Phase variation allows a single strain to produce phenotypic diverse subpopulations. Phase-variable restriction modification (RM) systems are systems that allow for such phase variation via epigenetic regulation of gene expression levels. The phase-variable RM system SsuCC20p was found in multiple streptococcal species and was acquired by an emerging zoonotic lineage of Streptococcus suis. We show that the phase variability of SsuCC20p is dependent on a recombinase encoded within the SsuCC20p locus. We characterized the genome methylation profiles of the different phases of SsuCC20p and demonstrated the consequential impact on the transcriptome and virulence in a zebrafish infection model. Acquiring mobile genetic elements containing epigenetic regulatory systems, like phase-variable RM systems, enables bacterial pathogens to produce diverse phenotypic subpopulations that are better adapted to specific (host) environments encountered during infection.
The streptococcal phase-variable type I restriction modification system SsuCC20p dictates the methylome of Streptococcus suis impacting the transcriptome and virulence in a zebrafish larvae infection model.
链球菌相变型 I 型限制修饰系统 SsuCC20p 决定了猪链球菌的甲基化组,从而影响斑马鱼幼虫感染模型中的转录组和毒力
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作者:Roodsant Thomas J, van der Putten Boas, Brizuela Jaime, Coolen Jordy P M, Baltussen Tim J H, Schipper Kim, Pannekoek Yvonne, van der Ark Kees C H, Schultsz Constance
| 期刊: | mBio | 影响因子: | 4.700 |
| 时间: | 2024 | 起止号: | 2024 Jan 16; 15(1):e0225923 |
| doi: | 10.1128/mbio.02259-23 | 种属: | Fish |
| 研究方向: | 表观遗传 | 信号通路: | DNA甲基化 |
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