Departamento de Procesos y Tecnología, Universidad Autónoma Metropolitana-Cuajimalpa, México, D.F.
Biotechnol J. 2011 Aug;6(8):993-1002. doi: 10.1002/biot.201000405. Epub 2011 Jul 11.
High cell-density cultivations are the preferred system for biomolecules production by Escherichia coli. It has been previously demonstrated that a strain of E. coli with a modified substrate transport system is able to attain high cell densities in batch mode, due to the very low overflow metabolism displayed. The use of elevated amounts of glucose from the beginning of the cultivation, eliminates the existence of substrate gradients due to deficient mixing at large-scale. However, the large amounts of oxygen demanded resulted in microaerobic conditions after some hours of cultivation, even at small-scale. In this work, the effect of expressing the Vitreoscilla hemoglobin (VHb) in the engineered strain during batch cultures using high-glucose concentrations was tested. Together, the expression of VHb and the modified substrate transport system resulted in a 33% increase of biomass production compared to the parental strain (W3110) lacking the VHb in batch cultivations using 25 g/L of glucose. When 50 g/L of glucose were used, expression of VHb in the modified strain led to 11% higher biomass production compared to W3110. The VHb also increased the growth rates of the strains by about 30% in the aerobic phase and more than 200% in the microaerobic phase of batch cultivation.
高密度培养是大肠杆菌生产生物分子的首选系统。先前已经证明,由于表现出极低的溢出代谢,经过修饰的底物转运系统的大肠杆菌菌株能够在分批培养模式下达到高细胞密度。从培养开始就使用大量的葡萄糖,可以消除由于大规模混合不足而导致的底物梯度的存在。然而,大量的氧气需求导致培养数小时后即使在小规模下也会出现微氧条件。在这项工作中,测试了在使用高浓度葡萄糖的分批培养中表达工程菌株中的血晶蛋白(VHb)的效果。VHb 的表达和修饰的底物转运系统的共同作用使得在使用 25 g/L 葡萄糖的分批培养中与缺乏 VHb 的亲本菌株(W3110)相比,生物量的生产增加了 33%。当使用 50 g/L 葡萄糖时,与 W3110 相比,修饰菌株中 VHb 的表达导致生物量增加了 11%。VHb 还使菌株在好氧阶段的生长速率提高了约 30%,在微氧阶段的生长速率提高了 200%以上。