Department of Food Science and Human Nutrition, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA; Carl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Carl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
J Biotechnol. 2021 Nov 10;340:30-38. doi: 10.1016/j.jbiotec.2021.08.007. Epub 2021 Aug 25.
2'-Fucosyllactose (2'-FL), a major oligosaccharide of human breast milk, and is currently supplemented into infant formula. For the overproduction of 2'-FL via fucosylation of lactose, conventional approaches have focused on the episomal overexpression of de novo or salvage GDP-L-fucose biosynthetic pathway and α-1,2-fucosyltransferase (FucT2) through T7 RNA polymerase expression system in engineered E. coli. However, these approaches have drawbacks of metabolic burden, plasmid instability, and inclusion body formation. In this study, a deletion mutant of waaF coding for ADP-heptose:LPS heptosyltransferase II was employed for 2'-FL production. As the waaF deletion induces accumulation of colanic acid, additional deletion of wcaJ coding for UDP-glucose-1-phosphate transferase in the waaF deletion mutant resulted in enhanced accumulation of GDP-L-fucose. Besides, 2'-FL yields and titers were drastically improved when T7 promoter was replaced with Trc promoter for α-1,2 fucosyltransferase expressions in the waaF and wcaJ deleted strain. As a result, when FucT2 was expressed under Trc promoter in the E. coli JM109(DE3) ΔwaaFΔwcaJ, 14.7 g/L of 2'-FL was produced with a productivity of 0.31 g/L/h in a fed-batch fermentation. We envision that the deletion-based metabolic design and decreased promoter strength for fucosyltransferase expression can resolve the drawbacks of T7 RNA polymerase-based expression design for 2'-FL production in E. coli.
2'-岩藻糖基乳糖(2'-FL)是母乳中的主要低聚糖,目前已被添加到婴儿配方奶粉中。为了通过乳糖的岩藻糖化过量生产 2'-FL,传统方法主要集中在通过 T7 RNA 聚合酶表达系统在工程大肠杆菌中过表达从头或补救 GDP-L-岩藻糖生物合成途径和α-1,2-岩藻糖基转移酶(FucT2)。然而,这些方法存在代谢负担、质粒不稳定和包涵体形成等缺点。在本研究中,使用编码 ADP-庚糖:LPS 庚糖基转移酶 II 的 waaF 缺失突变体用于 2'-FL 生产。由于 waaF 缺失会导致 colanic 酸积累,因此在 waaF 缺失突变体中额外缺失编码 UDP-葡萄糖-1-磷酸转移酶的 wcaJ 会导致 GDP-L-岩藻糖的积累增加。此外,当 T7 启动子被 Trc 启动子取代时,α-1,2 岩藻糖基转移酶在 waaF 和 wcaJ 缺失菌株中的表达会极大地提高 2'-FL 的产量和滴度。结果,当 FucT2 在大肠杆菌 JM109(DE3)ΔwaaFΔwcaJ 中在 Trc 启动子下表达时,在分批补料发酵中产生了 14.7 g/L 的 2'-FL,生产率为 0.31 g/L/h。我们设想,基于缺失的代谢设计和降低的启动子强度用于岩藻糖基转移酶表达可以解决 T7 RNA 聚合酶基于表达设计用于大肠杆菌中 2'-FL 生产的缺点。