Biotechnology Bulletin ›› 2017, Vol. 33 ›› Issue (8): 192-198.doi: 10.13560/j.cnki.biotech.bull.1985.2017-0172

• Research Report • Previous Articles     Next Articles

Optimization of the Thermal Activity and Stability of Hyperthermophilic α-amylase ApkA

ZENG Jing, GUO Jian-jun, YUAN Lin, YANG Gang, CHEN Jun   

  1. Institute of Microbiology,Jiangxi Academy of Sciences,Nanchang 330096
  • Received:2017-03-09 Online:2017-08-01 Published:2017-08-01

Abstract: This work aims to obtain α-amylase with improved thermal activity and stability. Based on the structure analysis of hyperthermophilic α-amylase ApkA and the most thermo-stable α-amylase PFA,a Zn2+-binding site mutant ApkAdsK152H/A166C was constructed by introducing the Zn2+-binding site of PFA into ApkA. The mutant ApkAdsK152H/A166C exhibited effective increase in terms of thermal activity and stability. The optimal temperature of the mutant increased from 90℃ to 100℃ and the corresponding specific activity was 5 201.08 U/mg. The half-life of ApkAdsK152H/A166C prolonged from 5 h to 10 h while incubated at 90℃,and from 7.5 min to 80 min at 100℃. The results of Zn2+ content measurement in recombinant α-amylases confirmed that ApkAdsK152H/A166C bound with one Zn2+ ion. These results suggested that the introduction of Zn2+-binding site improved the thermal activity and stability of ApkA.

Key words: hyperthermophilic α-amylase, Zn2+-binding site, site-directed mutagenesis, thermo-activity, thermostability