Jamuna R, Saswathi N, Sheela R, Ramakrishna S V
Biotechnology Division, Regional Research Laboratory, Kerala, India.
Appl Biochem Biotechnol. 1993 Dec;43(3):163-76. doi: 10.1007/BF02916450.
A potent indigenous bacillus isolate identified as Bacillus cereus (RJ-30) was found to produce Cyclodextrin Glucosyl Transferase (CGTase) extracellularly. Process optimization of various fermentation parameters has been established for optimal growth of bacillus and the maximum enzyme synthesis. The organism had the highest specific growth rate (0.7 mu) with a generation time of 1 h in glucose containing medium at the conditions of pH 7.0, 37 degrees C at 300 rpm, 1.5 vvm of agitation, and aeration. At these conditions, it exhibited the maximum activity of 54 U/mL at the synthesis rate of 2.7 U/L/h. CGTase was produced from the early exponential growth and peaked during the midsporulating stage of about 16 h thereafter maintained at the same level of 50 U/mL. Saccharides containing media were better inducers than starch, and the influence of carbohydrate substrates has shown that enzyme synthesis is promoted by xylose (65 U/mL) and, more remarkably, by the supplementation of wheat bran extract in glucose medium (106 U/mL). This organism produced CGTase stably in a chemostat culturing over a period of 400 h with a maximum productivity of 5.4 kU/L/h (threefold higher than obtained in batch culturing [1.75 kU/L/h]). Comparatively, CGTase was produced by immobilized cells in a continuous fluidized bed reactor for over approx 360 h, at a relatively high dilution rate of 0.88 h-1 resulting in the productivity of 23.0 kU/L/h.
一种被鉴定为蜡样芽孢杆菌(RJ - 30)的强效本土芽孢杆菌菌株被发现能在细胞外产生环糊精葡萄糖基转移酶(CGTase)。已经建立了各种发酵参数的工艺优化方法,以实现芽孢杆菌的最佳生长和最大酶合成量。在pH 7.0、37摄氏度、300转/分钟、1.5 vvm搅拌和通气条件下,该菌株在含葡萄糖的培养基中具有最高的比生长速率(0.7 μ),代时为1小时。在这些条件下,它表现出最大活性为54 U/mL,合成速率为2.7 U/L/h。CGTase从指数生长早期开始产生,并在约16小时的中期芽孢形成阶段达到峰值,此后维持在50 U/mL的相同水平。含糖类的培养基比淀粉是更好的诱导剂,碳水化合物底物的影响表明,木糖(65 U/mL)能促进酶的合成,更显著的是,在葡萄糖培养基中添加麦麸提取物(106 U/mL)也能促进酶的合成。该菌株在恒化器培养中400小时内稳定产生CGTase,最大生产力为5.4 kU/L/h(比分批培养获得的[1.75 kU/L/h]高三倍)。相比之下,CGTase由固定化细胞在连续流化床反应器中生产约360小时以上,稀释率相对较高,为0.88 h-1,生产力为23.0 kU/L/h。