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Defining the Bacteroides Ribosomal Binding Site

机译:定义拟杆菌核糖体结合位点

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The human gastrointestinal tract, in particular the colon, hosts a vast number of commensal microorganisms. Representatives of the genus Bacteroides are among the most abundant bacterial species in the human colon. Bacteroidetes diverged from the common line of eubacterial descent before other eubacterial groups. As a result, they employ unique transcription initiation signals and, because of this uniqueness, they require specific genetic tools. Although some tools exist, they are not optimal for studying the roles and functions of these bacteria in the human gastrointestinal tract. Focusing on translation initiation signals in Bacteroides, we created a series of expression vectors allowing for different levels of protein expression in this genus, and we describe the use of pepI from Lactobacillus delbrueckii subsp. lactis as a novel reporter gene for Bacteroides. Furthermore, we report the identification of the 3′ end of the 16S rRNA of Bacteroides ovatus and analyze in detail its ribosomal binding site, thus defining a core region necessary for efficient translation, which we have incorporated into the design of our expression vectors. Based on the sequence logo information from the 5′ untranslated region of other Bacteroidales ribosomal protein genes, we conclude that our findings are relevant to all members of this order.
机译:人的胃肠道,特别是结肠,拥有大量的共生微生物。拟杆菌属的代表是人类结肠中最丰富的细菌之一。拟杆菌属在其他真细菌类群之前不同于一般的真细菌系谱系。结果,它们使用独特的转录起始信号,并且由于这种独特性,它们需要特定的遗传工具。尽管存在一些工具,但对于研究这些细菌在人的胃肠道中的作用和功能而言,它们并不是最佳的。着重于拟杆菌中的翻译起始信号,我们创建了一系列表达载体,允许该属中不同水平的蛋白质表达,并且我们描述了来自德氏乳杆菌亚种的pepI的用途。乳酸作为拟杆菌的新报道基因。此外,我们报告了卵形拟杆菌的16S rRNA 3'末端的鉴定,并详细分析了其核糖体结合位点,从而定义了有效翻译所必需的核心区域,我们已将其整合入表达载体的设计中。根据来自其他细菌核糖体蛋白基因5'非翻译区的序列徽标信息,我们得出结论,我们的发现与该订单的所有成员有关。

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