Action of Trichoderma Reesei and Aspergillus Oryzae Esterases in the Deacetylation of Hemicelluloses

里氏木霉 葡甘露聚糖 木聚糖 化学 酯酶 米曲霉 甘露聚糖 半纤维素 生物化学 乙酰化 多糖 基质(水族馆) 水解 阿拉伯木聚糖 低潮区 生物 纤维素酶 生态学 基因
作者
Maija Tenkanen
出处
期刊:Biotechnology and Applied Biochemistry [Wiley]
卷期号:27 (1): 19-24 被引量:55
标识
DOI:10.1111/j.1470-8744.1998.tb01370.x
摘要

Xylans and mannans contain different esterified substituents such as acetyl, feruloyl and p-coumaroyl side groups. The functions of hemicellulose-deacetylating esterases of Trichoderma reesei and Aspergillus oryzae are discussed in this paper. Both fungi produce multiple esterases and two different esterases were isolated from both T. reesei and A. oryzae. The enzymes differed significantly in their substrate specificities. Acetyl xylan esterase of T. reesei was highly active on polymeric xylan but was unable to remove acetyl substituents from glucomannan or phenolic substituents from wheat straw arabinoxylan. Another esterase, acetyl esterase from T. reesei, had activity only towards short oligomeric and monomeric acetates derived both from xylan and glucomannan. The acetyl glucomannan esterase of A. oryzae was most active towards polymeric glucomannan, but was also able to remove acetyl groups from xylan. The only esterase studied which was active against phenolic substituents in arabinoxylans was the feruloyl esterase from A. oryzae. Feruloyl esterase had the widest substrate specificity of the esterases studied. It was also able to act on acetyl groups both in xylan and in glucomannan. The simultaneous enzymic liberation of acetyl groups from xylan and glucomannan clearly enhanced the action of xylan- and mannan-degrading enzymes, thus increasing the hydrolysis yield significantly. However, none of the esterases was able to remove all acetyl substituents when acting alone and simultaneous action of two esterases was needed for complete deacetylation.

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