Han Zhenying, Ye Changwen, Dong Xinyu, Chen Chenchen, Zou Dian, Huang Kuo, Wei Xuetuan
State Key Laboratory of Agricultural Microbiology, College of Food Science and Technology, Huazhong Agricultural University, Wuhan, China.
Zhengzhou Tobacco Research Institute of China National Tobacco Corporation, Zhengzhou, China.
Front Bioeng Biotechnol. 2024 Mar 13;12:1383083. doi: 10.3389/fbioe.2024.1383083. eCollection 2024.
Due to the broad application and substantial market demand for proteases, it was vital to explore the novel and efficient protease resources. The aim of this study was to identify the novel protease for tobacco protein degradation and optimize the expression levels. Firstly, the tobacco protein was used as the sole nitrogen resource for isolation of protease-producing strains, and a strain with high protease production ability was obtained, identified as WH-7. Then, the whole genome sequencing was conducted on the strain WH-7, and 7 proteases genes were mined by gene annotation analysis. By further heterologous expression of the 7 protease genes, the key protease HapR was identified with the highest protease activity (144.19 U/mL). Moreover, the catalysis mechanism of HapR was explained by amino acid sequence analysis. The expression levels of protease HapR were further improved through optimization of promoter, signal peptide and host strain, and the maximum protease activity reaced 384.27 U/mL in WX-02/pHY-P43-SP-, increased by 167% than that of initial recombinant strain HZ/pHY-P43-SP-. This study identified a novel protease HapR and the expression level was significantly improved, which provided an important enzyme resource for the development of enzyme preparations in tobacco protein degradation.
由于蛋白酶具有广泛的应用和巨大的市场需求,探索新型高效的蛋白酶资源至关重要。本研究的目的是鉴定用于烟草蛋白降解的新型蛋白酶并优化其表达水平。首先,以烟草蛋白作为唯一氮源来分离产蛋白酶菌株,获得了一株具有高蛋白酶生产能力的菌株,鉴定为WH-7。然后,对WH-7菌株进行全基因组测序,并通过基因注释分析挖掘出7个蛋白酶基因。通过对这7个蛋白酶基因进一步进行异源表达,鉴定出了蛋白酶活性最高(144.19 U/mL)的关键蛋白酶HapR。此外,通过氨基酸序列分析解释了HapR的催化机制。通过优化启动子、信号肽和宿主菌株,进一步提高了蛋白酶HapR的表达水平,在WX-02/pHY-P43-SP-中最大蛋白酶活性达到384.27 U/mL,比初始重组菌株HZ/pHY-P43-SP-提高了167%。本研究鉴定出一种新型蛋白酶HapR,其表达水平显著提高,为烟草蛋白降解酶制剂的开发提供了重要的酶资源。