Senf Deborah, Ruprecht Colin, de Kruijff Goswinus H M, Simonetti Sebastian O, Schuhmacher Frank, Seeberger Peter H, Pfrengle Fabian
Department of Biomolecular Systems, Max-Planck-Institute of Colloids and Interfaces, Am Mühlenberg 1, 14476, Potsdam, Germany.
Institute of Chemistry and Biochemistry, Freie Universität Berlin, Arnimallee 22, 14195, Berlin, Germany.
Chemistry. 2017 Mar 2;23(13):3197-3205. doi: 10.1002/chem.201605902. Epub 2017 Feb 8.
Xylan-degrading enzymes are crucial for the deconstruction of hemicellulosic biomass, making the hydrolysis products available for various industrial applications such as the production of biofuel. To determine the substrate specificities of these enzymes, we prepared a collection of complex xylan oligosaccharides by automated glycan assembly. Seven differentially protected building blocks provided the basis for the modular assembly of 2-substituted, 3-substituted, and 2-/3-substituted arabino- and glucuronoxylan oligosaccharides. Elongation of the xylan backbone relied on iterative additions of C4-fluorenylmethoxylcarbonyl (Fmoc) protected xylose building blocks to a linker-functionalized resin. Arabinofuranose and glucuronic acid residues have been selectively attached to the backbone using fully orthogonal 2-(methyl)naphthyl (Nap) and 2-(azidomethyl)benzoyl (Azmb) protecting groups at the C2 and C3 hydroxyls of the xylose building blocks. The arabinoxylan oligosaccharides are excellent tools to map the active site of glycosyl hydrolases involved in xylan deconstruction. The substrate specificities of several xylanases and arabinofuranosidases were determined by analyzing the digestion products after incubation of the oligosaccharides with glycosyl hydrolases.
木聚糖降解酶对于半纤维素生物质的解构至关重要,可使水解产物用于各种工业应用,如生物燃料生产。为了确定这些酶的底物特异性,我们通过自动化聚糖组装制备了一系列复杂的木聚糖寡糖。七个不同保护的构建模块为2-取代、3-取代以及2-/3-取代的阿拉伯糖基和葡糖醛酸木聚糖寡糖的模块化组装提供了基础。木聚糖主链的延伸依赖于将C4-芴甲氧羰基(Fmoc)保护的木糖构建模块迭代添加到连接子功能化树脂上。阿拉伯呋喃糖和葡糖醛酸残基已通过在木糖构建模块的C2和C3羟基处使用完全正交的2-(甲基)萘基(Nap)和2-(叠氮甲基)苯甲酰基(Azmb)保护基团选择性地连接到主链上。阿拉伯木聚糖寡糖是绘制参与木聚糖解构的糖基水解酶活性位点的优秀工具。通过分析寡糖与糖基水解酶孵育后的消化产物,确定了几种木聚糖酶和阿拉伯呋喃糖苷酶的底物特异性。