxS has been proposed to be pivotal to a universal mechanism of inter-species bacterial cell–cell communication (quorum sensing); however recently the function of LuxS has been noted to be integral to central metabolism since it contributes to the activated methyl cycle. This paper shows that when Helicobacter pylori LuxS is overproduced in Escherichia coli, it forms cross-linkable multimers. These multimers persist at comparable levels after 24?h of growth if glucose is omitted from the growth medium; however, the levels of extracellular autoinducer-2 decline (Glucose Retention of AI-2 Levels: GRAIL). Glycerol, maltose, galactose, ribose and l-arabinose could substitute for glucose, but lactose, d-arabinose, acetate, citrate and pyruvate could not. Mutations in (i) metabolic pathways (glycolytic enzymes eno, pgk, pgm; galactose epimerase; the Pta–AckA pathway), (ii) sugar transport (pts components, rbs operon, mgl, trg), and (iii) regulators involved in conventional catabolic repression (crp, cya), cAMP-independent catabolite repression (creC, fruR, rpoS,) the stringent response (relA, spoT) and the global carbon storage regulator (csrA) did not prevent GRAIL. Although the basis of GRAIL remains uncertain, it is clear that the mechanism is distinct from conventional catabolite repression. Moreover, GRAIL is not due to inactivation of the enzymic activity of LuxS, since in E. coli, LuxS contained within stationary-phase cells grown in the absence of glucose maintains its activity in vitro.
机译:已经提出了由Lux合成的信号分子(Autoinducer-2)的产生,以赋予物种间细菌细胞 - 细胞通信(法定传感)的普遍机制;然而,最近,Lux的功能已被认为是中央新陈代谢的一体化,因为它有助于活化的甲基循环。本文表明,当幽门螺杆菌幽门螺杆菌在大肠杆菌过度引发时,它形成可交联多方形。如果从生长培养基中省略葡萄糖,则这些多数量在24℃的同等水平上持续;然而,细胞外自动ucuceer-2的水平下降(葡萄糖保留AI-2水平:Grail)。甘油,麦芽糖,半乳糖,核糖和L-阿拉伯糖可替代葡萄糖,但乳糖,D-阿拉伯糖,乙酸盐,柠檬酸盐和丙酮酸不能。 (i)代谢途径(糖酵解酶ENO,PGK,PGM;半乳糖映像酶的突变; PTA-Acka途径),(ii)糖类(PTS组件,RBS操纵子,MGL,TRG)和(III)调节器常规的分解代谢抑制(CRP,CYA),营地无关的分子抑制(CREC,FRUR,RPO)严格响应(RELA,SPOC)和全球碳储存调节器(CSRA)并未防止Grail。虽然Grail的基础仍然不确定,但很明显,该机制与常规的分解代谢物抑制不同。此外,Grail不是由于Luxs的酶活性的灭活,因为在没有葡萄糖的情况下生长的固定相细胞中含有的Lux,因此在体外保持其活性。

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