Lee T-H, Kim M-D, Park Y-C, Bae S-M, Ryu Y-W, Seo J-H
Department of Agricultural Biotechnology, Seoul National University, Seoul, Korea.
J Appl Microbiol. 2003;95(4):847-52. doi: 10.1046/j.1365-2672.2003.02055.x.
Recombinant Saccharomyces cerevisiae strains harbouring different levels of xylulokinase (XK) activity and effects of XK activity on utilization of xylulose were studied in batch and fed-batch cultures.
The cloned xylulokinase gene (XKS1) from S. cerevisiae was expressed under the control of the glyceraldehyde 3-phosphate dehydrogenase promoter and terminator. Specific xylulose consumption rate was enhanced by the increased specific XK activity, resulting from the introduction of the XKS1 into S. cerevisiae. In batch and fed-batch cultivations, the recombinant strains resulted in twofold higher ethanol concentration and 5.3- to six-fold improvement in the ethanol production rate compared with the host strain S. cerevisiae.
An effective conversion of xylulose to xylulose 5-phosphate catalysed by XK in S. cerevisiae was considered to be essential for the development of an efficient and accelerated ethanol fermentation process from xylulose.
Overexpression of the XKS1 gene made xylulose fermentation process accelerated to produce ethanol through the pentose phosphate pathway.
在分批培养和补料分批培养中,研究了具有不同木酮糖激酶(XK)活性水平的重组酿酒酵母菌株以及XK活性对木酮糖利用的影响。
从酿酒酵母中克隆的木酮糖激酶基因(XKS1)在甘油醛-3-磷酸脱氢酶启动子和终止子的控制下表达。将XKS1导入酿酒酵母后,由于特定XK活性的增加,木酮糖的特定消耗速率提高。在分批培养和补料分批培养中,与宿主菌株酿酒酵母相比,重组菌株的乙醇浓度提高了两倍,乙醇产率提高了5.3至6倍。
酿酒酵母中由XK催化的木酮糖向5-磷酸木酮糖的有效转化被认为是开发高效、加速的木酮糖乙醇发酵过程的关键。
XKS1基因的过表达使木酮糖发酵过程加速,通过磷酸戊糖途径生产乙醇。