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A new generation of versatile chromogenic substrates for high-throughput analysis of biomass-degrading enzymes

机译:用于生物质降解酶高通量分析的新一代多功能生色底物

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Background Enzymes that degrade or modify polysaccharides are widespread in pro- and eukaryotes and have multiple biological roles and biotechnological applications. Recent advances in genome and secretome sequencing, together with associated bioinformatic tools, have enabled large numbers of carbohydrate-acting enzymes to be putatively identified. However, there is a paucity of methods for rapidly screening the biochemical activities of these enzymes, and this is a serious bottleneck in the development of enzyme-reliant bio-refining processes. Results We have developed a new generation of multi-coloured chromogenic polysaccharide and protein substrates that can be used in cheap, convenient and high-throughput multiplexed assays. In addition, we have produced substrates of biomass materials in which the complexity of plant cell walls is partially maintained. Conclusions We show that these substrates can be used to screen the activities of glycosyl hydrolases, lytic polysaccharide monooxygenases and proteases and provide insight into substrate availability within biomass. We envisage that the assays we have developed will be used primarily for first-level screening of large numbers of putative carbohydrate-acting enzymes, and the assays have the potential to be incorporated into fully or semi-automated robotic enzyme screening systems.
机译:背景技术降解或修饰多糖的酶广泛存在于原核和真核生物中,并具有多种生物学作用和生物技术应用。基因组和分泌组测序的最新进展,以及相关的生物信息学工具,已使人们能够鉴定出大量的碳水化合物作用酶。然而,缺乏用于快速筛选这些酶的生物化学活性的方法,这是开发依赖酶的生物精制方法的严重瓶颈。结果我们开发了新一代的多色发色多糖和蛋白质底物,可用于廉价,便捷和高通量的多重分析中。此外,我们还生产了生物质材料的基质,其中部分保留了植物细胞壁的复杂性。结论我们表明,这些底物可用于筛选糖基水解酶,裂解性多糖单加氧酶和蛋白酶的活性,并提供对生物质内底物可用性的了解。我们设想,我们开发的检测方法将主要用于大量假定的碳水化合物作用酶的一级筛选,并且该检测方法有可能被整合到全自动或半自动化的机器人酶筛查系统中。

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