Characterization of a mutant glucose isomerase from Thermoanaerobacterium saccharolyticum

Author:

Xu Heng1,Shen Dong2,Wu Xue-Qiang2,Liu Zhi-Wei1,Yang Qi-He1

Affiliation:

1. grid.443485.a College of Life Science Jiaying University 514015 Meizhou People’s Republic of China

2. grid.12527.33 0000 0001 0662 3178 Bioengineering Center at Xiaoshan Yangtze Delta Region Institute of Tsinghua University 311231 Hangzhou People’s Republic of China

Abstract

Abstract A series of site-directed mutant glucose isomerase at tryptophan 139 from Thermoanaerobacterium saccharolyticum strain B6A were purified to gel electrophoretic homogeneity, and the biochemical properties were determined. W139F mutation is the most efficient mutant derivative with a tenfold increase in its catalytic efficiency toward glucose compared with the native GI. With a maximal activity at 80 °C of 59.58 U/mg on glucose, this mutant derivative is the most active type ever reported. The enzyme activity was maximal at 90 °C and like other glucose isomerase, this mutant enzyme required Co2+ or Mg2+ for enzyme activity and thermal stability (stable for 20 h at 80 °C in the absence of substrate). Its optimum pH was around 7.0, and it had 86 % of its maximum activity at pH 6.0 incubated for 12 h at 60 °C. This enzyme was determined as thermostable and weak-acid stable. These findings indicated that the mutant GI W139F from T. saccharolyticum strain B6A is appropriate for use as a potential candidate for high-fructose corn syrup producing enzyme.

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Biotechnology,Bioengineering

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