Department of Biological Systems Engineering, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061, USA.
Bioresour Technol. 2010 Jul;101(14):5534-8. doi: 10.1016/j.biortech.2010.01.152. Epub 2010 Mar 4.
The glycoside hydrolase family 9 cellulase (Cel9) from Clostridium phytofermentans has a multi-modular structure and is essential for cellulose hydrolysis. In order to facilitate production and purification of Cel9, recombinant Cel9 was functionally expressed in Escherichia coli. Cel9 exhibited maximum activity at pH 6.5 and 65 degrees C on carboxymethyl cellulose in a 10-min reaction period. The hydrolysis products on regenerated amorphous cellulose (RAC) were cellotetraose (a major product), cellotriose, cellobiose and glucose, and 71-80% of the reducing sugars produced by Cel9 were in soluble form, suggesting that Cel9 was a processive endoglucanase. The highest synergy between C. phytofermentans Cel9 and C. phytofermentans cellobiohydrolase Cel48 on Avicel was about 1.8 at a ratio of about 1:5. Cel9 alone was sufficient to solublize filter paper while Cel48 was not; however, it enhanced the solublization process along with Cel9 synergistically. This study provided useful information for understanding of the cellulose hydrolysis mechanism of this cellulolytic bacterium with potential industrial importance.
植物发酵梭菌糖苷水解酶家族 9 纤维素酶(Cel9)具有多模块结构,是纤维素水解的必需酶。为了便于 Cel9 的生产和纯化,在大肠杆菌中功能性表达了重组 Cel9。Cel9 在 10 分钟的反应时间内,在 pH6.5 和 65°C 下,对羧甲基纤维素的活性最高。在再生无定形纤维素(RAC)上的水解产物为纤维四糖(主要产物)、纤维三糖、纤维二糖和葡萄糖,Cel9 产生的还原糖中 71-80%以可溶形式存在,表明 Cel9 是一种具有连续性的内切葡聚糖酶。在 Avicel 上,植物发酵梭菌 Cel9 和 Cel48 之间的协同作用最高约为 1.8,在约 1:5 的比例下。Cel9 单独足以溶解滤纸,而 Cel48 则不能;然而,它与 Cel9 协同作用,增强了溶解过程。本研究为了解具有潜在工业重要性的这种纤维素分解菌的纤维素水解机制提供了有用的信息。