Farkas V, Sulova Z, Stratilova E, Hanna R, Maclachlan G
Institute of Chemistry, Slovak Academy of Sciences, Bratislava.
Arch Biochem Biophys. 1992 Nov 1;298(2):365-70. doi: 10.1016/0003-9861(92)90423-t.
Oligosaccharide subunits were prepared from xyloglucan (XG) by partial hydrolysis with cellulase and added back at micro- to millimolar concentrations to XG in the presence of nasturtium seed xyloglucanase (XG-ase). The oligosaccharides (0.2 mM) stimulated the capacity of this XG-ase to reduce the viscosity of XG solutions by 10- to 20-fold. Purification and fractionation of seed XG-ase activity by gel permeation fast protein liquid chromatography produced a single peak that was much more active in the presence than absence of added XG oligosaccharide. [14C]Fucose-labeled XG nonasaccharide was synthesized by pea fucosyltransferase and shown to be incorporated into polymeric XG in the presence of seed XG-ase without the net production of new reducing chain ends, even while the loss of XG viscosity and XG depolymerization were enhanced. It is concluded that in vitro seed XG-ase can transfer cleavage products of XG to XG oligosaccharides via endotransglycosylation reactions, thereby reducing XG M(r) without hydrolysis. Since this is the only XG-cleaving enzyme that develops in nasturtium seeds during germination, it may be that its transglycosylase and hydrolase capacities are both necessary to account for the rapid and complete depolymerization of XG that takes place.
通过用纤维素酶部分水解从木葡聚糖(XG)制备寡糖亚基,并在旱金莲种子木葡聚糖酶(XG-酶)存在的情况下,以微摩尔至毫摩尔浓度将其重新添加到XG中。这些寡糖(0.2 mM)刺激了这种XG-酶将XG溶液粘度降低10至20倍的能力。通过凝胶渗透快速蛋白质液相色谱法对种子XG-酶活性进行纯化和分级分离产生了一个单一峰,在添加XG寡糖存在时比不存在时活性高得多。豌豆岩藻糖基转移酶合成了[14C]岩藻糖标记的XG九糖,并显示在种子XG-酶存在的情况下被掺入聚合XG中,而没有新还原链端的净产生,即使XG粘度的降低和XG解聚增强。得出的结论是,体外种子XG-酶可以通过内转糖基化反应将XG的裂解产物转移到XG寡糖上,从而在不水解的情况下降低XG的相对分子质量(Mr)。由于这是旱金莲种子在萌发过程中产生的唯一一种XG裂解酶,其转糖基酶和水解酶能力可能对于解释发生的XG快速完全解聚都是必要的。