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Production and biochemical characterization of xylanases synthesized by the thermophilic fungus Rasamsonia emersonii S10 by solid-state cultivation

机译:通过固态培养得到嗜热真菌雷斯·艾默西S10合成的木聚糖酶的生产和生化表征

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摘要

The xylanolytic enzyme complex hydrolyzes xylan, and these enzymes have various industrial applications. The goal of this work was to characterize the endoxylanases produced by the thermophilic fungus Rasamsonia emersonii in solid-state cultivation. Tests were carried out to evaluate the effects of pH, temperature, glycerol and phenolic compounds on enzyme activity. Thermal denaturation of one isolated enzyme was evaluated. The crude extract from R. emersonii was applied to breakdown pretreated sugarcane bagasse, by quantifying the release of xylose and glucose. The optimum pH value for the crude enzymatic extract was 5.5, and 80 °C was the optimum temperature. Regarding the stability of the crude extract, the highest values occurred between the pH ranges from 4 to 5.5. Several phenolic compounds were tested, showing an increase in enzymatic activity on the crude extract, except for tannic acid. Zymography displayed four corresponding endoxylanase bands, which were isolated by extraction from a polyacrylamide gel. The thermodynamic parameters of isolated Xylanase C were evaluated, showing a half-life greater than 6 h at 80 °C (optimum temperature), in addition to high melting temperature (93.3 °C) and structural resistance to thermal denaturation. Pretreated sugarcane bagasse breakdown by the crude enzymatic extract from R. emersonii has good hemicellulose conversion to xylose.
机译:木聚糖降解酶复合物水解木聚糖,以及这些酶具有各种工业应用。这项工作的目的是表征在固态培养嗜热真菌Rasamsonia埃默森产生的内切木聚糖。进行实验以评价pH,温度,甘油和酚类化合物对酶活性的影响。一种分离的酶的热变性进行评价。从R.埃默森将粗提取物施加到击穿预处理的甘蔗渣,通过量化木糖和葡萄糖的释放。为粗酶提取物的最佳pH值是5.5,并且80℃下的最佳温度。关于粗提取物的稳定性,最高值的pH范围之间发生从4至5.5。几种酚类化合物进行了测试,表现出对粗提取物的增加酶活性,除了单宁酸。酶谱分析显示四个相应的木聚糖内切条带,这是由从萃取聚丙烯酰胺凝胶中分离。分离木聚糖酶C的热力学参数进行了评价,呈现出半衰期大于6小时,在80℃(最适温度),除高的熔融温度(93.3℃)和热变性的结构阻力。通过从R.埃默森粗酶提取物预处理的甘蔗渣击穿具有良好的半纤维素转化为木糖。

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