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CesH Represses Cereulide Synthesis as an Alpha/Beta Fold Hydrolase in Bacillus cereus

机译:CesH抑制蜡样芽孢杆菌中作为α/β折叠水解酶的蜡菊酯合成。

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Cereulide is notorious as a heat-stable emetic toxin produced by Bacillus cereus and glucose is supposed to be an ingredient supporting its formation. This study showed that glucose addition benefited on cell growth and the early transcription of genes involved in substrate accumulation and toxin synthesis, but it played a negative role in the final production of cereulide. Meanwhile, a lasting enhancement of cesH transcription was observed with the addition of glucose. Moreover, the cereulide production in Δ cesH was obviously higher than that in the wild type. This indicates that CesH has a repression effect on cereulide production. Bioinformatics analysis revealed that CesH was an alpha/beta hydrolase that probably associated with the cell membrane, which was verified by subcellular localization. The esterase activity against para-nitrophenyl acetate (PNPC2) of the recombinant CesH was confirmed. Although no sign of ester bond cleavage in cereulide or valinomycin was demonstrated in in vitro assays, CesH could reverse the cereulide analogue sensitivity of Bacillus subtilis in vivo, by which toxin degradation was facilitated. Moreover, site directed mutations identified that the conserved catalytic triad of CesH might consist of Serine 86, Glutamate 199, and Histidine 227. These results help us to understand the regulation of cereulide production and provide clues for developing control measurements.
机译:蜡菊酯因蜡状芽孢杆菌产生的热稳定催吐毒素而臭名昭著,而葡萄糖被认为是支持其形成的成分。这项研究表明,添加葡萄糖有益于细胞生长以及参与底物积累和毒素合成的基因的早期转录,但对蜡样内酯的最终生产起了负面作用。同时,通过添加葡萄糖观察到了cesH转录的持久增强。此外,ΔcesH中蜡状内酯的产生明显高于野生型。这表明CesH对蜡状内酯的产生具有抑制作用。生物信息学分析表明,CesH是一种α/β水解酶,可能与细胞膜有关,这已通过亚细胞定位得到证实。证实了重组CesH对乙酸对硝基苯酯(PNPC2)的酯酶活性。尽管在体外试验中未证明蜡样内酯或缬氨霉素中酯键的断裂迹象,但CesH可以逆转枯草芽孢杆菌在体内对蜡样内酯类似物的敏感性,从而促进了毒素的降解。此外,定点突变确定了CesH的保守催化三联体可能由丝氨酸86,谷氨酸199和组氨酸227组成。这些结果有助于我们了解小脑内酯产生的调节作用,并为开发对照测量提供线索。

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