Institute of Biochemical Engineering, Technische Universität Braunschweig, Gaußstraße 17, 38106 Braunschweig, Germany.
Appl Microbiol Biotechnol. 2013 Apr;97(8):3343-53. doi: 10.1007/s00253-012-4567-1. Epub 2012 Nov 23.
In this study, a high yield production bioprocess with recombinant Bacillus megaterium for the production of the extracellular enzyme levansucrase (SacB) was developed. For basic optimization of culture parameters and nutrients, a recombinant B. megaterium reporter strain that produced green fluorescent protein under control of a vector-based xylose-inducible promoter was used. It enabled efficient microtiter plate-based screening via fluorescence analysis. A pH value of pH 6, 20 % of dissolved oxygen, 37 °C, and elevated levels of biotin (100 μg L(-1)) were found optimal with regard to high protein yield and reduced overflow metabolism. Among the different compounds tested, fructose and glycerol were identified as the preferred source of carbon. Subsequently, the settings were transferred to a B. megaterium strain recombinantly producing levansucrase SacB based on the plasmid-located xylose-inducible expression system. In shake flask culture under the optimized conditions, the novel strain already secreted the target enzyme in high amounts (14 U mL(-1) on fructose and 17.2 U mL(-1) on glycerol). This was further increased in high cell density fed-batch processes up to 55 U mL(-1), reflecting a levansucrase concentration of 0.52 g L(-1). This is 100-fold more than previous efforts for this enzyme in B. megaterium and more than 10-fold higher than reported values of other extracellular protein produced in this microorganism so far. The recombinant strain could also handle raw glycerol from biodiesel industry which provided the same amount and quality of the recombinant protein and suggests future implementation into existing biorefinery concepts.
在这项研究中,开发了一种利用重组巨大芽孢杆菌生产胞外酶蔗聚糖蔗糖酶(SacB)的高产生物工艺。为了对培养参数和营养物质进行基本优化,使用了一种重组巨大芽孢杆菌报告菌株,该菌株在基于载体的木糖诱导启动子的控制下产生绿色荧光蛋白。这使得通过荧光分析进行高效的微量滴定板筛选成为可能。发现 pH 值为 6、溶解氧 20%、37°C 和生物素水平升高(100 μg·L(-1))有利于高蛋白质产量和减少溢出代谢。在所测试的不同化合物中,果糖和甘油被确定为首选碳源。随后,将设定值转移到基于质粒定位的木糖诱导表达系统重组生产蔗聚糖蔗糖酶 SacB 的巨大芽孢杆菌菌株上。在优化条件下的摇瓶培养中,新型菌株已经大量分泌目标酶(果糖上为 14 U·mL(-1),甘油上为 17.2 U·mL(-1))。在高细胞密度补料分批过程中进一步增加到 55 U·mL(-1),反映出蔗聚糖蔗糖酶浓度为 0.52 g·L(-1)。这比以前在巨大芽孢杆菌中对该酶的努力提高了 100 倍,比迄今为止报道的该微生物中其他胞外蛋白的产量高 10 倍以上。重组菌株还可以处理来自生物柴油行业的原始甘油,提供等量和质量的重组蛋白,并表明未来可以将其实施到现有的生物精炼概念中。