Liang Jing-juan, Zhang Mei-ling, Ding Meng, Mai Zhi-mao, Wu San-xing, Du Yue, Feng Jia-xun
College of Life Science and Technology, Guangxi University, 100 Daxue Road, Nanning, Guangxi 530004, P, R, China.
BMC Biotechnol. 2014 May 21;14:45. doi: 10.1186/1472-6750-14-45.
Kluyveromyces marxianus has recently become a species of interest for ethanol production since it can produce ethanol at high temperature and on a wide variety of substrates. However, the reason why this yeast can produce ethanol at high temperature is largely unknown.
The ethanol fermentation capability of K. marxianus GX-UN120 at 40°С was found to be the same as that of Saccharomyces cerevisiae at 34°С. Zymogram analysis showed that alcohol dehydrogenase 1 (KmAdh1) was largely induced during ethanol production, KmAdh4 was constitutively expressed at a lower level and KmAdh2 and KmAdh3 were almost undetectable. The genes encoding the four alcohol dehydrogenases (ADHs) were cloned from strain GX-UN120. Each KmADH was expressed in Escherichia coli and each recombinant protein was digested with enterokinase to remove the fusion protein. The optimum pH of the purified recombinant KmAdh1 was 8.0 and that of KmAdh2, KmAdh3 and KmAdh4 was 7.0. The optimum temperatures of KmAdh1, KmAdh2, KmAdh3 and KmAdh4 were 50, 45, 55 and 45°C, respectively. The K(m) values of the recombinant KmAdh1 and KmAdh2 were 4.0 and 1.2 mM for acetaldehyde and 39.7 and 49.5 mM for ethanol, respectively. The V(max) values of the recombinant KmAdh1 and KmAdh2 were 114.9 and 21.6 μmol min⁻¹ mg⁻¹ for acetaldehyde and 57.5 and 1.8 μmol min⁻¹ mg⁻¹ for ethanol, respectively. KmAdh3 and KmAdh4 catalyze the oxidation reaction of ethanol to acetaldehyde but not the reduction reaction of acetaldehyde to ethanol, and the K(m) values of the recombinant KmAdh3 and KmAdh4 were 26.0 and 17.0 mM for ethanol, respectively. The V(max) values of the recombinant KmAdh3 and KmAdh4 were 12.8 and 56.2 μmol min⁻¹ mg⁻¹ for ethanol, respectively.
These data in this study collectively indicate that KmAdh1 is the primary ADH responsible for the production of ethanol from the reduction of acetaldehyde in K. marxianus. The relatively high optimum temperature of KmAdh1 may partially explain the ability of K. marxianus to produce ethanol at high temperature. Understanding the biochemical characteristics of KmAdhs will enhance our fundamental knowledge of the metabolism of ethanol fermentation in K. marxianus.
马克斯克鲁维酵母最近成为乙醇生产领域备受关注的一种酵母,因为它能够在高温下利用多种底物生产乙醇。然而,这种酵母能够在高温下生产乙醇的原因在很大程度上尚不清楚。
发现马克斯克鲁维酵母GX - UN120在40℃时的乙醇发酵能力与酿酒酵母在34℃时的乙醇发酵能力相同。酶谱分析表明,乙醇脱氢酶1(KmAdh1)在乙醇生产过程中大量被诱导,KmAdh4以较低水平组成型表达,而KmAdh2和KmAdh3几乎检测不到。从菌株GX - UN120中克隆了编码这四种乙醇脱氢酶(ADHs)的基因。每个KmADH在大肠杆菌中表达,并且每种重组蛋白用肠激酶消化以去除融合蛋白。纯化的重组KmAdh1的最适pH为8.0,KmAdh2、KmAdh3和KmAdh4的最适pH为7.0。KmAdh1、KmAdh2、KmAdh3和KmAdh4的最适温度分别为50、45、55和45℃。重组KmAdh1和KmAdh2对乙醛的K(m)值分别为4.0和1.2 mM,对乙醇的K(m)值分别为39.7和49.5 mM。重组KmAdh1和KmAdh2对乙醛的V(max)值分别为114.9和21.6 μmol min⁻¹ mg⁻¹,对乙醇的V(max)值分别为57.5和1.8 μmol min⁻¹ mg⁻¹。KmAdh3和KmAdh4催化乙醇氧化为乙醛的反应,但不催化乙醛还原为乙醇的反应,重组KmAdh3和KmAdh4对乙醇的K(m)值分别为26.0和17.0 mM。重组KmAdh3和KmAdh4对乙醇的V(max)值分别为12.8和56.2 μmol min⁻¹ mg⁻¹。
本研究中的这些数据共同表明,KmAdh1是马克斯克鲁维酵母中负责将乙醛还原为乙醇的主要ADH。KmAdh1相对较高的最适温度可能部分解释了马克斯克鲁维酵母在高温下生产乙醇的能力。了解KmAdhs的生化特性将增强我们对马克斯克鲁维酵母乙醇发酵代谢的基础知识。