Affiliation:
1. grid.35155.37 0000000417904137 State Key Laboratory of Agricultural Microbiology Huazhong Agricultural University No. 1 Shizishan Street, Hongshan District 430070 Wuhan People’s Republic of China
2. grid.35155.37 0000000417904137 College of Food Science and Technology Huazhong Agricultural University No. 1 Shizishan Street, Hongshan District 430070 Wuhan People’s Republic of China
3. grid.190737.b 0000000101540904 College of Chemistry and Chemical Engineering Chongqing University 400044 Chongqing People’s Republic of China
4. grid.34418.3a 0000000107279022 Hubei Collaborative Innovation Center for Green Transformation of Bio-Resources, College of Life Sciences Hubei University 430062 Wuhan People’s Republic of China
Abstract
Abstract
Nattokinase (NK) possesses the potential for prevention and treatment of thrombus-related diseases. In this study, high-level expression of nattokinase was achieved in Bacillus licheniformis WX-02 via host strain construction and signal peptides optimization. First, ten genes (mpr, vpr, aprX, epr, bpr, wprA, aprE, bprA, hag, amyl) encoding for eight extracellular proteases, a flagellin and an amylase were deleted to obtain B. licheniformis BL10, which showed no extracellular proteases activity in gelatin zymography. Second, the gene fragments of P43 promoter, Svpr, nattokinase and TamyL were combined into pHY300PLK to form the expression vector pP43SNT. In BL10 (pP43SNT), the fermentation activity and product activity per unit of biomass of nattokinase reached 14.33 FU/mL and 2,187.71 FU/g respectively, which increased by 39 and 156 % compared to WX-02 (pP43SNT). Last, Svpr was replaced with SsacC and SbprA, and the maximum fermentation activity (33.83 FU/mL) was achieved using SsacC, which was 229 % higher than that of WX-02 (pP43SNT). The maximum NK fermentation activity in this study reaches the commercial production level of solid state fermentation, and this study provides a promising engineered strain for industrial production of nattokinase, as well as a potential platform host for expression of other target proteins.
Publisher
Oxford University Press (OUP)
Subject
Applied Microbiology and Biotechnology,Biotechnology,Bioengineering