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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Hydrolytic effects of scaffolding proteins CbpB and CbpC on crystalline cellulose mediated by the major cellulolytic complex from Clostridium cellulovorans
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Hydrolytic effects of scaffolding proteins CbpB and CbpC on crystalline cellulose mediated by the major cellulolytic complex from Clostridium cellulovorans

机译:支架蛋白CbpB和CbpC对纤维素梭菌主要纤维素分解复合物介导的结晶纤维素的水解作用

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The role of the scaffolding proteins, cellulose binding protein B and C (CbpB and CbpC, respectively) were identified in cellulolytic complex (cellulosome) of Clostridium cellulovorans for efficient degradation of cellulose. Recombinant CbpB and CbpC directly anchored to the cell surface of C. cellulovorans. In addition, CbpB and CbpC showed increased hydrolytic activity on crystalline cellulose incubated with exoglucanase S (ExgS) and endoglucanase Z (EngZ) compared with the activity of free enzymes. Moreover, the results showed synergistic effects of crystalline cellulose hydrolytic activity (1.8- to 2.2-fold) when CbpB and CbpC complex with ExgS and EngZ are incubated with cellulolytic complex containing mini-CbpA. The results suggest C. cellulovorans critically uses CbpB and CbpC, which can directly anchor cells for the hydrolysis of cellulosic material with the major cellulosome complex. (C) 2015 Elsevier Ltd. All rights reserved.
机译:支架蛋白,纤维素结合蛋白B和C(分别为CbpB和CbpC)的作用已被确定在梭菌梭状芽胞杆菌的纤维素分解复合物(纤维素体)中,以有效降解纤维素。重组CbpB和CbpC直接锚定在C.cellulovorans的细胞表面。此外,与游离酶的活性相比,CbpB和CbpC对与外切葡聚糖酶S(ExgS)和内切葡聚糖酶Z(EngZ)孵育的结晶纤维素显示出更高的水解活性。此外,当将CbpB和CbpC与ExgS和EngZ的复合物与含有mini-CbpA的纤维素分解复合物一起孵育时,结果显示结晶纤维素水解活性具有协同作用(1.8到2.2倍)。结果表明,C。cellulovorans严格使用CbpB和CbpC,它们可以直接锚定细胞,使纤维素与主要的纤维素复合体一起水解。 (C)2015 Elsevier Ltd.保留所有权利。

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