首页> 外文期刊>Nucleic Acids Research >The core genome C-m5 methyltransferase JHP1050 (M.Hpy99III) plays an important role in orchestrating gene expression in Helicobacter pylori
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The core genome C-m5 methyltransferase JHP1050 (M.Hpy99III) plays an important role in orchestrating gene expression in Helicobacter pylori

机译:核心基因组C-M5甲基转移酶JHP1050(M.HPY99III)在幽门螺杆菌中协调基因表达中起重要作用

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摘要

Helicobacter pylori encodes a large number of restriction-modification (R-M) systems despite its small genome. R-M systems have been described as primitive immune systems' in bacteria, but the role of methylation in bacterial gene regulation and other processes is increasingly accepted. Every H. pylori strain harbours a unique set of R-M systems resulting in a highly diverse methylome. We identified a highly conserved GCGC-specific C-m5 MTase (JHP1050) that was predicted to be active in all of 459 H. pylori genome sequences analyzed. Transcriptome analysis of two H. pylori strains and their respective MTase mutants showed that inactivation of the MTase led to changes in the expression of 225 genes in strain J99, and 29 genes in strain BCM-300. Ten genes were differentially expressed in both mutated strains. Combining bioinformatic analysis and site-directed mutagenesis, we demonstrated that motifs overlapping the promoter influence the expression of genes directly, while methylation of other motifs might cause secondary effects. Thus, C-m5 methylation modifies the transcription of multiple genes, affecting important phenotypic traits that include adherence to host cells, natural competence for DNA uptake, bacterial cell shape, and susceptibility to copper.
机译:尽管它的基因组小,幽门螺杆菌编码了大量限制性修饰(R-M)系统。 R-M系统已被描述为细菌中的原始免疫系统,但越来越多地接受甲基化在细菌基因调节和其他过程中的作用。每一个幽门螺杆菌菌株都是一组独特的R-M系统,导致高度多样化的甲膜。我们鉴定了一种高度保守的GCGC特异性C-M5 mTase(JHP1050),其预测在分析的459升基因组序列中的所有459 H.幽门基因组序列中是活性的。两种H.幽门螺杆菌菌株的转录组分析及其各自的MTase突变体表明,MTase LED的灭活导致菌株J99中225基因表达的变化和菌株BCM-300中的29个基因。在两个突变菌株中差异表达了十个基因。结合生物信息分析和现场定向诱变,我们证明了促进剂重叠的基序直接影响基因的表达,而其他基序的甲基化可能导致二次效应。因此,C-M5甲基化改变了多种基因的转录,影响了包括依赖于宿主细胞的重要表型特征,DNA摄取,细菌细胞形状和铜易感性的自然能力。

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  • 来源
    《Nucleic Acids Research》 |2019年第5期|共13页
  • 作者单位

    Ludwig Maximilians Univ Munchen Fac Med Max von Pettenkofer Inst Med Microbiol &

    Hosp Epidemiol Munich Germany;

    Ludwig Maximilians Univ Munchen Fac Med Max von Pettenkofer Inst Med Microbiol &

    Hosp Epidemiol Munich Germany;

    Ludwig Maximilians Univ Munchen Fac Med Max von Pettenkofer Inst Med Microbiol &

    Hosp Epidemiol Munich Germany;

    Hannover Med Sch Inst Med Microbiol &

    Hosp Epidemiol Hannover Germany;

    Ludwig Maximilians Univ Munchen Fac Med Max von Pettenkofer Inst Med Microbiol &

    Hosp Epidemiol Munich Germany;

    Ludwig Maximilians Univ Munchen Fac Med Max von Pettenkofer Inst Med Microbiol &

    Hosp Epidemiol Munich Germany;

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  • 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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