Wurihan W, Wunier W, Li H, Fan L F, Morigen M
School of Life Sciences, Inner Mongolia University, Hohhot, China.
School of Life Sciences, Inner Mongolia University, Hohhot, China
Genet Mol Res. 2016 Aug 29;15(3):gmr8407. doi: 10.4238/gmr.15038407.
The trans-translation pathway, mediated by the transfer messenger RNA (tmRNA; encoded by the ssrA gene) and the SmpB protein (tmRNA-binding protein expressed in Salmonella enterica), which is conserved in bacteria, is required for various cellular processes. A previous study has shown that trans-translation is required to ensure timely (non-delayed) dnaA transcription and consequent initiation of DNA replication in Caulobacter crescentus. In this study, we observed that initiation of chromosome replication was delayed in Escherichia coli lacking the smpB and/or ssrA genes (DssrA, DsmpB, or DsmpBDssrA mutants). We observed that the growth rate of the mutant cells was much slower than that of its wild-type counterpart. However, the delayed initiation of replication and slower growth in the DssrA or DsmpB mutants were reversed by ectopic expression of tmRNA or SmpB. A synchronized DsmpBDssrA cell culture containing the dnaC2 mutant allele showed delayed protein (total and DnaA) accumulation per cell; DnaA accumulation was also delayed in the DsmpB. These results indicated that absence of trans-translation leads to a delay in initiation of DNA replication, synthesis of total protein (including DnaA), and a decrease in E. coli growth rate. In summary, we propose that the trans-translation pathway is required to ensure timely initiation of replication, protein synthesis, and subsequent cell cycle progression.
由转移信使RNA(tmRNA;由ssrA基因编码)和SmpB蛋白(在肠炎沙门氏菌中表达的tmRNA结合蛋白)介导的反式翻译途径在细菌中是保守的,是各种细胞过程所必需的。先前的一项研究表明,在新月柄杆菌中,反式翻译对于确保及时(无延迟)的dnaA转录以及随后的DNA复制起始是必需的。在本研究中,我们观察到在缺乏smpB和/或ssrA基因的大肠杆菌(DssrA、DsmpB或DsmpBDssrA突变体)中,染色体复制起始延迟。我们观察到突变细胞的生长速率比其野生型对应物慢得多。然而,通过异位表达tmRNA或SmpB,DssrA或DsmpB突变体中复制起始延迟和生长缓慢的情况得到了逆转。含有dnaC2突变等位基因的同步化DsmpBDssrA细胞培养物显示每个细胞中蛋白质(总蛋白和DnaA)积累延迟;在DsmpB中DnaA积累也延迟。这些结果表明,缺乏反式翻译会导致DNA复制起始延迟、总蛋白(包括DnaA)合成延迟以及大肠杆菌生长速率降低。总之,我们提出反式翻译途径对于确保及时的复制起始、蛋白质合成以及随后的细胞周期进程是必需的。