首页> 外文期刊>The international journal of biochemistry and cell biology >Enhanced biofilm formation and/or cell viability by polyamines through stimulation of response regulators UvrY and CpxR in the two-component signal transducing systems, and ribosome recycling factor
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Enhanced biofilm formation and/or cell viability by polyamines through stimulation of response regulators UvrY and CpxR in the two-component signal transducing systems, and ribosome recycling factor

机译:多胺通过刺激两组分信号转导系统中的响应调节剂UvrY和CpxR和核糖体回收因子,增强了生物膜的形成和/或细胞活力。

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We have reported that polyamines increase cell viability at the stationary phase of cell growth through translational stimulation of ribosome modulation factor, and SpoT and RpoZ proteins involved in the synthesis and function of ppGpp in Escherichia coli. Since biofilm formation is also involved in cell viability, we looked for proteins involved in biofilm formation and cell viability whose synthesis is stimulated by polyamines at the level of translation. It was found that the synthesis of response regulators UvrY and CpxR in the two-component signal transducing systems and ribosome recycling factor (RRF) was increased by polyamines at the level of translation. Polyamine stimulation of the synthesis of UvrY and RRF was dependent on the existence of the inefficient initiation codons UUG and GUG in uvrY and frr mRNA, respectively; and polyamine stimulation of CpxR synthesis was dependent on the existence of an unusual location of a Shine-Dalgarno (SD) sequence in cpxR mRNA. Biofilm formation and cell viability in the absence of polyamines was increased by transformation of modified uvrY and cpxR genes, and cell viability by modified frr gene whose translation occurs effectively without polyamines. The results indicate that polyamines are necessary for both biofilm formation and cell viability.
机译:我们已经报道,多胺通过翻译刺激核糖体调节因子以及参与ppGpp在大肠杆菌中的合成和功能的SpoT和RpoZ蛋白,在细胞生长的稳定期增加细胞活力。由于生物膜的形成也与细胞活力有关,因此我们寻找与生物膜的形成和细胞活力有关的蛋白质,这些蛋白质的合成在翻译水平上受到多胺的刺激。发现在多组分翻译水平上,多胺增加了在两组分信号转导系统和核糖体再循环因子(RRF)中响应调节剂UvrY和CpxR的合成。多胺刺激UvrY和RRF的合成分别取决于uvrY和frr mRNA中无效的起始密码子UUG和GUG的存在。 CpxR合成的多胺刺激取决于cpxR mRNA中Shine-Dalgarno(SD)序列的不寻常位置。不存在多胺的情况下,生物膜的形成和细胞活力通过修饰的uvrY和cpxR基因的转化而增加,而通过修饰的frr基因的细胞活力则在没有多胺的情况下有效地翻译。结果表明,多胺对于生物膜形成和细胞生存力都是必需的。

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