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Roles of the Catalytic Domain and Two Cellulose Binding Domains of Thermomonospora fusca E4 in Cellulose Hydrolysis

机译:热单孢霉E4的催化结构域和两个纤维素结合域在纤维素水解中的作用

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摘要

Thermomonospora fusca E4 is an unusual 90.4-kDa endocellulase comprised of a catalytic domain (CD), an internal family IIIc cellulose binding domain (CBD), a fibronectinlike domain, and a family II CBD. Constructs containing the CD alone (E4-51), the CD plus the family IIIc CBD (E4-68), and the CD plus the fibronectinlike domain plus the family II CBD (E4-74) were made by using recombinant DNA techniques. The activities of each purified protein on bacterial microcrystalline cellulose (BMCC), filter paper, swollen cellulose, and carboxymethyl cellulose were measured. Only the whole enzyme, E4-90, could reach the target digestion of 4.5% on filter paper. Removal of the internal family IIIc CBD (E4-51 and E4-74) decreased activity markedly on every substrate. E4-74 did bind to BMCC but had almost no hydrolytic activity, while E4-68 retained 32% of the activity on BMCC even though it did not bind. A low-activity mutant of one of the catalytic bases, E4-68 (Asp55Cys), did bind to BMCC, although E4-51 (Asp55Cys) did not. The ratios of soluble to insoluble reducing sugar produced after filter paper hydrolysis by E4-90, E4-68, E4-74, and E4-51 were 6.9, 3.5, 1.3, and 0.6, respectively, indicating that the family IIIc CBD is important for E4 processivity.
机译:Fusca E4是一种不寻常的90.4-kDa内切纤维素酶,由催化结构域(CD),内部IIIc家族纤维素结合结构域(CBD),纤连蛋白样结构域和II类CBD组成。使用重组DNA技术制备仅包含CD(E4-51),CD加IIIc CBD家族(E4-68)和CD加纤连蛋白样结构域加II CBD家族(E4-74)的构建体。测量了每种纯化蛋白对细菌微晶纤维素(BMCC),滤纸,溶胀纤维素和羧甲基纤维素的活性。在滤纸上,只有整个酶E4-90可以达到4.5%的目标消化率。内部家族IIIc CBD(E4-51和E4-74)的去除显着降低了每种底物上的活性。 E4-74确实结合了BMCC,但几乎没有水解活性,而E4-68即使不结合也保留了BMCC活性的32%。催化碱基之一的低活性突变体E4-68(Asp55Cys)确实与BMCC结合,尽管E4-51(Asp55Cys)没有。滤纸经E4-90,E4-68,E4-74和E4-51水解后产生的可溶性还原糖与不溶性还原糖之比分别为6.9、3.5、1.3和0.6,表明IIIc CBD家族很重要用于E4的合成能力。

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