TY - JOUR
T1 - Effect of N-terminal truncation of Bacillus acidopullulyticus pullulanase on enzyme properties and functions
AU - Chen, A'na
AU - Liu, Xiuxia
AU - Dai, Xiaofeng
AU - Zhan, Jinling
AU - Peng, Feng
AU - Li, Lu
AU - Wang, Fen
AU - Li, Song
AU - Yang, Yankun
AU - Bai, Zhonghu
N1 - Publisher Copyright:
© 2016 Chin J Biotech, All rights reserved.
PY - 2016/3/25
Y1 - 2016/3/25
N2 - We constructed different N-terminal truncated variants based on Bacillus acidopullulyticus pullulanase 3D structure (PDB code 2WAN), and studied the effects of truncated mutation on soluble expression, enzymatic properties, and application in saccharification. Upon expression, the variants of X45 domain deletion existed as inclusion bodies, whereas deletion of CBM41 domain had an effective effect on soluble expression level. The variants that lack of CBM41 (M1), lack of X25 (M3), and lack both of CBM41 and X25 (M5) had the same optimal pH (5.0) and optimal temperature (60℃) with the wild-type pullulanase (WT). The Km of M1 and M5 were 1.42 mg/mL and 1.85 mg/mL, respectively, 2.4-and 3.1-fold higher than that of the WT. kcat/Km value of M5 was 40% lower than that of the WT. Substrate specificity results show that the enzymes exhibited greater activity with the low-molecular-weight dextrin than with high-molecular-weight soluble starch. When pullulanases were added to the saccharification reaction system, the dextrose equivalent of the WT, M1, M3, and M5 were 93.6%, 94.7%, 94.5%, and93.1%, respectively. These results indicate that the deletion of CBM41 domain and/or X25 domain did not affect the practical application in starch saccharification process. Furthermore, low-molecular-weight variants facilitate the heterologous expression. Truncated variants may be more suitable for industrial production than the WT.
AB - We constructed different N-terminal truncated variants based on Bacillus acidopullulyticus pullulanase 3D structure (PDB code 2WAN), and studied the effects of truncated mutation on soluble expression, enzymatic properties, and application in saccharification. Upon expression, the variants of X45 domain deletion existed as inclusion bodies, whereas deletion of CBM41 domain had an effective effect on soluble expression level. The variants that lack of CBM41 (M1), lack of X25 (M3), and lack both of CBM41 and X25 (M5) had the same optimal pH (5.0) and optimal temperature (60℃) with the wild-type pullulanase (WT). The Km of M1 and M5 were 1.42 mg/mL and 1.85 mg/mL, respectively, 2.4-and 3.1-fold higher than that of the WT. kcat/Km value of M5 was 40% lower than that of the WT. Substrate specificity results show that the enzymes exhibited greater activity with the low-molecular-weight dextrin than with high-molecular-weight soluble starch. When pullulanases were added to the saccharification reaction system, the dextrose equivalent of the WT, M1, M3, and M5 were 93.6%, 94.7%, 94.5%, and93.1%, respectively. These results indicate that the deletion of CBM41 domain and/or X25 domain did not affect the practical application in starch saccharification process. Furthermore, low-molecular-weight variants facilitate the heterologous expression. Truncated variants may be more suitable for industrial production than the WT.
KW - Application
KW - Enzyme properties
KW - Expression level
KW - N-terminal truncation
KW - Pullulanase
UR - https://www.scopus.com/pages/publications/84963591468
U2 - 10.13345/j.cjb.150322
DO - 10.13345/j.cjb.150322
M3 - 文章
C2 - 27349118
AN - SCOPUS:84963591468
SN - 1000-3061
VL - 32
SP - 355
EP - 364
JO - Sheng wu gong cheng xue bao = Chinese journal of biotechnology
JF - Sheng wu gong cheng xue bao = Chinese journal of biotechnology
IS - 3
ER -