首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Expression of Transcription Activator ComK of Bacillus subtilis in the Heterologous Host Lactococcus lactis Leads to a Genome-Wide Repression Pattern: a Case Study of Horizontal Gene Transfer
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Expression of Transcription Activator ComK of Bacillus subtilis in the Heterologous Host Lactococcus lactis Leads to a Genome-Wide Repression Pattern: a Case Study of Horizontal Gene Transfer

机译:枯草芽孢杆菌的转录激活因子ComK在异源宿主乳球菌中的表达导致全基因组抑制模式:水平基因转移的案例研究。

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摘要

Horizontal gene transfer (HGT) is generally considered a possible mechanism by which bacteria acquire new genetic properties. Especially when pathogenicity genes are involved, HGT might have important consequences for humans. In this report we describe a case study of HGT in which a transcriptional activator, ComK of Bacillus subtilis, was introduced into a heterologous host species, Lactococcus lactis. ComK is the central regulator of competence development, activating transcription by binding to a ComK-binding site, a so-called K-box. Interestingly, L. lactis does not contain a comK gene, but it does contain almost 400 putatively functional K-boxes, as well as homologues of a number of competence genes. In this study, the effect of HGT of B. subtilis comK into L. lactis was investigated by determining the effects on the transcription profile using DNA microarray analyses. Production of wild-type ComK was shown to stimulate the transcription of 89 genes and decrease the expression of 114 genes. Notably, potential direct effects (i.e., genes preceded by a K-box) were found mainly among repressed genes, suggesting that ComK functions as a repressor in L. lactis. This is a remarkable difference between L. lactis and B. subtilis, in which ComK almost exclusively activates transcription. Additional DNA microarray analyses with a transcription activation-deficient but DNA-binding ComK variant, ComKΔC25, demonstrated that there were similar effects on gene regulation with this variant and with wild-type ComK, confirming that the direct effects of ComK result from interference with normal transcription through binding to available K-boxes. This study demonstrates that horizontal gene transfer can have dramatic effects that are very different than those that are expected on basis of the original functionality of a gene.
机译:水平基因转移(HGT)通常被认为是细菌获得新遗传特性的可能机制。特别是当涉及致病基因时,HGT可能对人类产生重要影响。在本报告中,我们描述了HGT的案例研究,其中将转录激活剂枯草芽孢杆菌ComK引入异源宿主物种乳酸乳球菌中。 ComK是能力发展的中央调节者,通过与ComK结合位点(即所谓的K-box)结合来激活转录。有趣的是,乳酸乳杆菌不包含comK基因,但确实包含将近400个推定功能的K盒以及许多能力基因的同源物。在这项研究中,枯草芽孢杆菌comK的HGT对乳酸乳球菌的作用是通过使用DNA微阵列分析确定对转录谱的影响来进行研究的。已显示野生型ComK的产生可刺激89个基因的转录并减少114个基因的表达。值得注意的是,潜在的直接作用(即,带有K-box的基因)主要在被抑制的基因中发现,这表明ComK在乳酸乳球菌中起阻遏作用。这是乳酸乳球菌和枯草芽孢杆菌之间的显着差异,其中ComK几乎专门激活转录。使用转录激活缺陷但与DNA结合的ComK变体ComKΔC25进行的其他DNA微阵列分析表明,该变体和野生型ComK对基因调控的作用相似,这证实了ComK的直接作用是干扰正常通过与可用的K-box结合进行转录。这项研究表明,水平基因转移所产生的戏剧性效果与基于基因原始功能所预期的效果截然不同。

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