Nidetzky B, Steiner W, Claeyssens M
Institute of Food Technology, University of Agriculture, Vienna, Austria.
Biochem J. 1994 Nov 1;303 ( Pt 3)(Pt 3):817-23. doi: 10.1042/bj3030817.
Separate binding of several purified cellulolytic components of Trichoderma reesei on to filter paper was studied and concomitant hydrolysis rates evaluated. Enhancement of mass transfer from the bulk liquid to the solid substrate by agitation has two different effects on adsorption depending on the type of enzyme: (i) the fraction of cellobiohydrolase II (CBH II) and endoglucanase III (EG III) bound at equilibrium is increased, whereas (ii) the rate but not the extent of cellobiohydrolase I (CBH I) and endoglucanase I (EG I) adsorption is affected. The adsorption of CBH I core, a component lacking the cellulose-binding domain (CBD), is, however, not significantly influenced by mass transfer. The CBH I interdomain peptide (present in CBH I core b) does not participate in adsorption but enhances stability. The adsorption of CBH I core proteins is a fully reversible process whereas that of the intact CBH I is not. Thus, the interaction of the CBD with filter paper apparently accounts for the mass-transfer-limited binding rate and also for the irreversible adsorption of intact CBH I. Adsorption isotherms at 50 degrees C indicate very similar relative association constants for the intact cellulases (0.24-0.30 l/g of cellulose), but drastically reduced values for CBH I core proteins (0.03 l/g of cellulose). The specific activities of adsorbed CBH I and of its core proteins are identical and a linear relationship between adsorption and rates of hydrolysis is found only for these enzymes. Thus, non-productive binding on to cellulose seems evident in the case of CBH II and EG III but not CBH I.
研究了里氏木霉几种纯化的纤维素分解成分与滤纸的单独结合,并评估了相应的水解速率。通过搅拌增强从本体液体到固体底物的传质对吸附有两种不同影响,这取决于酶的类型:(i)平衡时结合的纤维二糖水解酶II(CBH II)和内切葡聚糖酶III(EG III)的比例增加,而(ii)纤维二糖水解酶I(CBH I)和内切葡聚糖酶I(EG I)的吸附速率而非吸附程度受到影响。然而,缺乏纤维素结合结构域(CBD)的成分CBH I核心的吸附不受传质的显著影响。CBH I结构域间肽(存在于CBH I核心b中)不参与吸附,但可增强稳定性。CBH I核心蛋白的吸附是完全可逆的过程,而完整的CBH I的吸附则不是。因此,CBD与滤纸的相互作用显然导致了传质限制的结合速率以及完整CBH I的不可逆吸附。50℃下的吸附等温线表明,完整纤维素酶的相对缔合常数非常相似(0.24 - 0.30 l/g纤维素),但CBH I核心蛋白的值大幅降低(0.03 l/g纤维素)。吸附的CBH I及其核心蛋白的比活性相同,并且仅在这些酶中发现吸附与水解速率之间存在线性关系。因此,在CBH II和EG III的情况下,纤维素上的非生产性结合似乎很明显,但CBH I并非如此。