Mayer A F, Hellmuth K, Schlieker H, Lopez-Ulibarri R, Oertel S, Dahlems U, Strasser A W, van Loon A P
Biotechnology Research Group, Vitamins and Fine Chemicals Division, F. Hoffmann-La Roche AG, Grenzacherstrasse 124, CH-4070 Basel, Switzerland.
Biotechnol Bioeng. 1999 May 5;63(3):373-81. doi: 10.1002/(sici)1097-0290(19990505)63:3<373::aid-bit14>3.0.co;2-t.
An efficient process was developed for the low-cost production of phytases using Hansenula polymorpha. Glucose or glucose syrups, previously reported as repressive substrates, were used as main carbon sources during fermentation. Glucose was even the most productive substrate for high-level production of phytases. Compared with the process using glycerol, the standard carbon source used for this process until now, the use of glucose led to a reduction of more than 80% in the raw materials costs. In addition, exceptionally high concentrations of active enzyme (up to 13.5 g/L) were obtained in the medium, with phytase representing over 97% of the total accumulated protein. These levels greatly exceed those reported so far for any yeast-based expression system. Very efficient downstream processing procedures were developed with product recovery yields over 90%. Both the fermentation and downstream processing were successfully tested in pilot scale up to 2000 L. As a result, H. polymorpha can be used as a highly competitive system for low-cost phytase production.
开发了一种利用多形汉逊酵母低成本生产植酸酶的高效工艺。葡萄糖或葡萄糖糖浆,以前被报道为抑制性底物,在发酵过程中用作主要碳源。葡萄糖甚至是高水平生产植酸酶最有效的底物。与使用甘油(迄今为止该工艺使用的标准碳源)的工艺相比,使用葡萄糖可使原材料成本降低80%以上。此外,在培养基中获得了异常高浓度的活性酶(高达13.5 g/L),植酸酶占总积累蛋白的97%以上。这些水平大大超过了迄今为止报道的任何基于酵母的表达系统的水平。开发了非常高效的下游加工工艺,产品回收率超过90%。发酵和下游加工均在高达2000 L的中试规模上成功进行了测试。因此,多形汉逊酵母可作为低成本生产植酸酶的极具竞争力的系统。