Kanda T, Amano Y, Nisizawa K
J Biochem. 1985 Dec;98(6):1545-54. doi: 10.1093/oxfordjournals.jbchem.a135423.
Two different endo-1,4-beta-xylanases [1,4-beta-D-xylan xylanohydrolases, EC 3.2.1.8], named Xylanases I and III, were purified to homogeneity by gel filtration and ion exchange column chromatography from Driselase, a commercial enzyme preparation from Irpex lacteus (Polyporus tulipiferae). The purified enzymes were found to be homogeneous on polyacrylamide disc electrophoresis and their specific activities toward xylan were increased approximately 28.7 and 19.8 times, respectively. The activities of each enzyme were considerably inhibited by Hg2+, Ag+, and Mn2+. Their molecular weights were estimated to be approximately 38,000 and 62,000 by gel filtration and sodium dodecyl sulfate (SDS)-polyacrylamide electrophoresis, respectively. Their carbohydrate contents were 2.5% and 8.0% as glucose, and their amino acid composition patterns resembled each other, showing high contents of acidic amino acids, serine, threonine, alanine, and glycine. Both enzymes were most active at pH 6.0 but Xylanase I was more stable as to pH. Their optimum temperatures were 60 degrees C and 70 degrees C, respectively. Xylanase I split up to 34.5% of larchwood xylan whereas Xylanase III split only 18.9% of it. The products with the former were mainly xylose (X1), xylobiose (X2), and xylotriose (X3), whereas X2 and X3 were the main products with the latter. Both enzymes did not hydrolyze X2. Xylanase I produced almost equal quantities of X1 and X2 from X3, while Xylanase III did not attack this substrate. Both enzymes showed no activity toward glycans, other than xylan, such as starch, pachyman and Avicel (microcrystalline cellulose), except the almost one twentieth activity of Xylanase III toward sodium carboxymethyl cellulose (CMC).
从乳白耙齿菌(多脂多孔菌)的商业酶制剂木霉蛋白酶中,通过凝胶过滤和离子交换柱色谱法纯化出两种不同的内切 - 1,4 - β - 木聚糖酶[1,4 - β - D - 木聚糖木聚糖水解酶,EC 3.2.1.8],分别命名为木聚糖酶I和III。纯化后的酶在聚丙烯酰胺圆盘电泳上显示为均一性,它们对木聚糖的比活性分别提高了约28.7倍和19.8倍。每种酶的活性都受到Hg2 +、Ag +和Mn2 +的显著抑制。通过凝胶过滤和十二烷基硫酸钠(SDS) - 聚丙烯酰胺电泳法估计它们的分子量分别约为38,000和62,000。它们的碳水化合物含量以葡萄糖计分别为2.5%和8. .0%,并且它们的氨基酸组成模式相似,显示出酸性氨基酸、丝氨酸、苏氨酸、丙氨酸和甘氨酸的含量较高。两种酶在pH 6.0时活性最高,但木聚糖酶I在pH稳定性方面更好。它们的最适温度分别为60℃和70℃。木聚糖酶I可分解高达34.5%的落叶松木聚糖,而木聚糖酶III仅分解其中的18. .9%。前者的产物主要是木糖(X1)、木二糖(X2)和木三糖(X3),而后者的主要产物是X2和X3。两种酶都不水解X2。木聚糖酶I从X3产生几乎等量的X1和X2,而木聚糖酶III不作用于该底物。除了木聚糖酶III对羧甲基纤维素钠(CMC)有几乎二十分之一的活性外,两种酶对除木聚糖以外的聚糖,如淀粉、茯苓聚糖和微晶纤维素(Avicel)均无活性。