Kong Hoi-Kuan, Liu Xuan, Lo Wai U, Pan Qing, Law Carmen O K, Chan Ting F, Ho Pak L, Lau Terrence C K
Department of Biomedical Sciences, City University of Hong Kong, Kowloon, Hong Kong.
Department of Microbiology and Carol Yu Centre for Infection, The University of Hong Kong, Pokfulam, Hong Kong.
Front Microbiol. 2018 Mar 27;9:532. doi: 10.3389/fmicb.2018.00532. eCollection 2018.
Small RNAs (sRNAs) play significant roles in regulating gene expression post-transcriptionally in response to environmental changes in bacteria. In this work, we identified and characterized six novel sRNAs from an emerging multidrug-resistance (MDR) plasmid pNDM-HK, a New Delhi metallo-β-lactamase 1 gene ()-carrying IncL/M plasmid that has caused worldwide threat in recent years. These sRNAs are located at different regions of pNDM-HK, such as replication, stability, and variable regions. Moreover, one of the plasmid-encoded sRNAs (NDM-sR3) functions in an Hfq-dependent manner and possibly plays roles in the fitness of pNDM-HK carrying bacteria. In addition, we attempted to construct the phylogenetic tree based on these novel sRNAs and surprisingly, the sRNA-phylogenetic tree provided significant information about the evolutionary pathway of pNDM-HK, including possible gene acquisition and insertion from relevant plasmids. Moreover, the sRNA-phylogenetic tree can specifically cluster the IncM2 type and distinguish it from other IncL/M subtypes. In summary, this is the first study to systematically identify and characterize sRNAs from clinically-isolated MDR plasmids. We believe that these newly found sRNAs could lead to further understanding and new directions to study the evolution and dissemination of the clinically MDR bacterial plasmids.
小RNA(sRNA)在细菌中响应环境变化进行转录后基因表达调控方面发挥着重要作用。在这项研究中,我们从一种新出现的多重耐药(MDR)质粒pNDM-HK中鉴定并表征了6种新型sRNA,pNDM-HK是一种携带新德里金属β-内酰胺酶1基因()的IncL/M质粒,近年来已在全球范围内构成威胁。这些sRNA位于pNDM-HK的不同区域,如复制区、稳定区和可变区。此外,其中一种质粒编码的sRNA(NDM-sR3)以依赖Hfq的方式发挥作用,可能在携带pNDM-HK的细菌适应性方面发挥作用。此外,我们尝试基于这些新型sRNA构建系统发育树,令人惊讶的是,sRNA系统发育树提供了有关pNDM-HK进化途径的重要信息,包括可能从相关质粒获得和插入的基因。此外,sRNA系统发育树可以特异性地将IncM2类型聚类,并将其与其他IncL/M亚型区分开来。总之,这是首次对临床分离的MDR质粒中的sRNA进行系统鉴定和表征的研究。我们相信,这些新发现的sRNA可能会带来对临床MDR细菌质粒进化和传播的进一步理解以及新的研究方向。