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精氨酸脱亚氨酶途径提供 ATP 并促进产乙酸发酵的产乙酸菌 Clostridium autoethanogenum 的生长。

Arginine deiminase pathway provides ATP and boosts growth of the gas-fermenting acetogen Clostridium autoethanogenum.

机构信息

Australian Institute for Bioengineering and Nanotechnology (AIBN), The University of Queensland, Brisbane, Australia.

LanzaTech Inc., Skokie, USA.

出版信息

Metab Eng. 2017 May;41:202-211. doi: 10.1016/j.ymben.2017.04.007. Epub 2017 Apr 23.

Abstract

Acetogens are attractive organisms for the production of chemicals and fuels from inexpensive and non-food feedstocks such as syngas (CO, CO and H). Expanding their product spectrum beyond native compounds is dictated by energetics, particularly ATP availability. Acetogens have evolved sophisticated strategies to conserve energy from reduction potential differences between major redox couples, however, this coupling is sensitive to small changes in thermodynamic equilibria. To accelerate the development of strains for energy-intensive products from gases, we used a genome-scale metabolic model (GEM) to explore alternative ATP-generating pathways in the gas-fermenting acetogen Clostridium autoethanogenum. Shadow price analysis revealed a preference of C. autoethanogenum for nine amino acids. This prediction was experimentally confirmed under heterotrophic conditions. Subsequent in silico simulations identified arginine (ARG) as a key enhancer for growth. Predictions were experimentally validated, and faster growth was measured in media containing ARG (t4h) compared to growth on yeast extract (t9h). The growth-boosting effect of ARG was confirmed during autotrophic growth. Metabolic modelling and experiments showed that acetate production is nearly abolished and fast growth is realised by a three-fold increase in ATP production through the arginine deiminase (ADI) pathway. The involvement of the ADI pathway was confirmed by metabolomics and RNA-sequencing which revealed a ~500-fold up-regulation of the ADI pathway with an unexpected down-regulation of the Wood-Ljungdahl pathway. The data presented here offer a potential route for supplying cells with ATP, while demonstrating the usefulness of metabolic modelling for the discovery of native pathways for stimulating growth or enhancing energy availability.

摘要

乙酰生成菌是一种有吸引力的生物,可以利用廉价的非食用原料(如合成气(CO、CO 和 H))生产化学品和燃料。从能量的角度来看,扩大其产品范围超出了天然化合物的范围,特别是可用的 ATP。乙酰生成菌已经进化出了复杂的策略来从主要氧化还原对之间的还原电势差中节约能量,然而,这种耦合对热力学平衡的微小变化很敏感。为了加速从气体中开发能源密集型产品的菌株的发展,我们使用基因组规模的代谢模型(GEM)来探索产气体的乙酰生成菌 Clostridium autoethanogenum 中的替代 ATP 生成途径。影子价格分析显示,C. autoethanogenum 优先选择九种氨基酸。在异养条件下,这一预测得到了实验验证。随后的计算机模拟确定精氨酸(ARG)是生长的关键增强剂。预测得到了实验验证,并且在含有 ARG 的培养基中(t4h)的生长速度比在酵母提取物中(t9h)的生长速度更快。在自养生长过程中,ARG 的促生长作用得到了确认。代谢建模和实验表明,通过精氨酸脱氨酶(ADI)途径将 ATP 产量增加三倍,几乎可以消除乙酸盐的产生并实现快速生长。代谢组学和 RNA 测序证实了 ADI 途径的参与,该途径导致 ADI 途径的表达上调了约 500 倍,而伍德-吕根达尔途径的表达下调出乎意料。这里呈现的数据提供了一种为细胞提供 ATP 的潜在途径,同时展示了代谢建模在发现刺激生长或增强能量可用性的天然途径方面的有用性。

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