Han Pingping, Wang Xueying, Li Yunjie, Wu Hong, Shi Ting, Shi Jiafu
School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.
Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin 300308, China.
J Agric Food Chem. 2023 Mar 1;71(8):3813-3820. doi: 10.1021/acs.jafc.2c08400. Epub 2023 Feb 14.
d-Tagatose is one of the several healthy sweeteners that can be a substitute for sucrose and fructose in our daily life. Whole cell-catalyzed phosphorylation and dephosphorylation previously reported by our group afford a thermodynamic-driven strategy to achieve tagatose production directly from starch with high product yields. Nonetheless, the poor structural stability of cells and difficulty in biocatalyst recycling restrict its practical application. Herein, an efficient and stable semiartificial cell factory (SACF) was developed by constructing an organosilica network (OSN) artificial shell on the cells bearing five thermophilic enzymes to produce tagatose. The OSN artificial shell, the thickness of which can be regulated by changing the tetraethyl silicate concentration, exhibited tunable permeability and superior mechanical strength. In contrast with cells, SACFs showed a relative activity of 99.5% and an extended half-life from 33.3 to 57.8 h. Over 50% of initial activity was retained after 20 reuses. The SACFs can catalyze seven consecutive reactions with tagatose yields of over 40.7% in field applications.
D-塔格糖是几种健康甜味剂之一,可在我们的日常生活中替代蔗糖和果糖。我们小组之前报道的全细胞催化磷酸化和去磷酸化提供了一种热力学驱动的策略,可直接从淀粉中高效生产塔格糖。然而,细胞结构稳定性差以及生物催化剂回收困难限制了其实际应用。在此,通过在携带五种嗜热酶的细胞上构建有机硅网络(OSN)人工外壳来生产塔格糖,开发了一种高效且稳定的半人工细胞工厂(SACF)。OSN人工外壳的厚度可通过改变硅酸四乙酯浓度来调节,具有可调的渗透性和优异的机械强度。与细胞相比,SACF的相对活性为99.5%,半衰期从33.3小时延长至57.8小时。经过20次重复使用后,仍保留超过50%的初始活性。SACF可催化七个连续反应,在实际应用中塔格糖产率超过40.7%。