首页> 外文期刊>Journal of Agricultural and Food Chemistry >Lignin impact on fiber degradation. 3. Reversal of inhibition of enzymatic hydrolysis by chemical modification of lignin and by additives.
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Lignin impact on fiber degradation. 3. Reversal of inhibition of enzymatic hydrolysis by chemical modification of lignin and by additives.

机译:木质素对纤维降解的影响。 3.通过木质素和添加剂的化学修饰逆转酶水解的抑制作用。

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The impact of lignins of various origins on filter paper hydrolysis by fungal cellulase was examined. Powdered lignins were added to enzyme incubations, either alone or after thorough hydroxypropylation of phenolic sites. Extent of cellulose hydrolysis was reduced by 14-60% by the addition of up to 15% lignin to the substrate. Unmodified lignins were more detrimental to cellulose hydrolysis than hydroxypropylated lignins. The inhibitory effect of lignin addition was only partially overcome by a 10-fold increase in cellulase activity, suggesting inhibitory lignin interactions with both substrate and enzyme. Preincubation of cellulase with underivatized lignins resulted in reduced enzyme activity and soluble protein concentration in the supernatant,suggesting protein precipitation with lignin rather than reduced activity of a lignin-enzyme complex as the inhibitory mechanism. Two further experiments showed that the negative impact of lignin on cellulose hydrolysis can be counteracted by addition of various N compounds and by ammoniation.
机译:检查了各种来源的木质素对真菌纤维素酶水解滤纸的影响。将粉末状木质素单独或在酚性位点彻底羟丙基化后添加到酶培养液中。通过向底物中添加最多15%的木质素,纤维素水解的程度降低了14-60%。未改性的木质素比羟丙基化的木质素对纤维素水解的危害更大。木质素添加的抑制作用仅能被纤维素酶活性提高10倍而部分克服,这表明木质素与底物和酶的抑制性相互作用。纤维素酶与未衍生化的木质素的预温育会降低上清液中的酶活性和可溶性蛋白浓度,这建议用木质素沉淀蛋白质,而不是将木质素-酶复合物的活性作为抑制机制降低。进一步的两个实验表明,木质素对纤维素水解的负面影响可以通过添加各种N化合物和氨化作用来抵消。

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