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Enhancing the enzymatic hydrolysis of lignocellulosic biomass by increasing the carboxylic acid content of the associated lignin

机译:通过增加相关木质素的羧酸含量来增强木质纤维素生物质的酶促水解

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To assess the effects that the physical and chemical properties of lignin might have on the enzymatic hydrolysis of pretreated lignocellulosic substrates, protease treated lignin (PTL) and cellulolytic enzyme lignin (CEL) fractions, isolated from steam and organosolv pretreated corn stover, poplar, and lodgepole pine, were prepared and characterized. The adsorption of cellulases to the isolated lignin preparations corresponded to a Langmuir adsorption isotherm. It was apparent that, rather than the physical properties of the isolated lignin, the carboxylic acid functionality of the isolated lignin, as determined by FTIR and NMR spectroscopy, had much more of an influence when lignin was added to typical hydrolysis of pure cellulose (Avicel). An increase in the carboxylic content of the lignin preparation resulted in an increased hydrolysis yield. These results suggested that the carboxylic acids within the lignin partially alleviate non-productive binding of cellulases to lignin. To try to confirm this possible mechanism, dehydrogenative polymers (DHP) of monolignols were synthesized from coniferyl alcohol (CA) and ferulic acid (FA), and these model compounds were added to a typical enzymatic hydrolysis of Avicel. The DHP from FA, which was enriched in carboxylic acid groups compared with the DHP from CA, adsorbed a lower mount of cellulases and did not decrease hydrolysis yields when compared to the DHP from CA, which decreased the hydrolysis of Avicel by 8.4%. Thus, increasing the carboxylic acid content of the lignin seemed to significantly decrease the non-productive binding of cellulases and consequently increased the enzymatic hydrolysis of the cellulose. Biotechnol. Bioeng. 2011; 108:538-548.
机译:为了评估木质素的物理和化学性质对预处理的木质纤维素底物,蛋白酶处理的木质素(PTL)和纤维素分解酶木质素(CEL)馏分的酶解的影响,这些馏分从蒸汽和有机溶剂预处理的玉米秸秆,杨木和准备和表征了黑松。纤维素酶对分离的木质素制品的吸附相当于Langmuir吸附等温线。显然,当将木质素添加到典型的纯纤维素水解中时,通过FTIR和NMR光谱测定,分离出的木质素的羧酸官能团比分离出的木质素的物理特性具有更大的影响力(Avicel )。木质素制剂中羧基含量的增加导致水解产率的增加。这些结果表明,木质素内的羧酸部分地减轻了纤维素酶与木质素的非生产性结合。为了试图确认这种可能的机理,由松柏醇(CA)和阿魏酸(FA)合成了单木酚的脱氢聚合物(DHP),并将这些模型化合物添加到Avicel的典型酶水解中。与来自CA的DHP相比,来自FA的DHP与来自CA的DHP相比富含羧酸基团,其吸附的纤维素酶含量较低,并且没有降低水解产率,这使得来自Avicel的水解降低了8.4%。因此,增加木质素的羧酸含量似乎显着降低了纤维素酶的非生产性结合,因此增加了纤维素的酶促水解。生物技术。生恩2011; 108:538-548。

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