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Studies of adsorptive capacity of bacterial β-glucosidases on lignocresol aiming the enzymatic recycling in bioprocesses

机译:以生物过程中的酶循环为目标的细菌β-葡萄糖苷酶对木质素甲酚的吸附能力的研究

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摘要

Enzymes are essential in many biological processes, including second-generation ethanol production. However, enzymes are one of the main expenses for the industrial process in these days. Several studies have been done to maximize cost savings, however, many processes are still economically infeasible. In this study, we report the synthesis of a suspension of lignocresol for recycling or reuse of enzymes in bioprocesses. In this way, it was performed the adsorption assays between lignocresol and β-glucosidases from Thermotoga petrophila, belonging to the families GH1 and GH3, for the development of a lignocresol-enzyme complex. Our results show that lignocresol maintains greater adsorptive capacity for β-glucosidases than lignin. This capacity can be explained both by its great hydrophobicity and also by electrostatic characteristics. Therefore, all these results demonstrate good adsorption of the enzymes to the lignocresol, demonstrating great potential for enzymatic recycling.
机译:酶在许多生物过程中都是必不可少的,包括第二代乙醇的生产。但是,如今,酶已成为工业生产的主要费用之一。已经进行了一些研究以最大程度地节省成本,但是,许多过程在经济上仍然不可行。在这项研究中,我们报告了木质素甲酚悬浮液的合成,用于生物过程中酶的回收或再利用。以这种方式,进行了木质素甲酚和来自嗜热栖热菌的GH1和GH3家族的β-葡萄糖苷酶之间的吸附测定,以开发木质素甲酚-酶复合物。我们的结果表明,木质素甲酚比木质素对β-葡萄糖苷酶的吸附能力更高。该容量既可以通过其巨大的疏水性也可以通过静电特性来解释。因此,所有这些结果证明了酶对木质素甲酚的良好吸附,表明了酶回收的巨大潜力。

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