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DNA Adenine Methylation Regulates Virulence Gene Expression in Salmonella enterica Serovar Typhimurium

机译:DNA腺嘌呤甲基化调节肠炎沙门氏菌鼠伤寒沙门氏菌毒力基因表达。

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摘要

Transcriptomic analyses during growth in Luria-Bertani medium were performed in strain SL1344 of Salmonella enterica serovar Typhimurium and in two isogenic derivatives lacking Dam methylase. More genes were repressed than were activated by Dam methylation (139 versus 37). Key genes that were differentially regulated by Dam methylation were verified independently. The largest classes of Dam-repressed genes included genes belonging to the SOS regulon, as previously described in Escherichia coli, and genes of the SOS-inducible Salmonella prophages ST64B, Gifsy-1, and Fels-2. Dam-dependent virulence-related genes were also identified. Invasion genes in pathogenicity island SPI-1 were activated by Dam methylation, while the fimbrial operon std was repressed by Dam methylation. Certain flagellar genes were repressed by Dam methylation, and Dam mutants of S. enterica showed reduced motility. Altered expression patterns in the absence of Dam methylation were also found for the chemotaxis genes cheR (repressed by Dam) and STM3216 (activated by Dam) and for the Braun lipoprotein gene, lppB (activated by Dam). The requirement for DNA adenine methylation in the regulation of specific virulence genes suggests that certain defects of Salmonella Dam mutants in the mouse model may be caused by altered patterns of gene expression.
机译:在Luria-Bertani培养基中生长期间的转录组学分析是在肠炎沙门氏菌血清鼠伤寒沙门氏菌SL1344菌株和缺少Dam甲基化酶的两个同基因衍生物中进行的。与被Dam甲基化激活的基因相比,被抑制的基因更多(139对37)。独立验证了由Dam甲基化差异调节的关键基因。达姆阻遏基因的最大种类包括如先前在大肠杆菌中所述的属于SOS调节子的基因,以及SOS诱导的沙门氏菌原噬菌体ST64B,Gifsy-1和Fels-2的基因。还确定了大坝依赖性毒力相关基因。致病岛SPI-1中的入侵基因被Dam甲基化激活,而纤维操纵子std被Dam甲基化抑制。某些鞭毛基因被Dam甲基化所抑制,而S. enterica的Dam -突变体显示出降低的运动能力。对于趋化性基因cheR(被Dam抑制)和STM3216(被Dam激活)以及Braun脂蛋白基因lppB(被Dam激活),还发现了在不存在Dam甲基化的情况下改变的表达模式。 DNA腺嘌呤甲基化对特定毒力基因调控的要求表明,小鼠模型中沙门氏菌Dam -突变体的某些缺陷可能是由于基因表达模式的改变引起的。

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