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Autoregulation of mazEF expression underlies growth heterogeneity in bacterial populations

机译:Mazef表达的自动调节在细菌种群中产生了生长异质性

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摘要

The MazF toxin sequence-specifically cleaves single-stranded RNA upon various stressful conditions, and it is activated as a part of the mazEF toxin-antitoxin module in Escherichia coli. Although autoregulation of mazEF expression through the MazE antitoxin-dependent transcriptional repression has been biochemically characterized, less is known about post-transcriptional autoregulation, as well as how both of these autoregulatory features affect growth of single cells during conditions that promote MazF production. Here, we demonstrate post-transcriptional autoregulation of mazF expression dynamics by MazF cleaving its own transcript. Single-cell analyses of bacterial populations during ectopic MazF production indicated that two-level autoregulation of mazEF expression influences cell-to-cell growth rate heterogeneity. The increase in growth rate heterogeneity is governed by the MazE antitoxin, and tuned by the MazF-dependent mazF mRNA cleavage. Also, both autoregulatory features grant rapid exit from the stress caused by mazF overexpression. Time-lapse microscopy revealed that MazF-mediated cleavage of mazF mRNA leads to increased temporal variability in length of individual cells during ectopic mazF overexpression, as explained by a stochastic model indicating that mazEF mRNA cleavage underlies temporal fluctuations in MazF levels during stress.
机译:MAZF毒素序列 - 特别是在各种施力条件下切割单链RNA,并且在大肠杆菌中作为MAZEF毒素 - 抗毒素模块的一部分被活化。尽管通过迷宫抗毒素依赖性转录抑制的自动调节已经生物化学表征,但是关于转录后自动调节的较少,以及如何在促进MAZF生产的条件下影响单细胞的生长。在这里,我们通过MAZF切割其自己的成绩单来证明MAZF表达动态的转录后自动调节。细菌群体在异位MAZF产生期间的单细胞分析表明,MAZEF表达的两级自血液调节影响细胞对细胞生长速率异质性。生长速率异质性的增加受迷宫抗毒素的控制,并被MAZF依赖性MAZF mRNA裂解调节。此外,既可自动调节特征都授予MAZF过表达造成的应力的快速退出。延时显微镜显示MAZF mRNA的MAZF介导的裂解导致各个细胞长度在异位MAZF过表达期间增加的时间变异性,如表明MAZEF mRNA裂解在压力期间MAZF水平的时间波动下呈现时间波动。

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  • 来源
    《Nucleic Acids Research》 |2018年第6期|共14页
  • 作者单位

    Univ Vienna Max F Perutz Labs Dept Microbiol Immunobiol &

    Genet Vienna BioCtr VBC A-1030 Vienna Austria;

    Inst Sci &

    Technol Austria IST Austria A-3400 Klosterneuburg Austria;

    Univ Leuven Lab Dynam Biol Syst Dept Cellular &

    Mol Med B-3000 Leuven Belgium;

    Univ Vienna Max F Perutz Labs Dept Microbiol Immunobiol &

    Genet Vienna BioCtr VBC A-1030 Vienna Austria;

    Univ Leuven Lab Dynam Biol Syst Dept Cellular &

    Mol Med B-3000 Leuven Belgium;

    Univ Vienna Max F Perutz Labs Dept Microbiol Immunobiol &

    Genet Vienna BioCtr VBC A-1030 Vienna Austria;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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