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从链霉菌 B-12-2 中分离纯化、鉴定及底物特异性分析多种木聚糖酶。

Purification, Characterization, and Substrate Specificities of Multiple Xylanases from Streptomyces sp. Strain B-12-2.

机构信息

Stazione Sperimentale per La Cellulosa, Carta e Fibre Tessili Vegetali ed Artificiali, Milan 20133, Italy.

出版信息

Appl Environ Microbiol. 1994 Jul;60(7):2609-15. doi: 10.1128/aem.60.7.2609-2615.1994.

Abstract

The endoxylanase complex from Streptomyces sp. strain B-12-2 was purified and characterized. The organism forms five distinct xylanases in the absence of significant cellulase activity when grown on oat spelt xylan. This is the largest number of endoxylanases yet reported for a streptomycete. On the basis of their physiochemical characteristics, they can be divided into two groups: the first group (xyl 1a and xyl 1b) consists of low-molecular-mass (26.4 and 23.8 kDa, respectively) neutral- to high-pI (6.5 and 8.3, respectively) endoxylanases. Group 1 endoxylanases are unable to hydrolyze aryl-beta-d-cellobioside, have low levels of activity against xylotetraose (X(4)) and limited activity against xylopentaose, produce little or no xylose, and form products having a higher degree of polymerization with complex substrates. These enzymes apparently carry out transglycosylation. The second group (xyl 2, xyl 3, and xyl 4) consists of high-molecular-mass (36.2, 36.2, and 40.5 kDa, respectively), low-pI (5.4, 5.0, and 4.8, respectively) xylanases. Group 2 endoxylanases are able to hydrolyze aryl-beta-d-cellobioside, show higher levels of activity against X(4), and hydrolyze xylopentaose completely with the formation of xylobiose and xylotriose plus limited amounts of X(4) and xylose. The enzymes display intergroup synergism when acting on kraft pulp. Despite intragroup similarities, each enzyme exhibited a unique action pattern and physiochemical characteristic. xyl 2 was highly glycosylated, and xyl 1b (but no other enzyme) was completely inhibited by p-hydroxymercuribenzoate.

摘要

从链霉菌属 B-12-2 菌株中纯化和表征了内切木聚糖酶复合物。当在燕麦 spelt 木聚糖上生长时,该生物体形成五种不同的木聚糖酶,而没有显著的纤维素酶活性。这是迄今为止报道的链霉菌内切木聚糖酶数量最多的一次。根据它们的理化特性,它们可以分为两组:第一组(xyl 1a 和 xyl 1b)由低分子量(分别为 26.4 和 23.8 kDa)的中性至高 pI(分别为 6.5 和 8.3)的内切木聚糖酶组成。第一组内切木聚糖酶不能水解芳基-β-D-纤维二糖苷,对木四糖(X(4))的活性水平低,对木五糖的活性有限,产生少量或不产生木糖,并且用复杂的底物形成聚合度更高的产物。这些酶显然进行了转糖基作用。第二组(xyl 2、xyl 3 和 xyl 4)由高分子量(分别为 36.2、36.2 和 40.5 kDa)、低 pI(分别为 5.4、5.0 和 4.8)的木聚糖酶组成。第二组内切木聚糖酶能够水解芳基-β-D-纤维二糖苷,对 X(4)的活性水平更高,并且完全水解木五糖,形成木二糖和木三糖,外加有限量的 X(4)和木糖。这些酶在作用于硫酸盐浆时表现出组间协同作用。尽管存在组内相似性,但每种酶都表现出独特的作用模式和理化特性。xyl 2 高度糖基化,而 xyl 1b(但不是其他酶)被对羟基汞苯甲酸完全抑制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aefe/201691/7fe307341be6/aem00024-0415-a.jpg

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