Department of Chemistry and Biomolecular Sciences, Faculty of Science, Macquarie University, Sydney, New South Wales 2109, Australia.
Appl Microbiol Biotechnol. 2010 Mar;86(1):189-200. doi: 10.1007/s00253-009-2242-y. Epub 2009 Sep 29.
CsMan26 from Caldicellulosiruptor strain Rt8.B4 is a modular beta-mannanase consisting of two N-terminal family 27 carbohydrate-binding modules (CBMs), followed by a family 35 CBM and a family 26 glycoside hydrolase catalytic module (mannanase). A functional dissection of the full-length CsMan26 and a comprehensive characterisation of the truncated derivatives were undertaken to evaluate the role of the CBMs. Limited proteolysis was used to define biochemically the boundaries of the different structural modules in CsMan26. The full-length CsMan26 and three truncated derivatives were produced in Escherichia coli, purified and characterised. The systematic removal of the CBMs resulted in a decrease in the optimal temperature for activity and in the overall thermostability of the derivatives. Kinetic experiments indicated that the presence of the mannan-specific family 27 CBMs increased the affinity of the enzyme towards the soluble galactomannan substrate but this was accompanied by lower catalytic efficiency. The full-length CsMan26 and its truncated derivatives were unable to hydrolyse mannooligosaccharides with degree of polymerisation (DP) of three or less. The major difference in the hydrolysis pattern of larger mannooligosaccharides (DP >3) by the derivatives was determined by their abilities to further hydrolyse the intermediate sugar mannotetraose.
来自 Caldicellulosiruptor 菌株 Rt8.B4 的 CsMan26 是一种模块化的β-甘露聚糖酶,由两个 N 端家族 27 碳水化合物结合模块(CBMs)组成,随后是一个家族 35 CBM 和一个家族 26 糖苷水解酶催化模块(甘露聚糖酶)。对全长 CsMan26 进行了功能剖析,并对截短衍生物进行了全面表征,以评估 CBM 的作用。有限蛋白酶解用于在生化上定义 CsMan26 不同结构模块的边界。全长 CsMan26 和三个截短衍生物在大肠杆菌中生产、纯化和表征。CBM 的系统去除导致活性的最适温度降低,并且衍生物的整体热稳定性降低。动力学实验表明,甘露聚糖特异性家族 27 CBMs 的存在增加了酶对可溶性半乳甘露聚糖底物的亲和力,但这伴随着较低的催化效率。全长 CsMan26 及其截短衍生物无法水解聚合度为三或更小的甘露寡糖。衍生物对较大甘露寡糖(DP>3)水解模式的主要区别取决于它们进一步水解中间糖甘露四糖的能力。