Kanda T, Nakakubo S, Wakabayashi K, Nisizawa K
J Biochem. 1978 Nov;84(5):1217-26. doi: 10.1093/oxfordjournals.jbchem.a132239.
A cellulase component of Avicelase type was obtained from Driselase, a commercial enzyme preparation from a wood-rotting fungus Irpex lacteus (Polyporus tulipiferae). It showed a single band on SDS-polyacrylamide electrophoresis. The amino acid composition of this cellulase resembled those of cellulase components of endo-type from the same fungus. However, it produced exclusively cellobiose from CMC as well as from water-insoluble celluloses such as Avicel or cotton at earlier stages of hydrolysis. In addition, the hydrolysis of CMC practically stopped after an initial rapid stage. The cellulase showed a strong synergistic action with an endo-cellulase of higher randomness (typical CMCase-type) in the hydrolysis of CMC as well as Avicel. In contrast to cellotriose and -tetraose, cellopentaose and -hexaose were attacked very rapidly, and only cellobiose was produced. These results suggest that the cellulase is an exo-type component. However, it mutarotated the products from cellopentaitol in the same direction as endo-cellulases. it represented a relatively large portion of the total cellulase activity, and may play an important role in the degradation of native cellulose in vivo.
从瑞氏木霉(多孔菌科)的商业酶制剂Driselase中获得了一种纤维二糖酶类型的纤维素酶组分。它在SDS-聚丙烯酰胺凝胶电泳上显示为单一一条带。这种纤维素酶的氨基酸组成与来自同一真菌的内切型纤维素酶组分相似。然而,在水解早期,它仅从羧甲基纤维素(CMC)以及从诸如微晶纤维素或棉花等水不溶性纤维素产生纤维二糖。此外,CMC的水解在初始快速阶段后实际上就停止了。在CMC以及微晶纤维素的水解中,该纤维素酶与更高随机性的内切纤维素酶(典型的羧甲基纤维素酶类型)表现出强烈的协同作用。与纤维三糖和纤维四糖相反,纤维五糖和纤维六糖被快速分解,并且只产生纤维二糖。这些结果表明该纤维素酶是一种外切型组分。然而,它使纤维五醇的产物发生变旋,其方向与内切纤维素酶相同。它在总纤维素酶活性中占相对较大比例,并且可能在体内天然纤维素的降解中起重要作用。