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亚位点+1处突变提高软化类芽胞杆菌环糊精糖基转移酶底物麦芽糊精特异性 被引量:8

Improving maltodextrin specificity by site-saturation engineering of subsite +1 in cyclodextrin glycosyltransferase from Paenibacillus macerans
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摘要 通过改造来源于软化类芽胞杆菌Paenibacillus macerans的环糊精糖基转移酶(Cyclodextrin glycosyltransferase,CGT酶)的+1亚位点提高其对麦芽糊精的底物特异性,并进一步提高以麦芽糊精为糖基供体催化合成2-O-D-吡喃葡糖基-L-抗坏血酸(AA-2G)的效率。首先对+1亚位点附近的3个氨基酸残基Leu194、Ala230和His233分别进行定点饱和突变,得到3个优势突变体L194N(亮氨酸→天冬酰胺),A230D(丙氨酸→天冬氨酸),H233E(组氨酸→谷氨酸),然后以这3个优势突变体为模板进一步进行两点和三点复合突变,获得7个复合突变体。研究结果表明,突变体L194N/A230D/H233E以麦芽糊精为底物合成AA-2G的产量最高,达到1.95 g/L,比野生型CGT酶提高了62.5%。对获得的突变体进行动力学分析,发现高浓度的底物L-AA对突变型CGT酶催化的酶促反应具有抑制作用。确定了突变体酶促反应的最适温度、pH和反应时间。模拟突变体的三维结构并进行分析,突变体底物特异性的改善可能与CGT酶第194位、230位和233位的氨基酸残基的亲水性及与底物分子间的作用力的改变有关。 By engineering the subsite +1 of cyclodextrin glycosyltransferase (CGTase) from Paenibacillus macerans, we improved its maltodextrin specificity for 2-O-D-glucopyranosyl-L-ascorbic acid (AA-2G) synthesis. Specifically, we conducted site-saturation mutagenesis on Leu194, Ala230, and His233 in subsite +l separately and gained 3 mutants L194N (leucine →asparagine), A230D (alanine --→aspartic acid), and H233E (histidine → glutamic acid) produced higher AA-2G yield than the wild-type and the other mutant CGTases. Therefore, the 3 mutants L194N, A230D, and H233E were further used to construct the double and triple mutations. Among the 7 obtained combinational mutants, the triple mutant L194N/A230D/H233E produced the highest AA-2G titer of 1.95 g/L, which was increased by 62.5% compared with that produced by the wild-type CGTase. Then, we modeled the reaction kinetics of all the mutants and found a substrate inhibition by high titer of L-AA for the mutants. The optimal temperature, pH, and reaction time of all the mutants were also determined. The structure modeling indicated that the enhanced maltodextrin specificity may be related with the changes of hydrogen bonding interactions between the side chain of residue at the three positions (194, 230 and 233) and the substrate sugars.
出处 《生物工程学报》 CAS CSCD 北大核心 2014年第1期98-108,共11页 Chinese Journal of Biotechnology
基金 111工程(No.111-2-06) 江苏省科技支撑计划项目(No.BE2011624)资助~~
关键词 环糊精糖基转移酶 L-抗坏血酸 麦芽糊精 2-O-D-吡喃葡糖基-L-抗坏血酸 定点饱和突变 cyclodextrin glycosyltransferase, L-ascorbic acid, maltodextrin, 2-O-D-glucopyranosyl-L-ascorbic acid,site-saturation mutagenesis
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参考文献29

