Yang C P, Su C S
Department of Chemical Engineering, Tatung Institute of Technology, Taipei, Taiwan, Republic of China.
Biotechnol Bioeng. 1988 Aug 20;32(5):595-603. doi: 10.1002/bit.260320504.
Cross-linked polyurethane (PU) was prepared for entrapping thermolysin. Using the immobilized thermolysin (IT), Z-L-aspartic acid (ZA) was reacted with -Lphenylalanine methyl ester (L-PM) in water-saturated ethyl acetate to give only alpha-Z-L-aspartylL-phenylalanine methyl ester (alpha-ZAPM). Ninety-four percent conversion of alpha-ZAPM was obtained for 30 h of reaction at 40 degrees C when 46 mg of enzyme was entrapped. PU support prepared from polypropylene glycol (#2000) showed better properties than from polypropylene (#1000) and polyethylene (#1000). Addition of polyol could increase the gel fraction of PU. The IT PU-ll-G-3, prepared from 1/2 mole ratio of PPG (#2000)/glycerin, gave the highest gel fraction and best swelling, and 89.0% of residual activity was obtained after four times of reuse (72 h). The stability of immobilized thermolysin was good; the activity loss resulting from degradatin and leak of enzyme in each time of reuse were found only about 2%. The kinetics of immobilized thermolysin-catalyzed condensation reaction of ZA with L-PM in water-saturated ethyl acetate was found to be first order in L-PM and the Lineweaver-Burk plot of 1/V against 1/[ZA] yields a straight line, showing that the reaction involves consecutive reactions of ZA and L-PM with the immobilized enzyme and with the ZA-immobilized enzyme complex, with the second reaction being the rate determining step.
制备了交联聚氨酯(PU)用于包埋嗜热菌蛋白酶。使用固定化嗜热菌蛋白酶(IT),在水饱和乙酸乙酯中使Z-L-天冬氨酸(ZA)与L-苯丙氨酸甲酯(L-PM)反应,仅生成α-Z-L-天冬氨酰-L-苯丙氨酸甲酯(α-ZAPM)。当包埋46 mg酶时,在40℃反应30 h,α-ZAPM的转化率达到94%。由聚丙二醇(#2000)制备的PU载体比由聚丙烯(#1000)和聚乙烯(#1000)制备的表现出更好的性能。添加多元醇可以增加PU的凝胶分数。由PPG(#2000)/甘油摩尔比为1/2制备的IT PU-ll-G-3具有最高的凝胶分数和最佳的溶胀性能,在重复使用四次(72 h)后仍保留89.0%的残余活性。固定化嗜热菌蛋白酶的稳定性良好;每次重复使用中因酶降解和泄漏导致的活性损失仅约为2%。发现固定化嗜热菌蛋白酶催化ZA与L-PM在水饱和乙酸乙酯中的缩合反应动力学对L-PM为一级反应,1/V对1/[ZA]的Lineweaver-Burk图给出一条直线,表明该反应涉及ZA和L-PM与固定化酶以及ZA-固定化酶复合物的连续反应,第二个反应是速率决定步骤。