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World J Microbiol Biotechnol. 1994 Jan;10(1):64-8. doi: 10.1007/BF00357566.
An endo-(1→4)-β-D-xylanase from Neocallimastix frontalis was purified by anion-exchange chromatography. The enzyme had an apparent molecular mass of 30 kDa on SDS-PAGE and exhibited maximum activity at 50°C and at pH values between 6.0 and 6.6. Kinetic studies on the hydrolysis of xylo-oligosaccharides, ranging from xylobiose to xylodecaose, showed that xylohexaose and xyloheptaose were the preferred substrates for the enzyme and that xylobiose, xylotriose and xylotetraose were not hydrolysed. Xylose was not a product of the hydrolysis of any of the xylo-oligosaccharide substrates tested. The enzyme appeared to have a strong preference for the hydrolysis of the internal glycosidic bonds of the oligosaccharides, which is typical of endo-(1→4)-β-D-xylanase activity, but it differed from other fungal endo-(1→4)-β-D-xylanases in that it had uniform action on the various internal linkages in the xylo-oligosaccharides.
里氏木霉来源的内切-(1→4)-β-D-木聚糖酶经阴离子交换层析进行了纯化。SDS-PAGE 显示该酶的表观分子量为 30 kDa,在 50°C 和 pH 值在 6.0 到 6.6 之间时具有最大活性。对木二糖到木十糖的各种低聚木糖的水解动力学研究表明,木六糖和木七糖是该酶的首选底物,而木二糖、木三糖和木四糖则不能被水解。在所测试的任何低聚木糖底物的水解中,木糖都不是产物。该酶似乎对寡糖内部糖苷键的水解具有很强的偏好,这是典型的内切-(1→4)-β-D-木聚糖酶活性,但与其他真菌内切-(1→4)-β-D-木聚糖酶不同的是,它对木寡糖中的各种内部键具有均匀的作用。