Instituto de Agroquímica y Tecnología de Alimentos, Consejo Superior de Investigaciones Científicas, Jaime Roig 11, 46010 Valencia, Spain.
Appl Environ Microbiol. 1993 May;59(5):1376-82. doi: 10.1128/aem.59.5.1376-1382.1993.
By applying different classical and fast protein liquid chromatographic techniques, three xylanases (beta-1,4-d-xylan xylanhydrolase) were purified to homogeneity from the extracellular enzymatic complex of Bacillus polymyxa. The three enzymes (X(34)C, X(34)E, and X(22)) were small proteins of 34, 34, and 22 kDa and basic pIs 9.3, >9.3, and 9.0, respectively. X(34)C and X(34)E are closely related and seem to be isoforms of the same enzyme. However, they differ in some characteristics. The three enzymes had different pH and temperature optima. One of them, X(34)E, showed a high thermal stability. The V(max) values determined for X(34)C, X(34)E, and X(22) enzymes on oat spelts xylan were 14.9, 85.5, and 64.0 U mg, respectively, and 16.1, 62.0, and 150.6 U mg on birchwood xylan. When oat spelts xylan was the substrate used, K(m) values of 3.4, 2.4, and 1.9 mg ml were obtained for X(34)C, X(34)E, and X(22) enzymes, respectively, and 0.65, 6.3, and 0.32 mg ml were the respective K(m) values determined with birchwood xylan as the substrate. The enzymes were nondebranching endo-beta-xylanases. Xylose was one of the products of xylan hydrolysis by xylanases X(34)C and X(34)E, but this monosaccharide was not released by X(22) enzyme. However, neither of the enzymes was able to degrade xylobiose.
应用不同的经典和快速蛋白质液相层析技术,从多粘类芽孢杆菌的细胞外酶复合物中纯化为 3 种木聚糖酶(β-1,4-d-木聚糖木聚糖水解酶)。这 3 种酶(X(34)C、X(34)E 和 X(22))是 34、34 和 22 kDa 的小蛋白,等电点分别为 9.3、>9.3 和 9.0。X(34)C 和 X(34)E 密切相关,似乎是同一种酶的同工酶。然而,它们在某些特性上存在差异。这 3 种酶的最适 pH 和温度不同。其中一种酶 X(34)E 表现出较高的热稳定性。在燕麦斯佩尔特木聚糖上,X(34)C、X(34)E 和 X(22)酶的 V(max)值分别为 14.9、85.5 和 64.0 U mg,在桦木木聚糖上分别为 16.1、62.0 和 150.6 U mg。当以燕麦斯佩尔特木聚糖为底物时,X(34)C、X(34)E 和 X(22)酶的 K(m)值分别为 3.4、2.4 和 1.9 mg ml,而以桦木木聚糖为底物时,K(m)值分别为 0.65、6.3 和 0.32 mg ml。这些酶是非分支内-β-木聚糖酶。木糖是木聚糖酶 X(34)C 和 X(34)E 水解木聚糖的产物之一,但这种单糖不能被 X(22)酶释放。然而,这两种酶都不能降解木二糖。