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Influence of organic co-solvents on the activity and substrate specificity of feruloyl esterases

机译:有机助溶剂对阿魏酸酯酶活性和底物特异性的影响

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Organic co-solvents can expand the use of enzymes in lignocellulose deconstruction through making substrates more soluble and thus more accessible. In choosing the most adequate co-solvent for feruloyl esterases, hydrolysis of methyl p-hydroxycinnamates by three pure enzymes (and a multi-enzyme preparation) was evaluated. Low concentrations of dimethylsulfoxide (DMSO) enhanced hydrolysis by two of the enzymes while at levels >20%, activity was reduced. DMSO also enhanced acetyl esterase-type activity of the enzymes. The co-solvent effect was different for each enzyme-substrate couple, indicating that other factors are also involved. Kinetic studies with a Talaromyces stipitatus feruloyl esterase showed low concentrations of dimethylsulfoxide enhanced the hydrolytic rate while K_m also increased. Moreover, long-term incubation (96h) of an Aspergillus niger feruloyl esterase in dimethylsulfoxide:water provided to the enzyme the ability to hydrolyze methyl p-coumarate, suggesting an active-site re-arrangement. Dimethylsulfoxide (10-30%) is proposed as an adequate co-solvent for feruloyl esterase treatment of water-insoluble substrates.
机译:有机助溶剂可通过使底物更易溶并因此更易获得,来扩大酶在木质纤维素解构中的用途。在为阿魏酸酯酶选择最合适的助溶剂时,评估了三种纯酶(和多酶制剂)水解对羟基肉桂酸甲酯的能力。低浓度的二甲基亚砜(DMSO)增强了两种酶的水解,而含量> 20%时,活性降低了。 DMSO还增强了酶的乙酰酯酶型活性。每种酶-底物对的助溶剂作用均不同,表明还涉及其他因素。钝角拟南芥阿魏酸酯酶的动力学研究表明,低浓度的二甲基亚砜可提高水解速率,而K_m也可提高。此外,黑曲霉阿魏酸酯酶在二甲基亚砜:水中的长期温育(96h)为酶提供了水解对香豆酸甲酯的能力,表明存在活性位点重排。提出了二甲基亚砜(10-30%)作为用于水不溶性底物的阿魏酸酯酶处理的适当助溶剂。

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