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在……中,通过上调SigB或Spx途径可逆转ComK诱导的细胞死亡。 (注:原文中“in”后面缺少具体内容)

ComK-induced cell death is reversed by upregulating the SigB or Spx pathway in .

作者信息

Wiesler Emma E, Liao Qin, Ren Zhongqing, Zhang Kathy F, Dai Jin, Ma Yinuo, Hardy Gail G, Wang Xindan

机构信息

Department of Biology, Indiana University, Bloomington, Indiana, USA.

出版信息

Microbiol Spectr. 2025 Sep 2;13(9):e0161225. doi: 10.1128/spectrum.01612-25. Epub 2025 Aug 7.

Abstract

Natural competence of bacteria is an important tool for researchers to rapidly engineer genetic mutations. In , the master regulator for competence is ComK which is typically only expressed during stationary phase, allowing cells to uptake DNA and incorporate it into the genome. Here, we engineered cells to overexpress in exponential phase using inducible promoters, thereby inducing competence without going through stationary phase. We observed that overexpressing in exponentially growing cells inhibited DNA replication and cell division, leading to low DNA content, elongated cells, and eventually cell death. To rescue -induced cell death, we isolated suppressors of overexpression using both spontaneous suppression and a transposon-based method (transposon sequencing). From both methods, the suppressors upregulated either the sigma B (SigB) or Spx pathway, which are known to be activated in response to stress. Importantly, while upregulating SigB or Spx suppressed cell death, it also reduced competence by lowering ComK protein levels. Altogether, our results collectively show that during competence, normal cellular functions such as DNA replication and cell division are inhibited. While cells can upregulate stress responses to facilitate these normal cellular functions, these processes inadvertently lower ComK levels and inhibit competence. Our study highlights the sophisticated cellular regulatory systems that specifically direct cell growth, competence, or stress management.IMPORTANCENaturally competent bacteria, such as take up DNA to use it as nutrients and generate new genotypes. Researchers exploit natural competence to manipulate bacterial genomes. While all cells in a population are capable of being competent, only a small portion of cells do so. To synchronously induce competence in a cell population, we overexpressed the master competence regulator . We found that competence is associated with inhibited cellular functions, such as cell division and DNA replication. Suppressor mutant screens revealed that increasing expression of either stress regulator sigma B or Spx restores cell division and DNA replication functions, but in turn inhibits competence. Our study emphasizes the complex regulatory networks that balance cell growth, competence, and stress responses.

摘要

细菌的自然感受态是研究人员快速构建基因突变的重要工具。在[具体细菌名称]中,感受态的主调控因子是ComK,它通常仅在稳定期表达,使细胞能够摄取DNA并将其整合到基因组中。在此,我们利用可诱导启动子对处于指数生长期的细胞进行工程改造,使其过表达[具体基因名称],从而在不经历稳定期的情况下诱导感受态。我们观察到,在指数生长期的细胞中过表达[具体基因名称]会抑制DNA复制和细胞分裂,导致DNA含量降低、细胞伸长,最终细胞死亡。为挽救[具体基因名称]诱导的细胞死亡,我们使用自发抑制和基于转座子的方法(转座子测序)分离了[具体基因名称]过表达的抑制子。从这两种方法中,抑制子上调了已知在应激反应中被激活的σB(SigB)或Spx途径。重要的是,虽然上调SigB或Spx可抑制细胞死亡,但它也会通过降低ComK蛋白水平来降低感受态。总之,我们的结果共同表明,在感受态期间,DNA复制和细胞分裂等正常细胞功能会受到抑制。虽然细胞可以上调应激反应以促进这些正常细胞功能,但这些过程会无意中降低ComK水平并抑制感受态。我们的研究突出了专门指导细胞生长、感受态或应激管理的复杂细胞调控系统。

重要性

自然感受态细菌,如[具体细菌名称],摄取DNA以将其用作营养物质并产生新的基因型。研究人员利用自然感受态来操纵细菌基因组。虽然群体中的所有[具体细菌名称]细胞都有能力具备感受态,但只有一小部分细胞会这样做。为了在细胞群体中同步诱导感受态,我们过表达了主感受态调控因子[具体基因名称]。我们发现感受态与细胞功能的抑制有关,如细胞分裂和DNA复制。抑制子突变体筛选表明,增加应激调节因子σB或Spx的表达可恢复细胞分裂和DNA复制功能,但反过来会抑制感受态。我们的研究强调了平衡细胞生长、感受态和应激反应的复杂调控网络。

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