Claeyssens M, van Tilbeurgh H, Kamerling J P, Berg J, Vrsanska M, Biely P
Laboratorium voor Biochemie, Rijksuniversiteit Gent, Belgium.
Biochem J. 1990 Aug 15;270(1):251-6. doi: 10.1042/bj2700251.
Endoglucanase I from the filamentous fungus Trichoderma reesei catalyses hydrolysis and glycosyl-transfer reactions of cello-oligosaccharides. Initial bond-cleaving frequencies determined with 1-3H-labelled cello-oligosaccharides proved to be substrate-concentration-dependent. Using chromophoric glycosides and analysing the reaction products by h.p.l.c., kinetic data are obtained and, as typical for an endo-type depolymerase, apparent hydrolytic parameters (kcat., kcat./Km) increase steadily as a function of the number of glucose residues. At high substrate concentrations, and for both free cellodextrins and their aromatic glycosides, complex patterns (transfer reactions) are, however, evident. In contrast with the corresponding lactosides and 1-thiocellobiosides, and in conflict with the expected specificity, aromatic 1-O-beta-cellobiosides are apparently hydrolysed at both scissile bonds, yielding the glucoside as one of the main reaction products. Its formation rate is clearly non-hyperbolically related to the substrate concentration and, since the rate of D-glucose formation is substantially lower, strong indications for dismutation reactions (self-transfer) are again obtained. Evidence for transfer reactions catalysed by endoglucanase I further results from experiments using different acceptor and donor substrates. A main transfer product accumulating in a digest containing a chromophoric 1-thioxyloside was isolated and its structure elucidated by proton n.m.r. spectrometry (500 MHz). The beta 1-4 configuration of the newly formed bond was proved.
来自丝状真菌里氏木霉的内切葡聚糖酶I催化纤维寡糖的水解和糖基转移反应。用1-3H标记的纤维寡糖测定的初始键断裂频率证明是底物浓度依赖性的。使用发色糖苷并通过高效液相色谱分析反应产物,获得动力学数据,并且作为内切型解聚酶的典型特征,表观水解参数(kcat.,kcat./Km)随着葡萄糖残基数量的增加而稳定增加。然而,在高底物浓度下,对于游离纤维糊精及其芳香糖苷,复杂模式(转移反应)是明显的。与相应的乳糖苷和1-硫代纤维二糖苷相反,并且与预期的特异性相矛盾,芳香族1-O-β-纤维二糖苷显然在两个可裂解键处都被水解,产生葡萄糖苷作为主要反应产物之一。其形成速率显然与底物浓度不是双曲线关系,并且由于D-葡萄糖形成的速率明显较低,再次获得了歧化反应(自转移)的强烈迹象。使用不同的受体和供体底物进行的实验进一步证明了内切葡聚糖酶I催化的转移反应。分离出在含有发色1-硫代糖苷的消化物中积累的主要转移产物,并通过质子核磁共振光谱(500 MHz)阐明其结构。证明了新形成键的β1-4构型。