首页> 外文OA文献 >CelI, a Noncellulosomal Family 9 Enzyme from Clostridium thermocellum, Is a Processive Endoglucanase That Degrades Crystalline Cellulose
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CelI, a Noncellulosomal Family 9 Enzyme from Clostridium thermocellum, Is a Processive Endoglucanase That Degrades Crystalline Cellulose

机译:CelI,一种来自热纤梭菌的非纤维素家族9酶,是一种降解结晶纤维素的过程性内切葡聚糖酶。

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摘要

The family 9 cellulase gene celI of Clostridium thermocellum, was previously cloned, expressed, and characterized (G. P. Hazlewood, K. Davidson, J. I. Laurie, N. S. Huskisson, and H. J. Gilbert, J. Gen. Microbiol. 139:307-316, 1993). We have recloned and sequenced the entire celI gene and found that the published sequence contained a 53-bp deletion that generated a frameshift mutation, resulting in a truncated and modified C-terminal segment of the protein. The enzymatic properties of the wild-type protein were characterized and found to conform to those of other family 9 glycoside hydrolases with a so-called theme B architecture, where the catalytic module is fused to a family 3c carbohydrate-binding module (CBM3c); CelI also contains a C-terminal CBM3b. The intact recombinant CelI exhibited high levels of activity on all cellulosic substrates tested, with pH and temperature optima of 5.5 and 70°C, respectively, using carboxymethylcellulose as a substrate. Native CelI was capable of solubilizing filter paper, and the distribution of reducing sugar between the soluble and insoluble fractions suggests that the enzyme acts as a processive cellulase. A truncated form of the enzyme, lacking the C terminal CBM3b, failed to bind to crystalline cellulose and displayed reduced activity toward insoluble substrates. A truncated form of the enzyme, in which both the cellulose-binding CBM3b and the fused CBM3c were removed, failed to exhibit significant levels of activity on any of the substrates examined. This study underscores the general nature of this type of enzymatic theme, whereby the fused CBM3c plays a critical accessory role for the family 9 catalytic domain and changes its character to facilitate processive cleavage of recalcitrant cellulose substrates.
机译:先前已克隆,表达和鉴定了热纤梭菌的9族纤维素酶基因celI(GP Hazlewood,K.Davidson,JI Laurie,NS Huskisson,and HJ Gilbert,J.Gen.Microbiol.139:307-316,1993) 。我们已经对整个celI基因进行了重新克隆和测序,发现所发布的序列包含一个53 bp的缺失,该缺失会产生移码突变,从而导致该蛋白的C端片段被截短和修饰。对野生型蛋白的酶学性质进行了表征,并发现其与其他具有所谓主题B结构的9族糖苷水解酶的酶学性质一致,其中催化模块与3c碳水化合物结合模块(CBM3c)融合; CelI还包含一个C端CBM3b。完整的重组CelI在所有测试的纤维素底物上均表现出高水平的活性,使用羧甲基纤维素作为底物,其最适pH和最适温度分别为5.5和70°C。天然CelI能够溶解滤纸,并且还原糖在可溶级分和不溶级分之间的分布表明该酶起着过程性纤维素酶的作用。缺乏C端CBM3b的酶的截短形式无法结合结晶纤维素,并且显示出对不溶性底物的活性降低。酶的截短形式(其中去除了纤维素结合的CBM3b和融合的CBM3c)在任何受检底物上均未表现出明显的活性水平。这项研究强调了这种酶主题的一般性质,即融合的CBM3c对9族催化域起着关键的辅助作用,并改变其特性以促进难降解的纤维素底物的裂解。

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