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首页> 外文期刊>Applied and Environmental Microbiology >Transcription of Two Adjacent Carbohydrate Utilization Gene Clusters in Bifidobacterium breve UCC2003 Is Controlled by LacI- and Repressor Open Reading Frame Kinase (ROK)-Type Regulators
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Transcription of Two Adjacent Carbohydrate Utilization Gene Clusters in Bifidobacterium breve UCC2003 Is Controlled by LacI- and Repressor Open Reading Frame Kinase (ROK)-Type Regulators

机译:短双歧杆菌UCC2003中两个相邻的碳水化合物利用基因簇的转录受LacI和阻遏物开放阅读框激酶(ROK)型调节剂的控制。

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Members of the genus Bifidobacterium are commonly found in the gastrointestinal tracts of mammals, including humans, where their growth is presumed to be dependent on various diet- and/or host-derived carbohydrates. To understand transcriptional control of bifidobacterial carbohydrate metabolism, we investigated two genetic carbohydrate utilization clusters dedicated to the metabolism of raffinose-type sugars and melezitose. Transcriptomic and gene inactivation approaches revealed that the raffinose utilization system is positively regulated by an activator protein, designated RafR. The gene cluster associated with melezitose metabolism was shown to be subject to direct negative control by a LacI-type transcriptional regulator, designated MelR1, in addition to apparent indirect negative control by means of a second LacI-type regulator, MelR2. In silico analysis, DNA-protein interaction, and primer extension studies revealed the MelR1 and MelR2 operator sequences, each of which is positioned just upstream of or overlapping the correspondingly regulated promoter sequences. Similar analyses identified the RafR binding operator sequence located upstream of the rafB promoter. This study indicates that transcriptional control of gene clusters involved in carbohydrate metabolism in bifidobacteria is subject to conserved regulatory systems, representing either positive or negative control.
机译:双歧杆菌属的成员通常存在于包括人在内的哺乳动物的胃肠道中,推测其生长取决于各种饮食和/或宿主衍生的碳水化合物。为了了解双歧杆菌碳水化合物代谢的转录控制,我们研究了两个遗传碳水化合物利用簇,专门用于棉子糖型糖和松三糖的代谢。转录组学和基因灭活方法显示,棉子糖利用系统受激活蛋白(称为RafR)的正调控。已显示与松散糖代谢相关的基因簇除了通过第二个LacI型调节子MelR2进行明显的间接阴性控制外,还受到LacI型转录调节剂直接的负控制,称为MelR1。在计算机分析中,DNA-蛋白质相互作用和引物延伸研究揭示了MelR1和MelR2操纵子序列,每个序列都位于相应调控启动子序列的上游或与其重叠。相似的分析鉴定了位于rafB启动子上游的RafR结合操纵子序列。这项研究表明,涉及双歧杆菌碳水化合物代谢的基因簇的转录控制受制于保守的调节系统,代表阳性或阴性对照。

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