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细菌基因组岛中内在终止子的代表性不足:Rho 作为异源 DNA 表达的主要调节因子。

Under-representation of intrinsic terminators across bacterial genomic islands: Rho as a principal regulator of xenogenic DNA expression.

机构信息

Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore, India.

出版信息

Gene. 2012 Oct 25;508(2):221-8. doi: 10.1016/j.gene.2012.07.064. Epub 2012 Aug 4.

Abstract

Two transcription termination mechanisms - intrinsic and Rho-dependent - have evolved in bacteria. The Rho factor occurs in most bacterial lineages, and has been hypothesized to play a global regulatory role. Genome-wide studies using microarray, 2D-gel electrophoresis and ChIP-chip provided evidence that Rho serves to silence transcription from horizontally acquired genes and prophages in Escherichia coli K-12, implicating the factor to be a part of the "cellular immune mechanism" protecting against deleterious phages and aberrant gene expression from acquired xenogenic DNA. We have investigated this model by adopting an alternate in silico approach and have extended the study to other species. Our analysis shows that several genomic islands across diverse phyla have under-representation of intrinsic terminators, similar to that experimentally observed in E. coli K-12. This implies that Rho-dependent termination is the predominant process operational in these islands and that silencing of foreign DNA is a conserved function of Rho. From the present analysis, it is evident that horizontally acquired islands have lost intrinsic terminators to facilitate Rho-dependent termination. These results underscore the importance of Rho as a conserved, genome-wide sentinel that regulates potentially toxic xenogenic DNA.

摘要

两种转录终止机制——内在和 Rho 依赖性——在细菌中进化。Rho 因子存在于大多数细菌谱系中,据推测它发挥着全局调控作用。使用微阵列、二维凝胶电泳和 ChIP-chip 的全基因组研究为 Rho 因子在大肠杆菌 K-12 中沉默水平获得的基因和噬菌体转录提供了证据,暗示该因子是“细胞免疫机制”的一部分,可防止有害噬菌体和获得的异源 DNA 中异常基因表达。我们通过采用替代的计算方法研究了这个模型,并将研究扩展到其他物种。我们的分析表明,跨多个门的几个基因组岛中内在终止子的代表性不足,与大肠杆菌 K-12 中实验观察到的相似。这意味着 Rho 依赖性终止是这些岛中主要的操作过程,而沉默外来 DNA 是 Rho 的保守功能。从目前的分析来看,很明显,水平获得的岛屿已经失去了内在的终止子,以促进 Rho 依赖性终止。这些结果强调了 Rho 作为一种保守的、全基因组的哨兵的重要性,它可以调节潜在的有毒异源 DNA。

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