Rational introduction of disulfide bond to enhance optimal temperature of Lipomyces starkeyi alpha-dextranase expressed in Pichia pastoris.
Lin Chen, Chao Yu, Xiangshan Zhou, Yuanxing Zhang
Index: J. Microbiol. Biotechnol. 19(12) , 1506-13, (2009)
Full Text: HTML
Abstract
Alpha-dextranase, which can hydrolyze dextran, is largely used in the sugar industry. However, a thermostable alpha- dextranase is needed to alleviate the viscosity of syrups and clean blocked machines. Thus, to improve the optimal temperature of Lipomyces starkeyi alpha-dextranase expressed by Pichia pastoris, the rational introduction of a de novo designed disulfide bond was investigated. Based on the known structure of Penicillium minioluteum dextranase, L. starkeyi alpha-dextranase was constructed using homology modeling. Four amino acids residues were then selected for site-directed mutagenesis to cysteine. When compared with the wildtype dextranase, the mutant DexM2 (D279C/S289C) showed a more than 13oC improvement on its optimal temperature. DexM2 and DexM12 (T245C/N248C, D279C/S289C) also showed a better thermal stability than the wild-type dextranase. After the introduction of two disulfide bonds, the specific activity of DexM12 was evaluated and found to be two times higher than that of the wild-type. Moreover, DexM12 also showed the highest Vmax.
Related Compounds
Related Articles:
2013-10-01
[Am. J. Dent. 26(5) , 239-43, (2013)]
Characterization of novel thermostable dextranase from Thermotoga lettingae TMO.
2010-01-01
[Appl. Microbiol. Biotechnol. 85(3) , 581-7, (2010)]
Pectic substances and pectic enzymes.
1958-01-01
[Adv. Enzymol. Relat. Subj. Biochem. 20 , 341-82, (1958)]
Cloning of a gene encoding dextranase from Lipomyces starkeyi and its expression in Pichia pastoris.
2009-02-01
[J. Microbiol. Biotechnol. 19(2) , 172-7, (2009)]
1959-05-01
[Biochem. J. 72(1) , 49-54, (1959)]