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Effect of pH on the Solubilization of Brewers' Spent Grain by Microbial Carbohydrases and Proteases

机译:pH对微生物糖酶和蛋白酶溶解啤酒糟的影响

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The potential for enzymatic solubilization of brewers' spent grain by carbohydrases and proteases was examined over a broad pH range (pH 3.2-11.2). Enzymes from Trichoderma,(Depol 686) were most efficient at a lower pH, while enzymes from the Humicola preparation (Depol 740) were the best performer over the whole range. Profiling of key glycoside hydrolase, esterase and protease activities across the pH range demonstrated that solubilization of spent grain by the Trichoderma enzymes corresponded to the range of maximum activities. This was not the case with the Humicola enzymes, where maximum solubilization of the substrate occurred at pH 9.1, at which pH the determined activities were low. Protease activity in Depol 740 was associated with a high solubilization, but inhibition of proteolytic activity resulted in only a 5% decrease in spent grain solubilization, These results suggest that while enzymes can be used to exploit agro-industrials byproduct, the use of high pH increases the extent of hydrolysis and an unidentified factor produced by Humicola improves the enzyme-catalyzed solubilization of lignocellulosic material.
机译:在较宽的pH范围(pH 3.2-11.2)范围内,研究了通过碳水化合物酶和蛋白酶将啤酒糟的酶促酶解的潜力。在较低的pH值下,木霉属的酶(Depol 686)最有效,而腐殖酸制剂(Depol 740)的酶在整个范围内表现最佳。对整个pH范围内关键糖苷水解酶,酯酶和蛋白酶活性的分析表明,木霉属酶对废谷物的溶解作用对应于最大活性范围。 Humicola酶不是这种情况,其中底物的最大增溶发生在pH 9.1处,在此pH下确定的活性较低。 Depol 740中的蛋白酶活性与高溶解度有关,但抑制蛋白水解活性只会使废谷粒的溶解度降低5%,这些结果表明,尽管酶可用于开发农用工业副产物,但使用高pH腐殖质增加了水解程度,腐殖质产生的未知因子改善了木质纤维素材料的酶催化增溶作用。

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