Garcia-Campayo V, McCrae S I, Zhang J X, Flint H J, Wood T M
Rowett Research Institute, Bucksburn, Aberdeen, U.K.
Biochem J. 1993 Nov 15;296 ( Pt 1)(Pt 1):235-43. doi: 10.1042/bj2960235.
Two catalytic domains, A and C, of xylanase A (XYLA) from Ruminococcus flavefaciens were expressed separately as truncated gene products from lacZ fusions in Escherichia coli. The fusion products, referred to respectively as XYLA-A1 and XYLA-C2, were purified to homogeneity by anion-exchange chromatography and chromatofocusing. XYLA-A1 was isoelectric at pH 5.0 and had a molecular mass of 30 kDa, whereas XYLA-C2 had a pI of 5.4 and a molecular mass of 44 kDa. The catalytic activity shown by both domains was optimal at 50 degrees C, but XYLA-A1 was more sensitive than XYLA-C2 to temperatures higher than the optimum. XYLA-A1 showed a higher sensitivity to pH than XYLA-C2. The enzyme activity of both domains was completely inactivated in the presence of copper or silver ions and partially inactivated by iron or zinc ions. Neither domain was active on xylo-oligosaccharides shorter than xylopentaose: the rate of degradation of longer xylo-oligosaccharides (degree of polymerization 5-10) increased as the chain length increased. Analysis of the products of hydrolysis of xylo-oligosaccharides and xylan (arabinoxylan) polysaccharide showed that the two domains differed in their modes of action: xylobiose was the shortest product of the hydrolysis. With oat spelt xylan as substrate, XYLA-A1 activity was apparently restricted to regions where xylopyranosyl residues did not carry arabinofuranosyl substituents, whereas XYLA-C2 was able to release hetero-oligosaccharides carrying arabinofuranosyl residues. Neither domain was able to release arabinose from oat spelt xylan.
来自黄化瘤胃球菌的木聚糖酶A(XYLA)的两个催化结构域A和C,作为大肠杆菌中lacZ融合基因的截短基因产物分别表达。融合产物分别称为XYLA-A1和XYLA-C2,通过阴离子交换色谱和色谱聚焦纯化至同质。XYLA-A1在pH 5.0时呈等电点,分子量为30 kDa,而XYLA-C2的pI为5.4,分子量为44 kDa。两个结构域显示的催化活性在50℃时最佳,但XYLA-A1比XYLA-C2对高于最佳温度的温度更敏感。XYLA-A1对pH的敏感性高于XYLA-C2。在铜或银离子存在下,两个结构域的酶活性完全失活,在铁或锌离子存在下部分失活。两个结构域对短于木五糖的木寡糖均无活性:较长木寡糖(聚合度5-10)的降解速率随链长增加而增加。对木寡糖和木聚糖(阿拉伯木聚糖)多糖水解产物的分析表明,两个结构域的作用方式不同:木二糖是水解的最短产物。以燕麦麸木聚糖为底物,XYLA-A1的活性显然仅限于吡喃木糖基残基不携带呋喃阿拉伯糖基取代基的区域,而XYLA-C2能够释放携带呋喃阿拉伯糖基残基的杂寡糖。两个结构域均不能从燕麦麸木聚糖中释放阿拉伯糖。