College of Life Science and Technology, Beijing University of Chemical Technology, Beijing, 100029 People's Republic of China.
Indian J Microbiol. 2012 Sep;52(3):478-83. doi: 10.1007/s12088-012-0280-0. Epub 2012 Jun 20.
3-Hydroxypropionic acid (3-HP) is a commercially valuable platform compound. Klebsiella pneumoniae has been concerned as an appropriate host for 3-HP production because of its robust capacity to metabolize glycerol. Glycerol conversion to 3-HP in K. pneumoniae comprises two successive reactions: glycerol dehydratase catalyzes glycerol to 3-hydroxypropionaldehyde (3-HPA); aldehyde dehydrogenase catalyzes 3-HPA to 3-HP. Previous studies focusing on inducible expression of aldehyde dehydrogenase have shown defects of high cost of inducer and low catalytic activity due to inclusion body. Here we show a different strategy that a native promoter in the host K. pneumoniae was used to drive the heterologous expression of aldehyde dehydrogenase gene ald4 from Saccharomyces cerevisiae. The 3-HP yield of the recombinant reached a peak of 4.23 g/L at log phase, but it decreased during later period of fermentation. Except the validation of high activity of ald4, particularly, the 3-HP formation was uncovered to be closely coupled with cell division, and the lacking of NAD and ATP at latter fermentation phase became the bottleneck for cell growth and 3-HP accumulation. Furthermore, 3-HP is postulated to be converted to 3-HPA via feedback inhibition or other metabolite via unknown mechanism. Since glycerol dissimilation is a common mechanism in a variety of bacteria, the expression strategy using native promoter and implications may provide significant insight into the metabolic engineering for 3-HP production.
3-羟基丙酸(3-HP)是一种具有商业价值的平台化合物。由于其强大的甘油代谢能力,肺炎克雷伯氏菌一直被认为是生产 3-HP 的合适宿主。肺炎克雷伯氏菌将甘油转化为 3-HP 包括两个连续的反应:甘油脱水酶催化甘油生成 3-羟基丙醛(3-HPA);醛脱氢酶催化 3-HPA 生成 3-HP。以前的研究集中在诱导表达醛脱氢酶上,由于包涵体的存在,存在诱导剂成本高和催化活性低的缺陷。在这里,我们展示了一种不同的策略,即在宿主肺炎克雷伯氏菌中使用天然启动子来驱动来自酿酒酵母的醛脱氢酶基因 ald4 的异源表达。重组菌在对数生长期时 3-HP 的产量达到了 4.23 g/L 的峰值,但在发酵后期下降。除了验证 ald4 的高活性外,特别揭示了 3-HP 的形成与细胞分裂密切相关,并且在发酵后期缺乏 NAD 和 ATP 成为细胞生长和 3-HP 积累的瓶颈。此外,3-HP 据推测通过反馈抑制或其他未知机制转化为 3-HPA。由于甘油异化是多种细菌的共同机制,使用天然启动子的表达策略和意义可能为 3-HP 生产的代谢工程提供重要的见解。