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来自琥珀酸丝状杆菌S85的内切木聚糖酶1和2的纯化、特性及作用方式

Purification, characterization, and mode of action of endoxylanases 1 and 2 from Fibrobacter succinogenes S85.

作者信息

Matte A, Forsberg C W

机构信息

Department of Microbiology, University of Guelph, Ontario, Canada.

出版信息

Appl Environ Microbiol. 1992 Jan;58(1):157-68. doi: 10.1128/aem.58.1.157-168.1992.

Abstract

Two different endoxylanases (1,4-beta-D-xylan xylanohydrolases, EC 3.2.1.8), designated 1 and 2, have been purified by column chromatography to apparent homogeneity from the nonsedimentable extracellular culture fluid of the strictly anaerobic, ruminal bacterium Fibrobacter succinogenes S85 grown on crystalline cellulose. Endoxylanases 1 and 2 were shown to be basic proteins of 53.7 and 66.0 kDa, respectively, with different pH and temperature optima, as well as different substrate hydrolysis characteristics. The Km and Vmax values with water-soluble oat spelts xylan as substrate were 2.6 mg ml-1 and 33.6 mumol min-1 mg-1 for endoxylanase 1 and 1.3 mg ml-1 and 118 mumol min-1 mg-1 for endoxylanase 2. Endoxylanase 1, but not endoxylanase 2, released arabinose from water-soluble oat spelts xylan and rye flour arabinoxylan, but not from arabinan, arabinogalactan, or aryl-alpha-L-arabinofuranosides. With an extended hydrolysis time, endoxylanase 1 released 62.5 and 50% of the available arabinose from water-soluble oat spelts xylan and rye flour arabinoxylan, respectively. Endoxylanase 1 released arabinose directly from the xylan backbone, and this preceded hydrolysis of the xylan to xylooligosaccharides. Endoxylanase 2 showed significant activity against carboxymethyl cellulose but was unable to substantially hydrolyze acid-swollen cellulose. Both enzymes were endo-acting, as revealed by their hydrolysis product profiles on water-soluble xylan and xylooligosaccharides. Because of their unique hydrolytic properties, endoxylanases 1 and 2 appear to have strategic roles in plant cell wall digestion by F. succinogenes in vivo.

摘要

从以结晶纤维素为生长底物的严格厌氧瘤胃细菌琥珀酸丝状杆菌S85的不可沉降细胞外培养液中,通过柱色谱法纯化得到了两种不同的内切木聚糖酶(1,4-β-D-木聚糖木聚糖水解酶,EC 3.2.1.8),分别命名为1号和2号,达到了表观均一性。1号和2号内切木聚糖酶分别为碱性蛋白,分子量分别为53.7 kDa和66.0 kDa,具有不同的最适pH值和温度,以及不同的底物水解特性。以水溶性燕麦麸木聚糖为底物时,1号内切木聚糖酶的Km和Vmax值分别为2.6 mg ml-1和33.6 μmol min-1 mg-1,2号内切木聚糖酶的Km和Vmax值分别为1.3 mg ml-1和118 μmol min-1 mg-1。1号内切木聚糖酶能从水溶性燕麦麸木聚糖和黑麦粉阿拉伯木聚糖中释放阿拉伯糖,但不能从阿拉伯聚糖、阿拉伯半乳聚糖或芳基-α-L-阿拉伯呋喃糖苷中释放。延长水解时间后,1号内切木聚糖酶分别从水溶性燕麦麸木聚糖和黑麦粉阿拉伯木聚糖中释放出62.5%和50%的可利用阿拉伯糖。1号内切木聚糖酶直接从木聚糖主链上释放阿拉伯糖,且这一过程先于木聚糖水解为木寡糖。2号内切木聚糖酶对羧甲基纤维素有显著活性,但不能大量水解酸膨胀纤维素。两种酶均为内切作用,这从它们对水溶性木聚糖和木寡糖的水解产物图谱中可以看出。由于其独特的水解特性,1号和2号内切木聚糖酶在琥珀酸丝状杆菌体内对植物细胞壁的消化过程中似乎发挥着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09c1/195186/10e53d3e0c46/aem00042-0180-a.jpg

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