首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Colloquium Paper: Substrate-driven gene expression in Roseburia inulinivorans: Importance of inducible enzymes in the utilization of inulin and starch
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Colloquium Paper: Substrate-driven gene expression in Roseburia inulinivorans: Importance of inducible enzymes in the utilization of inulin and starch

机译:专题讨论会:玫瑰蔷薇中底物驱动的基因表达:菊粉和淀粉利用中可诱导酶的重要性

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摘要

Roseburia inulinivorans is a recently identified motile representative of the Firmicutes that contributes to butyrate formation from a variety of dietary polysaccharide substrates in the human large intestine. Microarray analysis was used here to investigate substrate-driven gene-expression changes in R. inulinivorans A2-194. A cluster of fructo-oligosaccharide/inulin utilization genes induced during growth on inulin included one encoding a β-fructofuranosidase protein that was prominent in the proteome of inulin-grown cells. This cluster also included a 6-phosphofructokinase and an ABC transport system, whereas a distinct inulin-induced 1-phosphofructokinase was linked to a fructose-specific phosphoenolpyruvate-dependent sugar phosphotransferase system (PTS II transport enzyme). Real-time PCR analysis showed that the β-fructofuranosidase and adjacent ABC transport protein showed greatest induction during growth on inulin, whereas the 1-phosphofructokinase enzyme and linked sugar phosphotransferase transport system were most strongly up-regulated during growth on fructose, indicating that these two clusters play distinct roles in the use of inulin. The R. inulinivorans β-fructofuranosidase was overexpressed in Escherichia coli and shown to hydrolyze fructans ranging from inulin down to sucrose, with greatest activity on fructo-oligosaccharides. Genes induced on starch included the major extracellular α-amylase and two distinct α-glucanotransferases together with a gene encoding a flagellin protein. The latter response may be concerned with improving bacterial access to insoluble starch particles.
机译:玫瑰果蔷薇(Roseburia inulinivorans)是Firmicutes的最近被鉴定为运动的代表,它有助于人大肠中多种膳食多糖底物形成丁酸酯。此处使用微阵列分析来研究R. inulinivorans A2-194中底物驱动的基因表达变化。在菊糖上生长期间诱导的一组果糖寡糖/菊粉利用基因包括一个编码β-果糖呋喃糖苷酶蛋白的蛋白,该蛋白在菊糖生长的细胞的蛋白质组中突出。该簇还包括6-磷酸果糖激酶和ABC转运系统,而独特的菊粉诱导的1-磷酸果糖激酶与果糖特异性磷酸烯醇丙酮酸依赖性糖磷酸转移酶系统(PTS II转运酶)连接。实时PCR分析显示,在果糖上生长期间,β-果糖呋喃糖苷酶和邻近的ABC转运蛋白表现出最大的诱导作用,而在果糖上生长期间,1-磷酸果糖激酶和连接的糖磷酸转移酶转运系统受到最强烈的上调,表明这些两个菊粉在菊粉的使用中起着不同的作用。在大肠杆菌中过表达R. inulinivoransβ-果糖呋喃糖苷酶,并显示其水解从菊粉到蔗糖的果聚糖,对果糖寡糖的活性最大。在淀粉上诱导的基因包括主要的细胞外α-淀粉酶和两种不同的α-葡聚糖转移酶以及编码鞭毛蛋白的基因。后一种反应可能与改善细菌接触不溶性淀粉颗粒有关。

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