Van Puyvelde Sandra, Vanderleyden Jozef, De Keersmaecker Sigrid C J
Centre of Microbial and Plant Genetics, KU Leuven, Kasteelpark Arenberg 20, Heverlee, Belgium.
Department of Biomedical Sciences, Diagnostic Bacteriology Unit, Institute of Tropical Medicine, Nationalestraat 155, Antwerp, Belgium.
Microbiologyopen. 2015 Oct;4(5):699-711. doi: 10.1002/mbo3.263. Epub 2015 May 13.
Nowadays the identification of small RNAs (sRNAs) and characterization of their role within regulatory networks takes a prominent place in deciphering complex bacterial phenotypes. Compared to the study of other components of bacterial cells, this is a relatively new but fast-growing research field. Although reports on new sRNAs appear regularly, some sRNAs are already subject of research for a longer time. One of such sRNAs is MicA, a sRNA best described for its role in outer membrane remodeling, but probably having a much broader function than anticipated. An overview of what we have learnt from MicA led to the conclusion that even for this well-described sRNA, we still do not have the overall picture. More general, the story of MicA might become an experimental lead for unraveling the many sRNAs with unknown functions. In this review, three important topics in the sRNA field are covered, exemplified from the perspective of MicA: (i) identification of new sRNAs, (ii) target identification and unraveling the biological function, (iii) structural analysis. The complex mechanisms of action of MicA deliver some original insights in the sRNA field which includes the existence of dimer formation or simultaneous cis and trans regulation, and might further inspire the understanding of the function of other sRNAs.
如今,小RNA(sRNA)的鉴定及其在调控网络中的作用表征,在解读复杂细菌表型方面占据着重要地位。与对细菌细胞其他成分的研究相比,这是一个相对较新但发展迅速的研究领域。尽管关于新sRNA的报道定期出现,但一些sRNA已经被研究了较长时间。其中一种sRNA是MicA,它最广为人知的作用是参与外膜重塑,但其功能可能比预期的要广泛得多。对我们从MicA中学到的内容进行概述后得出的结论是,即使对于这种已被充分描述的sRNA而言,我们仍然没有全面的了解。更普遍地说,MicA的故事可能会成为揭示许多功能未知的sRNA的实验线索。在这篇综述中,我们从MicA的角度举例介绍了sRNA领域的三个重要主题:(i)新sRNA的鉴定;(ii)靶标鉴定及生物学功能的揭示;(iii)结构分析。MicA复杂的作用机制为sRNA领域提供了一些独到的见解,其中包括二聚体形成或顺式和反式同时调控的存在,这可能会进一步激发我们对其他sRNA功能的理解。