Sunna A, Antranikian G
Technical University Hamburg-Harburg, Department of Technical Microbiology, Germany.
Crit Rev Biotechnol. 1997;17(1):39-67. doi: 10.3109/07388559709146606.
The development of new analytical techniques and the commercial availability of new substrates have led to the purification and characterization of a large number of xylan-degrading enzymes. Furthermore, the introduction of recombinant DNA technology has resulted in the selection of xylanolytic enzymes that are more suitable for industrial applications. For a successful integration of xylanases in industrial processes, a detailed understanding of the mechanism of enzyme action is, however, required. This review gives an overview of various xylanolytic enzyme systems from bacteria and fungi that have been described recently in more detail.
新分析技术的发展以及新底物的商业可得性,促使大量木聚糖降解酶得以纯化和表征。此外,重组DNA技术的引入使得人们能够筛选出更适合工业应用的木聚糖分解酶。然而,要想在工业生产过程中成功整合木聚糖酶,就需要详细了解酶的作用机制。本文综述了近期更为详细描述的来自细菌和真菌的各种木聚糖分解酶系统。