Laboratory of Systems and Synthetic Biology, Wageningen University & Research, Stippeneng 4, Wageningen, 6708WE, The Netherlands.
Laboratory of Microbiology, Wageningen University & Research, Stippeneng 4, Wageningen, 6708WE, The Netherlands.
Microb Cell Fact. 2022 Jun 16;21(1):116. doi: 10.1186/s12934-022-01841-1.
Microbial production of propionate from diluted streams of ethanol (e.g., deriving from syngas fermentation) is a sustainable alternative to the petrochemical production route. Yet, few ethanol-fermenting propionigenic bacteria are known, and understanding of their metabolism is limited. Anaerotignum neopropionicum is a propionate-producing bacterium that uses the acrylate pathway to ferment ethanol and CO to propionate and acetate. In this work, we used computational and experimental methods to study the metabolism of A. neopropionicum and, in particular, the pathway for conversion of ethanol into propionate.
Our work describes iANEO_SB607, the first genome-scale metabolic model (GEM) of A. neopropionicum. The model was built combining the use of automatic tools with an extensive manual curation process, and it was validated with experimental data from this and published studies. The model predicted growth of A. neopropionicum on ethanol, lactate, sugars and amino acids, matching observed phenotypes. In addition, the model was used to implement a dynamic flux balance analysis (dFBA) approach that accurately predicted the fermentation profile of A. neopropionicum during batch growth on ethanol. A systematic analysis of the metabolism of A. neopropionicum combined with model simulations shed light into the mechanism of ethanol fermentation via the acrylate pathway, and revealed the presence of the electron-transferring complexes NADH-dependent reduced ferredoxin:NADP oxidoreductase (Nfn) and acryloyl-CoA reductase-EtfAB, identified for the first time in this bacterium.
The realisation of the GEM iANEO_SB607 is a stepping stone towards the understanding of the metabolism of the propionate-producer A. neopropionicum. With it, we have gained insight into the functioning of the acrylate pathway and energetic aspects of the cell, with focus on the fermentation of ethanol. Overall, this study provides a basis to further exploit the potential of propionigenic bacteria as microbial cell factories.
从乙醇稀溶液(例如,来自合成气发酵)中微生物生产丙酸是一种替代石油化工生产路线的可持续方法。然而,已知的乙醇发酵产丙酸菌很少,对其代谢的了解也有限。Anaerotignum neopropionicum 是一种产丙酸菌,它使用丙烯酸盐途径将乙醇和 CO 发酵为丙酸和乙酸盐。在这项工作中,我们使用计算和实验方法研究了 A. neopropionicum 的代谢,特别是将乙醇转化为丙酸的途径。
我们的工作描述了 iANEO_SB607,这是 A. neopropionicum 的第一个基因组规模代谢模型(GEM)。该模型是通过自动工具的使用与广泛的手动编辑过程相结合构建的,并通过来自这项研究和已发表研究的实验数据进行了验证。该模型预测了 A. neopropionicum 在乙醇、乳酸盐、糖和氨基酸上的生长,与观察到的表型相匹配。此外,该模型还用于实施动态通量平衡分析(dFBA)方法,该方法准确预测了 A. neopropionicum 在乙醇分批培养过程中的发酵曲线。对 A. neopropionicum 代谢的系统分析结合模型模拟揭示了丙烯酸盐途径乙醇发酵的机制,并首次在该细菌中发现了电子转移复合物 NADH 依赖性还原型铁氧还蛋白:NADP 氧化还原酶(Nfn)和丙烯酰辅酶 A 还原酶-EtfAB。
实现 GEM iANEO_SB607 是理解丙酸产生菌 A. neopropionicum 代谢的重要一步。通过它,我们深入了解了丙烯酸盐途径的功能和细胞的能量方面,重点是乙醇发酵。总的来说,这项研究为进一步利用丙酸产生菌作为微生物细胞工厂的潜力提供了基础。