Liu Zhen, Zhang Yinan, Sun Jianan, Huang Wen-Can, Xue Changhu, Mao Xiangzhao
College of Food Science and Engineering, Ocean University of China, Qingdao, China.
Laboratory for Marine Drugs and Bioproducts of Qingdao National Laboratory for Marine Science and Technology, Qingdao, China.
Front Bioeng Biotechnol. 2020 May 5;8:426. doi: 10.3389/fbioe.2020.00426. eCollection 2020.
Hopene is an important precursor for synthesizing bioactive hopanoids with great commercial value. However, the chemical methods for synthesizing hopene are not efficient to date. Hopene is commonly obtained by extracting from plants or bacteria like other terpenoids, but the complicated extraction process is inefficient and unfriendly to the environment. Hopene can be biological synthesized by squalene-hopene cyclase (SHC) from squalene. However, hopene production by SHC remained at a low level until now. In this work, we found a novel SHC named OUC-SaSHC from ATCC 27414. An easy procedure for expression and purification of OUC-SaSHC was established. The conditions for OUC-SaSHC to convert squalene into hopene are optimized as in 100 mM sodium phosphate buffer (pH 7.0) containing 0.5% Tween 80, 20 mM squalene and 0.14 mg/mL OUC-SaSHC at 30°C. In the scale-up reaction with the final volume of 100 mL, the yield of squalene could be up to 99% at 36 h, and 8.07 mg/mL hopene was produced. Our work showed a great potential of OUC-SaSHC as biocatalyst on scale-up production of hopene, hence improves the SHC-catalyzing enzyme synthesis of hopene from laboratory level to application level.
藿烯是合成具有巨大商业价值的生物活性藿烷类化合物的重要前体。然而,迄今为止,合成藿烯的化学方法效率不高。与其他萜类化合物一样,藿烯通常通过从植物或细菌中提取获得,但复杂的提取过程效率低下且对环境不友好。藿烯可以由鲨烯通过鲨烯-藿烯环化酶(SHC)进行生物合成。然而,到目前为止,SHC催化生产藿烯的产量一直处于较低水平。在这项工作中,我们从ATCC 27414中发现了一种新型的SHC,命名为OUC-SaSHC。建立了一种简单的OUC-SaSHC表达和纯化方法。OUC-SaSHC将鲨烯转化为藿烯的条件优化为:在含有0.5%吐温80、20 mM鲨烯和0.14 mg/mL OUC-SaSHC的100 mM磷酸钠缓冲液(pH 7.0)中,于30°C下反应。在最终体积为100 mL的放大反应中,鲨烯在36 h时的转化率可达99%,并产生了8.07 mg/mL的藿烯。我们的工作表明OUC-SaSHC作为生物催化剂在藿烯放大生产方面具有巨大潜力,从而将SHC催化的藿烯酶合成从实验室水平提高到应用水平。