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首页> 外文期刊>FEMS immunology and medical microbiology >The yddV-dos operon controls biofilm formation through the regulation of genes encoding curli fibers' subunits in aerobically growing Escherichia coli.
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The yddV-dos operon controls biofilm formation through the regulation of genes encoding curli fibers' subunits in aerobically growing Escherichia coli.

机译:yddV-dos操纵子通过有氧生长的大肠埃希氏菌中编码卷毛纤维亚基的基因的调控来控制生物膜的形成。

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摘要

In bacteria, intracellular amounts of the signal molecule cyclic di-GMP (c-di-GMP) are determined by biosynthetic enzymes, or diguanylate cyclases (DGCs), and degradative enzymes, or c-di-GMP phosphodiesterases (c-PDEs). In Escherichia coli, the production of curli fibers, an important adhesion factor, responds to c-di-GMP. The yddV-dos operon, which encodes a DGC and a c-PDE acting as a protein complex, is highly expressed at a low growth temperature and in the stationary phase, i.e. conditions that also stimulate curli production. We show that perturbations in the balance between YddV and Dos, obtained either through inactivation of the yddV gene or through overproduction of either YddV or Dos, strongly affect curli production. Both YddV and Dos proteins regulate the transcription of the csgBAC operon, which encodes curli structural subunits, while not affecting the expression of the regulatory operon csgDEFG. Consistent with the role of both YddV and Dos proteins as oxygen sensors, their effects on csgBAC gene expression were dramatically reduced in cells grown under anoxic conditions. Our results show that the yddV-dos operon plays an important role in the expression of curli-encoding genes in aerobically growing E. coli, and suggest that YddV and Dos, through their opposite activities, might finely tune curli production in response to oxygen availability.
机译:在细菌中,信号分子环状双GMP(c-di-GMP)的细胞内含量由生物合成酶或双鸟苷酸环化酶(DGC)和降解酶或c-di-GMP磷酸二酯酶(c-PDE)确定。在大肠杆菌中,卷曲纤维的产生是重要的粘附因子,它对c-di-GMP有反应。编码DGC和c-PDE作为蛋白质复合物的yddV-dos操纵子在低生长温度和固定相(即也刺激冰壶产生的条件)下高表达。我们显示,通过失活yddV基因或通过过量生产YddV或Dos获得的YddV和Dos之间的平衡扰动,强烈影响冰壶产量。 YddV和Dos蛋白都调节csgBAC操纵子的转录,该操纵子编码curli结构亚基,同时不影响调控操纵子csgDEFG的表达。与YddV和Dos蛋白作为氧气传感器的作用一致,它们在缺氧条件下生长的细胞中对csgBAC基因表达的影响大大降低。我们的结果表明yddV-dos操纵子在需氧生长的大肠杆菌中卷曲编码基因的表达中起着重要作用,并表明YddV和Dos通过它们相反的活动,可以根据氧气的利用情况微调卷曲的产生。 。

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