Heterologous expression of cyclodextrin glycosyltransferase from Bacillus stearothermophilus in Bacillus subtilis and its application in glycosyl rutin production

被引:4
作者
Song, Wen [1 ]
Zhang, Mengjie [1 ]
Li, Xiaojun [2 ]
Zhang, Yinjun [1 ]
Zheng, Jianyong [1 ]
机构
[1] Zhejiang Univ Technol, Coll Biotechnol & Bioengn, Key Lab Bioorgan Synth Zhejiang Prov, Hangzhou 310014, Peoples R China
[2] Xinyu Univ, Dept Fundamental Med, Xinyu 338004, Peoples R China
基金
中国国家自然科学基金;
关键词
Cyclodextrin glycosyltransferase; Bacillus subtilis; Recombinant expression; Glycosyl-rutin; Resin adsorption; GLUCANOTRANSFERASE; EFFICIENCY;
D O I
10.1007/s13205-023-03510-5
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
In this paper, the cgt gene encoding cyclodextrin glycosyltransferase (CGTase) from Bacillus stearothermophilus was cloned into pWB980 plasmid for extracellular expression in Bacillus subtilis SCK6. Through adding a six-histidine affinity tag fused to the C-terminus, the recombinant CGTase could be purified by nickel ion affinity chromatography, and its molecular weight was approximately 76 kDa on SDS-PAGE. Then, the enzymatic properties were determined, and results were as follows: the optimum temperature and pH were identified as 40 degrees C and pH 5.0, respectively. CGTase had good tolerance to metal ions of Mn2+, Ca2+, and Mg2+. The enzyme activity was activated by Na+, Al3+, Fe3+, and Ni+, and it was remarkably inhibited by Cu2+ and Zn2+. To improve the aqueous solubility of rutin, CGTase was used to catalyze the transglycosylation reaction, and the conversion rate could reach as high as 80.13% under optimal conditions. Furthermore, the reaction mixture was treated with glucoamylase and microporous adsorbent resin. The yield of glycosyl-rutin was 56.1%, and its purity was 74.3%, which further improved the value of the product.
引用
收藏
页数:10
相关论文
共 31 条
  • [11] Effects of substrates and reaction conditions on production of cyclodextrins using cyclodextrin glucanotransferase from newly isolated Bacillus agaradhaerens KSU-A11
    Ibrahim, Abdelnasser S. S.
    El-Tayeb, Mohamed A.
    Elbadawi, Yahya B.
    Al-Salamah, Ali A.
    [J]. ELECTRONIC JOURNAL OF BIOTECHNOLOGY, 2011, 14 (05):
  • [12] Engineering of cyclodextrin glucanotransferases and the impact for biotechnological applications
    Leemhuis, Hans
    Kelly, Ronan M.
    Dijkhuizen, Lubbert
    [J]. APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2010, 85 (04) : 823 - 835
  • [13] Enzymatic acylation of rutin with benzoic acid ester and lipophilic, antiradical, and antiproliferative properties of the acylated derivatives
    Li, Hai-Mei
    Xu, Ting-Ting
    Peng, Qing-Xia
    Chen, Yong-Sheng
    Zhou, Hua
    Lu, Yu-Yun
    Yan, Ri-An
    [J]. JOURNAL OF FOOD SCIENCE, 2021, 86 (05) : 1714 - 1725
  • [14] Comprehensive study on transglycosylation of CGTase from various sources
    Lim, Chin Hui
    Rasti, Babak
    Sulistyo, Joko
    Hamid, Mansoor Abdul
    [J]. HELIYON, 2021, 7 (02)
  • [15] Molecular cloning, and optimized production and characterization of recombinant cyclodextrin glucanotransferase from Bacillus sp. T1
    Liu, Zhenyang
    Wu, Guogan
    Wu, Huawei
    [J]. 3 BIOTECH, 2022, 12 (03)
  • [16] Kinetic solubility and dissolution velocity of rutin nanocrystals
    Mauludin, Rachmat
    Mueller, Rainer H.
    Keck, Cornelia M.
    [J]. EUROPEAN JOURNAL OF PHARMACEUTICAL SCIENCES, 2009, 36 (4-5) : 502 - 510
  • [17] Mitsuzumi H., 2011, J Integr Study Diet Habits, V21, P263, DOI [10.2740/jisdh.21.263, DOI 10.2740/JISDH.21.263]
  • [18] Synthesis of a Novel α-Glucosyl Ginsenoside F1 by Cyclodextrin Glucanotransferase and Its In Vitro Cosmetic Applications
    Moon, Seong Soo
    Lee, Hye Jin
    Mathiyalagan, Ramya
    Kim, Yu Jin
    Yang, Dong Uk
    Lee, Dae Young
    Min, Jin Woo
    Jimenez, Zuly
    Yang, Deok Chun
    [J]. BIOMOLECULES, 2018, 8 (04):
  • [19] Dietary G-rutin suppresses glycation in tissue proteins of streptozotocin-induced diabetic rats
    Nagasawa, T
    Tabata, N
    Ito, Y
    Aiba, Y
    Nishizawa, N
    Kitts, DD
    [J]. MOLECULAR AND CELLULAR BIOCHEMISTRY, 2003, 252 (1-2) : 141 - 147
  • [20] Mathematical modelling and kinetic study for CD production catalysed by Toruzyme® and CGTase from Bacillus firmus strain 37
    Pinheiro, Keren Hapuque
    do Nascimento, Leonardo Brunelli
    Fenelon, Vanderson Carvalho
    Barao, Carlos Eduardo
    Matioli, Graciette
    de Moraes, Flavio Faria
    [J]. BIOPROCESS AND BIOSYSTEMS ENGINEERING, 2017, 40 (09) : 1305 - 1316