Enzyme and Protein Chemistry (EPC), Department of Systems Biology, Technical University of Denmark, Soeltofts Plads, Building 224, DK-2800 Kgs. Lyngby, Denmark.
Appl Environ Microbiol. 2010 Nov;76(21):7285-91. doi: 10.1128/AEM.00738-10. Epub 2010 Sep 17.
Recent studies have demonstrated that xylo-oligosaccharides (XOS), which are classified as emerging prebiotics, selectively enhance the growth of bifidobacteria in general and of Bifidobacterium animalis subsp. lactis strains in particular. To elucidate the metabolism of XOS in the well-documented and widely used probiotic strain B. animalis subsp. lactis BB-12, a combined proteomic and transcriptomic approach was applied, involving DNA microarrays, real-time quantitative PCR (qPCR), and two-dimensional difference gel electrophoresis (2D-DIGE) analyses of samples obtained from cultures grown on either XOS or glucose. The analyses show that 9 of the 10 genes that encode proteins predicted to play a role in XOS catabolism (i.e., XOS-degrading and -metabolizing enzymes, transport proteins, and a regulatory protein) were induced by XOS at the transcriptional level, and the proteins encoded by three of these (β-d-xylosidase, sugar-binding protein, and xylose isomerase) showed higher abundance on XOS. Based on the obtained results, a model for the catabolism of XOS in BB-12 is suggested, according to which the strain utilizes an ABC (ATP-binding cassette) transport system (probably for oligosaccharides) to bind XOS on the cell surface and transport them into the cell. XOS are then degraded intracellularly through the action of xylanases and xylosidases to d-xylose, which is subsequently metabolized by the d-fructose-6-P shunt. The findings obtained in this study may have implications for the design of a synbiotic application containing BB-12 and the XOS used in the present study.
最近的研究表明,木二糖(XOS)作为新兴的益生元之一,能够选择性地促进双歧杆菌的生长,尤其是动物双歧杆菌亚种。为了阐明 XOS 在广为人知且广泛使用的益生菌菌株——动物双歧杆菌亚种中的代谢情况,采用了一种组合蛋白质组学和转录组学方法,涉及到 XOS 或葡萄糖培养物样本的 DNA 微阵列、实时定量 PCR(qPCR)和二维差异凝胶电泳(2D-DIGE)分析。分析表明,10 个编码蛋白的基因中有 9 个在转录水平上被 XOS 诱导,这些基因编码的蛋白被预测在 XOS 代谢中发挥作用(即 XOS 降解和代谢酶、转运蛋白和调节蛋白),其中三个基因(β-d-木糖苷酶、糖结合蛋白和木糖异构酶)编码的蛋白在 XOS 上的丰度更高。根据获得的结果,提出了 BB-12 中 XOS 代谢的模型,根据该模型,该菌株利用 ABC(ATP 结合盒)转运系统(可能用于寡糖)在细胞表面结合 XOS 并将其转运到细胞内。XOS 然后通过木聚糖酶和木糖苷酶的作用在细胞内降解为 d-木糖,随后通过 d-果糖-6-P 分流代谢。本研究的结果可能对含有 BB-12 和本研究中使用的 XOS 的共生应用的设计具有重要意义。