夏斌教授课题组
通用链接 English 手机版
论文成果

Xenogeneic Silencing and Bacterial Genome Evolution: Mechanisms for DNA Recognition Imply Multifaceted Roles of Xenogeneic Silencers

  • 影响因子:
    0.0
  • DOI码:
    10.1093/molbev/msab136
  • 发表刊物:
    Mol Biol Evol
  • 关键字:
    DNA-binding mechanism; H-NS/MvaT/Lsr2/Rok; bacterial genome evolution; bacterial genomic AT content; horizontal gene transfer; xenogeneic silencer
  • 摘要:
    Horizontal gene transfer (HGT) is a major driving force for bacterial evolution. To avoid the deleterious effects due to the unregulated expression of newly-acquired foreign genes, bacteria have evolved specific proteins named xenogeneic silencers to recognize foreign DNA sequences and suppress their transcription. As there is considerable diversity in genomic base compositions among bacteria, how xenogeneic silencers distinguish self- from non-self DNA in different bacteria remains poorly understood. This review summarizes the progress in studying the DNA binding preferences and the underlying molecular mechanisms of known xenogeneic silencer families, represented by H-NS of Escherichia coli, Lsr2 of Mycobacterium, MvaT of Pseudomonas, and Rok of Bacillus. Comparative analyses of the published data indicate that the differences in DNA recognition mechanisms enable these xenogeneic silencers to have clear characteristics in DNA sequence preferences, which are further correlated with different host genomic features. These correlations provide insights into the mechanisms of how these xenogeneic silencers selectively target foreign DNA in different genomic backgrounds. Furthermore, it is revealed that the genomic AT contents of bacterial species with the same xenogeneic silencer family proteins are distributed in a limited range, and are generally lower than those species without any known xenogeneic silencers in the same phylum/class/genus, indicating that xenogeneic silencers have multifaceted roles on bacterial genome evolution. In addition to regulating horizontal gene transfer, xenogeneic silencers also act as a selective force against the GC to AT mutational bias found in bacterial genomes and help the host genomic AT contents maintained at relatively low levels.
  • 论文编号:
    59
  • 是否译文:
  • 发表时间:
    2021-05-18
  • 收录刊物:
    SCI
  • 发布期刊链接:
  • 第一作者:
    Bo Duan
  • 通讯作者:
    Bin Xia
  • 全部作者:
    Pengfei Ding,William Wiley Navarre,Jun Liu