Department of Microbiology, University of Stellenbosch, De Beer Street, Stellenbosch 7600, South Africa.
Appl Microbiol Biotechnol. 2010 Aug;87(5):1813-20. doi: 10.1007/s00253-010-2618-z. Epub 2010 May 7.
The processive endoglucanase Cel9A of the moderately thermophilic actinomycete Thermobifida fusca was functionally produced in Saccharomyces cerevisiae. Recombinant Cel9A displayed activity on both soluble (carboxymethylcellulose) and insoluble (Avicel) cellulose substrates confirming its processive endoglucanase activity. High-performance anionic exchange chromatography analyses of soluble sugars released from Avicel revealed a cellobiose/glucose ratio of 2.5 +/- 0.1. Growth by the recombinant strain on amorphous cellulose was possible due to the sufficient amount of glucose cleaved from the cellulose chain. This is the first confirmed report of S. cerevisiae growing on a cellulosic substrate as sole carbohydrate source while only expressing one recombinant gene. To improve the cellulolytic capability of S. cerevisiae and to investigate the level of synergy among cellulases produced by a recombinant host, the cel9A gene was co-expressed with four cellulase-coding genes of Trichoderma reesei: two endoglucanases cel5A (egII) and cel7B (egI), and two cellobiohydrolases cel6A (cbhII) and cel7A (cbhI). Synergy, especially between the Cel9A and the two cellobiohydrolases, resulted in a higher cellulolytic capability of the recombinant host.
中度嗜热放线菌Thermobifida fusca 的内切葡聚糖酶 Cel9A 在酿酒酵母中得到了功能性表达。重组 Cel9A 对可溶性(羧甲基纤维素)和不溶性(Avicel)纤维素底物均具有活性,证实了其内切葡聚糖酶活性。从 Avicel 释放的可溶性糖的高效阴离子交换色谱分析显示,纤维二糖/葡萄糖比为 2.5 +/- 0.1。由于从纤维素链上切割下来的葡萄糖数量充足,重组菌株可以在无定形纤维素上生长。这是首次确认酿酒酵母以纤维素作为唯一碳源生长,而仅表达一个重组基因的报告。为了提高酿酒酵母的纤维素分解能力,并研究重组宿主产生的纤维素酶之间的协同作用,将 cel9A 基因与里氏木霉的四个纤维素酶编码基因共表达:两个内切葡聚糖酶 cel5A(egII)和 cel7B(egI),以及两个纤维二糖水解酶 cel6A(cbhII)和 cel7A(cbhI)。协同作用,特别是 Cel9A 与两种纤维二糖水解酶之间的协同作用,导致重组宿主具有更高的纤维素分解能力。