Chen Sheng, Xiong Yanjun, Su Lingqia, Wang Lei, Wu Jing
State Key Laboratory of Food Science and Technology, Jiangnan University, 1800 Lihu Avenue, Wuxi, 214122, China; School of Biotechnology and Key Laboratory of Industrial Biotechnology, Ministry of Education, Jiangnan University, 1800 Lihu Avenue, Wuxi, 214122, China.
State Key Laboratory of Food Science and Technology, Jiangnan University, 1800 Lihu Avenue, Wuxi, 214122, China; School of Biotechnology and Key Laboratory of Industrial Biotechnology, Ministry of Education, Jiangnan University, 1800 Lihu Avenue, Wuxi, 214122, China.
J Biotechnol. 2017 Apr 10;247:18-24. doi: 10.1016/j.jbiotec.2017.02.011. Epub 2017 Feb 17.
The markedly stable l-ascorbic acid (L-AA) derivative 2-O-d-glucopyranosyl-l-ascorbic acid (AA-2G) has been widely used in the fields of food, medicine, cosmetics, and husbandry. Cyclodextrin glycosyltransferase (CGTase) is considered suitable for the large-scale production of AA-2G. In this work, Paenibacillus macerans CGTase was used to produce AA-2G and the production was 13.5g/l. An amino-acid sequence alignment of α-, β-, and α⁄β-CGTase indicated that the Phe at position 228 of P. macerans CGTase was different from the amino acids at this position in other CGTases (Met, Val, or Ile). In addition, the CGTases from Anaerobranca gottschalkii and Bacillus circulans 251, which have Val and Met at position 228, were shown to produce 28.9 and 35.7g/l AA-2G, respectively, which verified the importance of this position for AA-2G synthesis. Subsequently, P. macerans CGTase mutants F228M and F228V were constructed and shown to produce 24.8g/l and 24.0g/l AA-2G, respectively, which are 84% and 78% higher than that of wild-type P. macerans CGTase, respectively. Kinetic analysis of AA-2G synthesis showed that affinities of the two mutants for L-AA and the catalytic efficiencies increased. Meanwhile, the mutants had lower cyclization activity but higher disproportionation activities, which is beneficial for AA-2G synthesis. All these results indicated that amino acid at position 228 of P. macerans CGTase is crucial to AA-2G synthesis.
显著稳定的l-抗坏血酸(L-AA)衍生物2-O-d-吡喃葡萄糖基-l-抗坏血酸(AA-2G)已广泛应用于食品、医药、化妆品和畜牧业领域。环糊精糖基转移酶(CGTase)被认为适合大规模生产AA-2G。在本研究中,使用浸麻芽孢杆菌CGTase生产AA-2G,产量为13.5g/l。α-、β-和α/β-CGTase的氨基酸序列比对表明,浸麻芽孢杆菌CGTase第228位的苯丙氨酸与其他CGTase该位置的氨基酸(甲硫氨酸、缬氨酸或异亮氨酸)不同。此外,来自戈氏厌氧杆菌和环状芽孢杆菌251的CGTase在第228位分别具有缬氨酸和甲硫氨酸,它们分别产生28.9g/l和35.7g/l的AA-2G,这证实了该位置对AA-2G合成的重要性。随后,构建了浸麻芽孢杆菌CGTase突变体F228M和F228V,它们分别产生24.8g/l和24.0g/l的AA-2G,分别比野生型浸麻芽孢杆菌CGTase高84%和78%。AA-2G合成的动力学分析表明,这两个突变体对L-AA的亲和力和催化效率均有所提高。同时,突变体的环化活性较低,但歧化活性较高,这有利于AA-2G的合成。所有这些结果表明,浸麻芽孢杆菌CGTase第228位的氨基酸对AA-2G的合成至关重要。