Gu K F, Chang T M
Artificial Cells and Organs Research Centre, Faculty of Medicine, McGill University, 3655 Drummond Street, Montreal, Quebec, Canada.
Biotechnol Bioeng. 1988 Jul 20;32(3):363-8. doi: 10.1002/bit.260320315.
Urea could be effectively converted into L-glutamic acid with semipermeable nylon-polyethylenimine artificial cells containing L-glutamic dehydrogenase (EC 1.4.1. 3), yeast alcohol dehydrogenase (EC 1.1.1.1), urease (EC 3.5.1. 5) and soluble dextran-NAD(+). For batch conversion, the artificial cell suspension to total reaction volume ratios ranged from 1 in 5 to 1 in 60. From 22.6 to 53.4 micromol of L-glutamic acid could be produced by 0.4 mL artificial cell suspension within 2 h. The corresponding conversion ratios were 56.5-11. 1%. The L-glutamic dehydrogenase multienzyme system showed a good storage stability: 66.0% of the original activity was retained after 1 month of storage at 4 degrees C. A small bioreactor was prepared to contain 4.0 mL artificial cells. At a flow rate of SV = 1.5 h(-1), the maximum conversion rate was 49.6 micromol L-glutamic acid/p h. Thirty-eight percent of the maximum activity was retained when continuously used for four days at 22 degrees C. A kinetic analysis for the L-glutamic dehydrogenase multienzyme system was studied. The Michaelis constants are as follows: alpha-ketoglutarate is 0.838 mM; urea is 1.90 mM; dextran- NAD(+) is 0.345 mM; and ethanol is 5.31 mM.
尿素可以通过含有L-谷氨酸脱氢酶(EC 1.4.1.3)、酵母乙醇脱氢酶(EC 1.1.1.1)、脲酶(EC 3.5.1.5)和可溶性葡聚糖-NAD(+)的半透性尼龙-聚乙烯亚胺人工细胞有效地转化为L-谷氨酸。对于分批转化,人工细胞悬浮液与总反应体积的比例范围为1:5至1:60。0.4 mL人工细胞悬浮液在2小时内可产生22.6至53.4微摩尔的L-谷氨酸。相应的转化率为56.5%-11.1%。L-谷氨酸脱氢酶多酶系统表现出良好的储存稳定性:在4℃储存1个月后仍保留66.0%的原始活性。制备了一个小型生物反应器,其中含有4.0 mL人工细胞。在SV = 1.5 h(-1)的流速下,最大转化率为49.6微摩尔L-谷氨酸/小时。在22℃连续使用四天后,保留了38%的最大活性。对L-谷氨酸脱氢酶多酶系统进行了动力学分析。米氏常数如下:α-酮戊二酸为0.838 mM;尿素为1.90 mM;葡聚糖-NAD(+)为0.345 mM;乙醇为5.31 mM。