Bioinformatics-assisted mining and engineering of α-amylase for efficient hydrolysis of raw corn and microalgal
Xueting Zhang1, Tong Ye1, Yanli Zhang1
1School of Life Sciences, Anhui University, Hefei, Anhui 230601, China; Anhui Key Laboratory of Modern Biomanufacturing, Hefei, Anhui, 230601, China; Anhui Provincial Engineering Technology Research Center of Microorganisms and Biocatalysis, Hefei, Anhui, 230601, China.
Abstract:
Raw starch-degrading α-amylases play a key role in the cold hydrolysis of starch granules. Using bioinformatic approaches, one α-amylase-encoding gene, AmySy, was identified in the database. AmySy exhibited high activity toward raw corn and microalgal starch, with specific activities of 7570 ± 234 and 2564 ± 33 U/mg, respectively. Through a combination of computational design strategies, the variant AmySy:G207H was obtained, which exhibited enhanced catalytic performance. The half-life of AmySy:G207H at 35 °C was extended to 113 h, representing a 3.0-fold increase over AmySy. Using 30% raw corn flour as the substrate, the hydrolysis rate of AmySy:G207H reached 34.7% after a 5-h reaction. A chemo-enzymatic saccharification process for microalgae was developed using AmySy:G207H. After a three-hour reaction, the reducing sugar yield reached 367.5 mg/g microalgal biomass, which was 2.5 times that obtained through chemical hydrolysis alone. Owing to its ability to hydrolyze raw corn and microalgal starch, as well as its excellent thermostability, AmySy:G207H can be considered an efficient enzyme for the conversion of raw starch into sugar.
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