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纤维素酶-木质素相互作用——碳水化合物结合模块和 pH 值在非生产性结合中的作用。

Cellulase-lignin interactions-the role of carbohydrate-binding module and pH in non-productive binding.

机构信息

VTT Technical Research Centre of Finland, P.O. Box 1000, FI-02044 VTT, Finland.

出版信息

Enzyme Microb Technol. 2013 Oct 10;53(5):315-21. doi: 10.1016/j.enzmictec.2013.07.003. Epub 2013 Jul 18.

Abstract

Non-productive cellulase adsorption onto lignin is a major inhibitory mechanism preventing enzymatic hydrolysis of lignocellulosic feedstocks. Therefore, understanding of enzyme-lignin interactions is essential for the development of enzyme mixtures and processes for lignocellulose hydrolysis. We have studied cellulase-lignin interactions using model enzymes, Melanocarpus albomyces Cel45A endoglucanase (MaCel45A) and its fusions with native and mutated carbohydrate-binding modules (CBMs) from Trichoderma reesei Cel7A. Binding of MaCel45A to lignin was dependent on pH in the presence and absence of the CBM; at high pH, less enzyme bound to isolated lignins. Potentiometric titration of the lignin preparations showed that negatively charged groups were present in the lignin samples and that negative charge in the samples was increased with increasing pH. The results suggest that electrostatic interactions contributed to non-productive enzyme adsorption: Reduced enzyme binding at high pH was presumably due to repulsive electrostatic interactions between the enzymes and lignin. The CBM increased binding of MaCel45A to the isolated lignins only at high pH. Hydrophobic interactions are probably involved in CBM binding to lignin, because the same aromatic amino acids that are essential in CBM-cellulose interaction were also shown to contribute to lignin-binding.

摘要

非生产性纤维素酶吸附到木质素上是阻止木质纤维素饲料原料酶解的主要抑制机制。因此,了解酶-木质素相互作用对于开发用于木质纤维素水解的酶混合物和工艺至关重要。我们使用模型酶,即白腐菌 Cel45A 内切葡聚糖酶(MaCel45A)及其与里氏木霉 Cel7A 的天然和突变的碳水化合物结合模块(CBM)的融合体研究了纤维素酶-木质素相互作用。MaCel45A 与木质素的结合取决于存在和不存在 CBM 时的 pH 值;在高 pH 值下,较少的酶与分离的木质素结合。木质素制剂的等电滴定表明,木质素样品中存在带负电荷的基团,并且随着 pH 值的升高,样品中的负电荷增加。结果表明,静电相互作用有助于非生产性酶吸附:高 pH 值下酶结合减少可能是由于酶与木质素之间的排斥静电相互作用。CBM 仅在高 pH 值下增加了 MaCel45A 对分离木质素的结合。疏水相互作用可能参与 CBM 与木质素的结合,因为在 CBM-纤维素相互作用中必不可少的相同芳香族氨基酸也被证明有助于木质素结合。

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