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Synergistic Effects on Crystalline Cellulose Degradation between Cellulosomal Cellulases from Clostridium cellulovorans

机译:纤维素梭菌纤维素纤维素酶之间结晶纤维素降解的协同效应。

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摘要

Clostridium cellulovorans produces a multienzyme cellulose-degrading complex called the cellulosome. In this study, we determined the synergistic effects on crystalline cellulose degradation by three different recombinant cellulosomes containing either endoglucanase EngE, endoglucanase EngH, or exoglucanase ExgS bound to mini-CbpA, a part of scaffolding protein CbpA. EngE, EngH, and ExgS are classified into the glycosyl hydrolase families 5, 9, and 48, respectively. The assembly of ExgS and EngH with mini-CbpA increased the activity against insoluble cellulose 1.5- to 3-fold, although no effects on activity against soluble cellulose were observed. These results indicated that mini-CbpA could help cellulase components degrade insoluble cellulose but not soluble cellulose. The mixture of the cellulosomes containing ExgS and EngH showed higher activity and synergy degrees than the other cellulosome mixtures, indicating the synergistic effect between EngH and ExgS was the most dominant effect among the three mixtures for crystalline cellulose degradation. Reactions were also performed by adding different cellulosomes in a sequential manner. When ExgS was used for the initial reaction followed by EngE and EngH, almost no synergistic effect was observed. On the other hand, when EngE or EngH was used for the first reaction followed by ExgS, synergistic effects were observed. These results indicated that the initial reactions by EngH and/or EngE promoted cellulose degradation by ExgS.
机译:纤维梭菌产生一种降解纤维素的多酶复合物,称为纤维素体。在这项研究中,我们确定了三种不同的重组纤维素对结晶纤维素降解的协同作用,这些重组纤维素包含内切葡聚糖酶EngE或外切葡聚糖酶ExgS结合到微型CbpA(支架蛋白CbpA的一部分)上。 EngE,EngH和ExgS分别分为糖基水解酶家族5、9和48。尽管未观察到对可溶性纤维素活性的影响,但带有mini-CbpA的ExgS和EngH的组装将其对不溶性纤维素的活性提高了1.5到3倍。这些结果表明mini-CbpA可以帮助纤维素酶组分降解不溶性纤维素,但不能降解可溶性纤维素。含ExgS和EngH的纤维素混合物比其他纤维素混合物具有更高的活性和协同度,表明EngH和ExgS的协同作用是三种混合物中结晶纤维素降解的最主要作用。还可以通过依次添加不同的纤维素小体来进行反应。当将ExgS用于EngE和EngH进行初始反应时,几乎没有观察到协同作用。另一方面,当将EngE或EngH用于随后的ExgS的第一反应时,观察到了协同作用。这些结果表明,EngH和/或EngE的初始反应促进了ExgS对纤维素的降解。

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