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首页> 外文期刊>Plasmid: An International Journal Devoted to Extrachromosomal Gene Systems >The ICESt1 element of Streptococcus thermophilus belongs to a large family of integrative and conjugative elements that exchange modules and change their specificity of integration.
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The ICESt1 element of Streptococcus thermophilus belongs to a large family of integrative and conjugative elements that exchange modules and change their specificity of integration.

机译:嗜热链球菌的ICESt1元件属于整合和共轭元件的大家族,它们交换模块并改变其整合特异性。

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摘要

The 34,734-bp element ICESt1 from Streptococcus thermophilus CNRZ368 is site-specifically integrated into the 3(') end of the gene fda. ICESt1 encodes integrative functions and putative transfer functions. Six proteins of the putative conjugative system of ICESt1 are related to those encoded by the conjugative transposon Tn916 from Enterococcus faecalis. A comparison of these proteins with those encoded by the complete or partial genome sequences of various low G+C bacteria including Bacillus subtilis, Clostridium difficile, E. faecalis, Listeria monocytogenes, Staphylococcus aureus, and Streptococcus mutans revealed the presence of numerous putative site-specific integrative conjugative elements and/or conjugative transposons within these genomes. Sequence comparisons revealed that these elements possess a modular structure and that exchanges of unrelated or distantly related modules and genes have occurred between these elements, and also plasmids and prophages. These exchanges have probably led to modifications in the site specificity of integration of these elements. Therefore, a distinction between low specificity integrative conjugative elements (i.e., conjugative transposons) and site-specific integrative conjugative elements does not appear to be relevant. We propose to call all the conjugative elements that excise by site-specific recombination and integrate by recombination between a specific site of a circular intermediate and another site, "Integrative and Conjugative Elements" (ICEs), irrespective of the integration specificity.
机译:来自嗜热链球菌CNRZ368的34,734 bp的元件ICESt1被定点整合到基因fda的3(')末端。 ICESt1对集成函数和推定传递函数进行编码。推定的ICESt1接合系统的六种蛋白质与粪肠球菌的接合转座子Tn916编码的蛋白质有关。将这些蛋白质与各种低G + C细菌(包括枯草芽孢杆菌,艰难梭菌,粪肠球菌,单核细胞增生李斯特菌,金黄色葡萄球菌和变形链球菌)的全部或部分基因组序列编码的蛋白质进行比较,发现存在许多推定位点-这些基因组中特定的整合结合元件和/或结合转座子。序列比较显示,这些元件具有模块化结构,并且在这些元件之间以及质粒和原噬菌体之间发生了不相关或远缘相关的模块和基因的交换。这些交换可能导致这些元素整合的位点特异性的改变。因此,低特异性整合结合元件(即结合转座子)与位点特异性整合结合元件之间的区别似乎无关紧要。我们建议将通过位点特异性重组切除并在圆形中间体的特定位点和另一个位点之间通过重组整合的所有结合因子称为“整合和结合因子”(ICEs),而与整合特异性无关。

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