Watanabe Seiya, Pack Seung Pil, Saleh Ahmed Abu, Annaluru Narayana, Kodaki Tsutomu, Makino Keisuke
Faculty of Engineering, Kyoto University, Kyoto, Japan.
Biosci Biotechnol Biochem. 2007 May;71(5):1365-9. doi: 10.1271/bbb.70104. Epub 2007 May 7.
We focused on the effects of a mutation of xylose reductase from Pichia stipitis (PsXR) on xylose-to-ethanol fermentation using recombinant Saccharomyces cerevisiae transformed with PsXR and PsXDH (xylitol dehydrogenase from P. stipitis) genes. Based on inherent NADH-preferring XR and several site-directed mutagenetic studies using other aldo-keto reductase enzymes, we designed several single PsXR mutants. K270R showing decreased NADPH-preferring activity without a change in NADH-preferring activity was found to be a potent mutant. Strain Y-K270R transformed with K270R PsXR and wild-type PsXDH showed a 31% decrease in unfavorable xylitol excretion with 5.1% increased ethanol production as compared to the control in the fermentation of 15 g l(-1) xylose and 5 g l(-1) glucose.
我们利用重组酿酒酵母,通过毕赤酵母木糖还原酶(PsXR)和毕赤酵母木糖醇脱氢酶(PsXDH)基因转化,研究了毕赤酵母木糖还原酶(PsXR)突变对木糖到乙醇发酵的影响。基于固有的NADH偏好型XR以及使用其他醛酮还原酶的几个定点诱变研究,我们设计了几个单一的PsXR突变体。发现K270R突变体的NADPH偏好活性降低,而NADH偏好活性不变,是一种有效的突变体。与在15 g l(-1)木糖和5 g l(-1)葡萄糖发酵中的对照相比,用K270R PsXR和野生型PsXDH转化的菌株Y-K270R在不利的木糖醇排泄方面减少了31%,乙醇产量增加了5.1%。