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Structural and functional studies of the glycoside hydrolase family 3 beta-glucosidase Cel3A from the moderately thermophilic fungus Rasamsonia emersonii

机译:结构和功能研究中度嗜热真菌Rasamsonia emersonii的糖苷水解酶家族3β-葡萄糖苷酶Cel3A

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摘要

The filamentous fungus Hypocrea jecorina produces a number of cellulases and hemicellulases that act in a concerted fashion on biomass and degrade it into monomeric or oligomeric sugars. beta-Glucosidases are involved in the last step of the degradation of cellulosic biomass and hydrolyse the beta-glycosidic linkage between two adjacent molecules in dimers and oligomers of glucose. In this study, it is shown that substituting the beta-glucosidase from H. jecorina (HjCel3A) with the beta-glucosidase Cel3A from the thermophilic fungus Rasamsonia emersonii (ReCel3A) in enzyme mixtures results in increased efficiency in the saccharification of lignocellulosic materials. Biochemical characterization of ReCel3A, heterologously produced in H. jecorina, reveals a preference for disaccharide substrates over longer gluco-oligosaccharides. Crystallographic studies of ReCel3A revealed a highly N-glycosylated three-domain dimeric protein, as has been observed previously for glycoside hydrolase family 3 beta-glucosidases. The increased thermal stability and saccharification yield and the superior biochemical characteristics of ReCel3A compared with HjCel3A and mixtures containing HjCel3A make ReCel3A an excellent candidate for addition to enzyme mixtures designed to operate at higher temperatures.
机译:丝状真菌红景天产生大量纤维素酶和半纤维素酶,它们协同作用于生物质,并将其降解为单体糖或低聚糖。 β-葡糖苷酶参与纤维素生物质降解的最后一步,并水解葡萄糖二聚体和寡聚体中两个相邻分子之间的β-糖苷键。在这项研究中,表明在酶混合物中用嗜热真菌Rasamsonia emersonii(ReCel3A)的红褐肉座菌的β-葡萄糖苷酶(HjCel3A)取代了嗜热真菌Rasamsonia emersonii(ReCel3A)的β-葡萄糖苷酶Cel3A可以提高木质纤维素材料的糖化效率。在红褐肉座菌中异源产生的ReCel3A的生化特征显示,与更长的葡萄糖寡糖相比,二糖底物更受青睐。 ReCel3A的晶体学研究显示了高度N-糖基化的三结构域二聚体蛋白,正如先前对糖苷水解酶家族3β-葡萄糖苷酶所观察到的。与HjCel3A和含HjCel3A的混合物相比,ReCel3A具有更高的热稳定性和糖化收率,以及优异的生化特性,使ReCel3A成为添加到可在更高温度下操作的酶混合物中的绝佳候选者。

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