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Use of Cellulases and Recombinant Cellulose Binding Domains for Refining TCF Kraft Pulp

机译:纤维素酶和重组纤维素结合结构域用于精制TCF牛皮纸浆的用途

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摘要

The modular endoglucanase Cel9B from Paenibacillus barcinonensis is a highly efficient biocatalyst, which expedites pulp refining and reduces the associated energy costs as a result. In this work, we set out to identify the specific structural domain or domains responsible for the action of this enzyme on cellulose fibre surfaces with a view to facilitating the development of new cellulases for optimum biorefining. Using the recombinant enzymes GH9-CBD3c, Fn3-CBD3b, and CBD3b, which are truncated forms of Cel9B, allowed us to assess the individual effects of the catalytic, cellulose binding, and fibronectin-like domains of the enzyme on the refining of TCF kraft pulp from Eucalyptus globulus. Based on the physico-mechanical properties obtained, the truncated form containing the catalytic domain (GH9-CBD3c) has a strong effect on fibre morphology. Comparing its effect with that of the whole cellulase (Cel9B) revealed that the truncated enzyme contributes to increasing paper strength through improved tensile strength and burst strength and also that the truncated form is more effective than the whole enzyme in improving tear resistance. Therefore, the catalytic domain of Cel9B has biorefining action on pulp. Although cellulose binding domains (CBDs) are less efficient toward pulp refining, evidence obtained in this work suggests that CBD3b alters fibre surfaces and influences paper properties as a result.
机译:来自巴氏芽孢杆菌的模块化内切葡聚糖酶Cel9B是高效的生物催化剂,可加快纸浆精制并降低相关的能源成本。在这项工作中,我们着手确定负责该酶在纤维素纤维表面上作用的特定结构域或多个域,以促进新纤维素酶的开发以实现最佳生物精制。使用截短形式的Cel9B的重组酶GH9-CBD3c,Fn3-CBD3b和CBD3b,我们可以评估该酶的催化,纤维素结合和纤连蛋白样结构域对精制TCF牛皮纸的各个作用。来自桉树的果肉。根据获得的物理机械性能,包含催化结构域(GH9-CBD3c)的截短形式对纤维形态有很大影响。将其与全纤维素酶(Cel9B)的效果进行比较,结果表明,截短的酶通过提高抗张强度和破裂强度而有助于提高纸张强度,并且截短的形式在改善抗撕裂性方面比整个酶更有效。因此,Cel9B的催化结构域对纸浆具有生物精制作用。尽管纤维素结合域(CBD)对纸浆精制的效率较低,但这项工作中获得的证据表明CBD3b会改变纤维表面并因此影响纸张性能。

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