Laboratory of Molecular Cell Biology, Institute of Botany and Microbiology, B-3001 KU Leuven, Belgium.
Center for Microbiology, VIB, Kasteelpark Arenberg 31, B-3001 Leuven-Heverlee, Flanders, Belgium.
FEMS Yeast Res. 2017 Jun 1;17(4). doi: 10.1093/femsyr/fox036.
The main focus in development of yeast cell factories has generally been on establishing optimal activity of heterologous pathways and further metabolic engineering of the host strain to maximize product yield and titer. Adequate stress tolerance of the host strain has turned out to be another major challenge for obtaining economically viable performance in industrial production. Although general robustness is a universal requirement for industrial microorganisms, production of novel compounds using artificial metabolic pathways presents additional challenges. Many of the bio-based compounds desirable for production by cell factories are highly toxic to the host cells in the titers required for economic viability. Artificial metabolic pathways also turn out to be much more sensitive to stress factors than endogenous pathways, likely because regulation of the latter has been optimized in evolution in myriads of environmental conditions. We discuss different environmental and metabolic stress factors with high relevance for industrial utilization of yeast cell factories and the experimental approaches used to engineer higher stress tolerance. Improving stress tolerance in a predictable manner in yeast cell factories should facilitate their widespread utilization in the bio-based economy and extend the range of products successfully produced in large scale in a sustainable and economically profitable way.
酵母细胞工厂的开发主要集中在建立异源途径的最佳活性上,并进一步对宿主菌株进行代谢工程改造,以最大限度地提高产品产量和浓度。宿主菌株具有足够的应激耐受性已成为在工业生产中获得经济可行性能的另一个主要挑战。尽管普遍的稳健性是工业微生物的普遍要求,但使用人工代谢途径生产新型化合物带来了额外的挑战。许多生物基化合物在细胞工厂生产中是需要的,但在经济可行的浓度下对宿主细胞具有高度毒性。人工代谢途径也比内源性途径对应激因素更为敏感,这可能是因为后者的调节在进化过程中已经在无数的环境条件下得到了优化。我们讨论了与酵母细胞工厂的工业利用高度相关的不同环境和代谢应激因素,以及用于工程化提高应激耐受性的实验方法。以可预测的方式提高酵母细胞工厂的应激耐受性,应该有助于它们在生物基经济中的广泛利用,并以可持续和经济盈利的方式扩大大规模成功生产的产品范围。