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Identification of novel sRNAs involved in biofilm formation, motility, and fimbriae formation in Escherichia coli

机译:鉴定与大肠杆菌中生物膜形成,运动和菌毛形成有关的新型sRNA

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摘要

Bacterial small RNAs (sRNAs) are known regulators in many physiological processes. In Escherichia coli, a large number of sRNAs have been predicted, among which only about a hundred are experimentally validated. Despite considerable research, the majority of their functions remain uncovered. Therefore, collective analysis of the roles of sRNAs in specific cellular processes may provide an effective approach to identify their functions. Here, we constructed a collection of plasmids overexpressing 99 individual sRNAs, and analyzed their effects on biofilm formation and related phenotypes. Thirty-three sRNAs significantly affecting these cellular processes were identified. No consistent correlations were observed, except that all five sRNAs suppressing type I fimbriae inhibited biofilm formation. Interestingly, IS118, yet to be characterized, suppressed all the processes. Our data not only reveal potentially critical functions of individual sRNAs in biofilm formation and other phenotypes but also highlight the unexpected complexity of sRNA-mediated metabolic pathways leading to these processes.
机译:细菌小RNA(sRNA)是许多生理过程中已知的调节剂。在大肠杆菌中,已经预测到大量的sRNA,其中仅约一百个通过实验验证。尽管进行了大量研究,但大多数功能仍未被发现。因此,对sRNA在特定细胞过程中的作用的集体分析可提供一种鉴定其功能的有效方法。在这里,我们构建了一组过表达99个单个sRNA的质粒,并分析了它们对生物膜形成和相关表型的影响。鉴定了33种显着影响这些细胞过程的sRNA。没有观察到一致的相关性,除了所有五个抑制I型菌毛的sRNA都抑制了生物膜的形成。有趣的是,尚待表征的IS118抑制了所有过程。我们的数据不仅揭示了单个sRNA在生物膜形成和其他表型中的潜在关键功能,而且还突出了导致这些过程的sRNA介导的代谢途径的意想不到的复杂性。

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