Lou Fei, Li Ning, Zhao Yujiao, Guo Shiting, Wang Zhiwen, Chen Tao
Key Laboratory of Systems Bioengineering, Ministry of Education, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.
Collaborative Innovation Center of Chemical Science and Engineering, Tianjin 300072, China.
Sheng Wu Gong Cheng Xue Bao. 2016 Nov 25;32(11):1539-1548. doi: 10.13345/j.cjb.160101.
Malic acid is a dicarboxylic acid that is widely used in food, pharmaceutical and chemical industries. We studied the effects of overexpression of carboxylation pathway genes and inactivation of malic enzymes on the aerobic production of malic acid. Over expression of phosphoenolpyruvate (PEP) carboxylase (ppc) generated strain E21, which increased malic acid production from 0.57 g/L to 3.83 g/L. Then pyc gene from Coryenbacterium glutamicus and pck gene from Actinobacillus succinogenes were overexpressed in E21 separately. The resulting strains E21 (pTrcpyc) and E21 (pTrc-A-pck) produced 6.04 and 5.01 g/L malate with a yield of 0.79 and 0.65 mol/mol glucose, respectively. Deleting two malic enzymes (encoded by maeA and maeB) also led to an increase of 36% in malic acid production with a production of 5.21 g/L. However, the combination of malic enzymes deletion and pyc overexpression could not further increase the yield of malic acid. After optimization of fermentation conditions, strain E21 (pTrcpyc) produced 12.45 g/L malic acid with a yield of 0.84 mol/mol which is 63.2% of the theoretical yield.
苹果酸是一种二羧酸,广泛应用于食品、制药和化工行业。我们研究了羧化途径基因的过表达和苹果酸酶的失活对苹果酸好氧生产的影响。磷酸烯醇丙酮酸(PEP)羧化酶(ppc)的过表达产生了菌株E21,其苹果酸产量从0.57 g/L增加到3.83 g/L。然后,分别在E21中过表达谷氨酸棒杆菌的pyc基因和产琥珀酸放线杆菌的pck基因。所得菌株E21(pTrcpyc)和E21(pTrc-A-pck)分别产生6.04和5.01 g/L苹果酸,产率分别为0.79和0.65 mol/mol葡萄糖。删除两种苹果酸酶(由maeA和maeB编码)也导致苹果酸产量增加36%,产量为5.21 g/L。然而,苹果酸酶缺失和pyc过表达的组合不能进一步提高苹果酸的产率。经过发酵条件优化,菌株E21(pTrcpyc)产生12.45 g/L苹果酸,产率为0.84 mol/mol,占理论产率的63.2%。