Ghosh Anirban, Passaris Ioannis, Tesfazgi Mebrhatu Mehari, Rocha Susana, Vanoirbeek Kristof, Hofkens Johan, Aertsen Abram
Department of Microbial and Molecular Systems (M2S), Laboratory of Food Microbiology, KU Leuven, B-3001 Leuven, Belgium and Department of Chemistry, KU Leuven, B-3001 Leuven, Belgium.
Nucleic Acids Res. 2014 Apr;42(6):3908-18. doi: 10.1093/nar/gkt1370. Epub 2014 Jan 13.
In this study, we examined the intracellular whereabouts of Mrr, a cryptic type IV restriction endonuclease of Escherichia coli K12, in response to different conditions. In absence of stimuli triggering its activity, Mrr was found to be strongly associated with the nucleoid as a number of discrete foci, suggesting the presence of Mrr hotspots on the chromosome. Previously established elicitors of Mrr activity, such as exposure to high (hydrostatic) pressure (HP) or expression of the HhaII methyltransferase, both caused nucleoid condensation and an unexpected coalescence of Mrr foci. However, although the resulting Mrr/nucleoid complex was stable when triggered with HhaII, it tended to be only short-lived when elicited with HP. Moreover, HP-mediated activation of Mrr typically led to cellular blebbing, suggesting a link between chromosome and cellular integrity. Interestingly, Mrr variants could be isolated that were specifically compromised in either HhaII- or HP-dependent activation, underscoring a mechanistic difference in the way both triggers activate Mrr. In general, our results reveal that Mrr can take part in complex spatial distributions on the nucleoid and can be engaged in distinct modes of activity.
在本研究中,我们检测了大肠杆菌K12的一种隐蔽性IV型限制性内切酶Mrr在不同条件下的细胞内定位情况。在没有触发其活性的刺激时,发现Mrr作为一些离散的焦点与类核紧密相关,这表明染色体上存在Mrr热点。先前确定的Mrr活性诱导剂,如暴露于高(流体静)压(HP)或表达HhaII甲基转移酶,均会导致类核凝聚以及Mrr焦点意外合并。然而,尽管用HhaII触发时产生的Mrr/类核复合物是稳定的,但用HP诱导时往往只是短暂存在。此外,HP介导的Mrr激活通常会导致细胞起泡,这表明染色体与细胞完整性之间存在联系。有趣的是,可以分离出在HhaII或HP依赖性激活中存在特异性缺陷的Mrr变体,这突出了两种触发方式激活Mrr的机制差异。总体而言,我们的结果表明,Mrr可以参与类核上的复杂空间分布,并可以参与不同的活性模式。