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Application of carbohydrate arrays coupled with mass spectrometry to detect activity of plant-polysaccharide degradative enzymes from the fungus Aspergillus niger

机译:碳水化合物阵列与质谱联用在检测黑曲霉真菌中植物多糖降解酶的活性中的应用

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摘要

Renewables-based biotechnology depends on enzymes to degrade plant lignocellulose to simple sugars that are converted to fuels or high-value products. Identification and characterization of such lignocellulose degradative enzymes could be fast-tracked by availability of an enzyme activity measurement method that is fast, label-free, uses minimal resources and allows direct identification of generated products. We developed such a method by applying carbohydrate arrays coupled with MALDI-ToF mass spectrometry to identify reaction products of carbohydrate active enzymes (CAZymes) of the filamentous fungus Aspergillus niger. We describe the production and characterization of plant polysaccharide-derived oligosaccharides and their attachment to hydrophobic self-assembling monolayers on a gold target. We verify effectiveness of this array for detecting exo- and endo-acting glycoside hydrolase activity using commercial enzymes, and demonstrate how this platform is suitable for detection of enzyme activity in relevant biological samples, the culture filtrate of A. niger grown on wheat straw. In conclusion, this versatile method is broadly applicable in screening and characterisation of activity of CAZymes, such as fungal enzymes for plant lignocellulose degradation with relevance to biotechnological applications as biofuel production, the food and animal feed industry.
机译:基于可再生能源的生物技术依靠酶将植物木质纤维素降解为单糖,然后将其转化为燃料或高价值产品。此类木质纤维素降解酶的鉴定和表征可以通过快速,无标记,使用最少资源并允许直接鉴定生成产物的酶活性测量方法来快速跟踪。我们通过将碳水化合物阵列与MALDI-ToF质谱联用来开发这种方法,以鉴定丝状真菌黑曲霉的碳水化合物活性酶(CAZymes)的反应产物。我们描述了植物多糖衍生的寡糖的生产和表征,以及它们对金靶上疏水性自组装单分子膜的附着。我们验证了该阵列使用商业酶检测外切和内切作用糖苷水解酶活性的有效性,并证明了该平台如何适合检测相关生物样品中的酶活性,即小麦秸秆上种植的黑曲霉的培养滤液。总之,这种通用方法可广泛用于筛选和表征CAZymes的活性,例如用于植物木质纤维素降解的真菌酶,与生物技术在生物燃料生产,食品和动物饲料工业中的应用有关。

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