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首页> 外文期刊>Frontiers in Microbiology >A Novel Tightly Regulated Gene Expression System for the Human Intestinal Symbiont Bacteroides thetaiotaomicron
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A Novel Tightly Regulated Gene Expression System for the Human Intestinal Symbiont Bacteroides thetaiotaomicron

机译:一种新的严格调控人类肠道共生菌拟杆菌Thetaiotaomicron 的基因表达系统

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There is considerable interest in studying the function of Bacteroides species resident in the human gastrointestinal (GI)-tract and the contribution they make to host health. Reverse genetics and protein expression techniques, such as those developed for well-characterized Escherichia coli cannot be applied to Bacteroides species as they and other members of the Bacteriodetes phylum have unique promoter structures. The availability of useful Bacteroides -specific genetic tools is therefore limited. Here we describe the development of an effective mannan-controlled gene expression system for Bacteroides thetaiotaomicron containing the mannan-inducible promoter–region of an α-1,2-mannosidase gene (BT_3784), a ribosomal binding site designed to modulate expression, a multiple cloning site to facilitate the cloning of genes of interest, and a transcriptional terminator. Using the Lactobacillus pepI as a reporter gene, mannan induction resulted in an increase of reporter activity in a time- and concentration-dependent manner with a wide range of activity. The endogenous BtcepA cephalosporinase gene was used to demonstrate the suitability of this novel expression system, enabling the isolation of a His-tagged version of BtCepA. We have also shown with experiments performed in mice that the system can be induced in vivo in the presence of an exogenous source of mannan. By enabling the controlled expression of endogenous and exogenous genes in B. thetaiotaomicron this novel inducer-dependent expression system will aid in defining the physiological role of individual genes and the functional analyses of their products.
机译:研究居住在人类胃肠道(GI)的拟杆菌属物种的功能及其对宿主健康的贡献引起了极大的兴趣。反向遗传学和蛋白质表达技术,例如为特征明确的大肠杆菌开发的技术,不能应用于拟杆菌种,因为它们和门生细菌的其他成员具有独特的启动子结构。因此,有用的拟杆菌属特异性遗传工具的可用性受到限制。在这里,我们描述了一种有效的甘露聚糖控制的基因表达系统的开发,该系统用于拟杆菌(Bacteroides thetaiotaomicron),其包含甘露聚糖诱导型启动子-α-1,2-甘露糖苷酶基因(BT_3784)的区域,该区域是一个旨在调节表达的核糖体结合位点,克隆位点以促进目标基因的克隆,以及转录终止子。使用乳酸杆菌pepI作为报告基因,甘露聚糖诱导导致报告基因活性以时间和浓度依赖性方式增加,具有广泛的活性。内源性BtcepA头孢菌素酶基因被用来证明这一新型表达系统的适用性,从而能够分离出带有His标签的BtCepA。我们还通过在小鼠中进行的实验表明,在外源甘露聚糖存在下可以在体内诱导该系统。通过使内源基因和外源基因在烟草芽孢杆菌中受控表达,这种新颖的诱导物依赖性表达系统将有助于确定单个基因的生理作用及其产物的功能分析。

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