  • 1Englard S,Seifter S. The biochemical functions of ascorbic acid[J].{H}Annual Review of Nutrition,1986,(1):365-406.
  • 2Jacob RA,Sotoudeh G. Vitamin C function and status in chronic disease[J].Nutri Clin Care,2002,(2):66-74.
  • 3Naidu KA. Vitamin C in human health and disease is still a mystery? An overview[J].{H}NUTRITION JOURNAL,2003,(1):7.
  • 4Fujiwara S,Kakihara H,Sakaguchi K. Analysis of mutations in cyclodextrin glucanotransferase from Bacillus stearothermophilus which affect cyclization characteristics and thermostability[J].{H}Journal of Bacteriology,1992,(22):7478-7481.
  • 5Li ZF,Zhang JY,Sun Q. Mutations of lysine 47 in cyclodextrin glycosyltransferase from Paenibacillus macerans enhance β-cyclodextrin specificity[J].{H}Journal of Agricultural and Food Chemistry,2009,(18):8386-8391.
  • 6Penninga D,Strokopytov B,Rozeboom HJ. Site-directed mutations in tyrosine 195 of cyclodextrin glycosyltransferase from Bacillus circulans strain 251 affect activity and product specificity[J].Biochem,1995,(10):3368-3376.
  • 7Yamamoto I,Muto N,Murakami K. L-ascorbic acid alpha-glucoside formed by regioselective transglucosylation with rat intestinal and rice seed alpha-glucosidases:its improved stability and structure determination[J].Chem Pharm Bull (Tokoyo),1990,(11):3020.
  • 8Sin KA,Nakamura A,Masaki H. Replacement of an amino acid residue of cyclodextrin glucanotransferase of Bacillus ohbensis doubles the production of γ-cyclodextrin[J].{H}Journal of Biotechnology,1994,(3):283-288.
  • 9van der Veen BA,Uitdehaag J,Penninga D. Rational design of cyclodextrin glycosyltransferase from Bacillus circulans strain 251 to increase α-cyclodextrin production[J].{H}Journal of Molecular Biology,2000,(4):1027-1038.
  • 10Han R,Liu L,Li J. Functions,applications and production of 2-O-d-glucopyranosyl-l-ascorbic acid[J].{H}Applied Microbiology and Biotechnology,2012.313-320.

同被引文献71

  • 1江瑞妮,叶康,甘恬,陆跃乐,朱林江,陈小龙,陈翰驰.蔗糖磷酸化酶及其在糖基化反应中的应用[J].生物工程学报,2021,37(1):112-129. 被引量:5
  • 2李晓涵,郝建华,郭姣梅,王伟,孙晶晶,刘均忠.环糊精葡萄糖基转移酶高效异源表达研究进展[J].微生物学通报,2020,47(2):615-622. 被引量:8
  • 3黄敏,裘娟萍,钟莉.酶法生产葡萄糖基维生素C的产酶条件及转化条件优化[J].中国食品添加剂,2006,17(2):100-104. 被引量:8
  • 4王月明,孙万刚,张斌,秦岭,谷卫刚,刘林臣,赵风鸣.环糊精及环糊精葡萄糖基转移酶特性研究[J].安徽农业科学,2007,35(27):8430-8431. 被引量:5
  • 5Bart A,van der Veen,Gert-Jan W M,et al.The three transglycosylation reactions catalyzed by cyclodextrin glycosyltransferase from Bacillus ciculans(strain 251)proceed via different kinetic mechanisms.European Journal of Biochemistry,2000,267(3):658-665.
  • 6Ruizhi Han,Jianghua Li,Hyun-dong Shin,et al.Recent advances in discovery,heterologous expression,and molecular engineering of cyclodextrin glycosyltransferase for versatile applications.Biotechnology Advances,2014,32(2):415-428.
  • 7Biwer G,Antranikian G,Heinzle E.Enzymatic production of cyclodextrins.Appl Microbiol Biotechnol,2002,(59):609-617.
  • 8Lee S H,Kim Y W,Lee S Y,et al.Modulation of cyclizing activity and thermostability of cyclodextrin glucanotransferase and its application as an antistaling enzyme.J Agric Food Chem,2002,50:1411-1415.
  • 9Go Y H,Kim T K,Lee K W,et al.Functional characteristics of cyclodextrin glucanotransferase from alkalophilic Bacillus sp.BL-31 highly specific for intermolecular transglycosylation of bioflavonoids.Microbiol Biotechnol,2007,17:1550-1553.
  • 10Atanasova N,Petrova P,Ivanova V,et al.Isolation of novel alkaliphilic Bacillus strains for cyclodextrin glucanotransferase production.Appl Biochem Biotechnol,2008,149:155-167.

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