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首页> 外文期刊>Enzyme and Microbial Technology >The preparation and characterization of an immobilized L-glutamic decarboxylase and its application for determination of L-glutamic acida
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The preparation and characterization of an immobilized L-glutamic decarboxylase and its application for determination of L-glutamic acida

机译:固定化L-谷氨酸脱羧酶的制备,表征及其在测定L-谷氨酸中的应用

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摘要

This paper is to study the preparation and characterization of an immobilized L-glutamic decarboxylase (GDC) and develop a sensitive method for the determination of L-glutamate using a new biosensor, which consists of an enzyme column reactor of GDC immobilized on a novel ion exchange resin (carboxymethyl-copolymer of allyl dextran and N,N'-methylene-bisacrylamide CM-CADB) and ion analyzer coupled with a CO2 electrode. The conditions for the enzyme immobilization were optimized by the parameters: buffer composition and concentration, adsorption equilibration time, amount of enzyme, temperature, ionic strength and pH. The dynamic response of Na2HPO4-citric acid buffer system selected is much better than that of the others, 0.10 M HAc-0.10 hi NaAc and 0.10 M sodium citrate-0.10 M citric acid. The initial rate of the enzyme reaction v(0) in this buffer system is 1.76 mol . l(-1) min(-1), moreover, the rate of the enzyme reaction appears linear in the first 4 min. The optimum adsorption equilibrium time is around 6 h. The amount of enzyme adsorbed on CM-CADB resin affects the response to substrate L-glutamic acid, the widest range of linearity is obtained with over 30 mg (GDC)/g(resin). The GDC activity immobilized on CM-CADB reaches a maximum when the immobilization temperature was kept around 40 degrees C. pH was kept at 4.4 when measuring the activity of the immobilized GDC. No variation of the activity of immobilized GDC is observed when the capacity is over 2.5 meq/g.(CM-CADB resin). The properties of the immobilized enzyme on CM-CADB were characterized. No significant improvement can be achieved when the substrate concentration exceeds 12.00 mmol/l, where the activity of immobilized GDC is equal to 1.58 mmol/l.min.g. The optimum pH is found to be 5.2, which changes 0.2 unit, comparing with that of the free GDC (5.0). The optimum temperature is found to be around 48 degrees C, which is lower than that of free GDC (55 degrees C). The critical temperature of the free GDC and the immobilized GDC is approximately 50 degrees C and 45 degrees C, respectively. The half-life of the activity is 127 days when the immobilized enzyme was stored in the cold (4 degrees C). An immobilized GDC enzyme column reactor matched with a flow injection system-ion analyzer coupled with CO2 electrode-data collection system made up the original form of the apparatus of biosensor for determining of L-glutamic acid. The determination conditions are that the buffer solution is 0.10 M Na2HPO4-0.05 M citric acid at pH 4.4 and t = 37 degrees C. The limit of detection is 1.0 x 10(-5) M. The linearity response is in the range of 5 x 10(-2) - 5 x 10(-5) M. The equation of linear regression of the calibration curve is y = 43.3x + 181.6 (y is the milli-volt of electrical potential response, x is the logarithm of the concentration of the substrate of L-glutamic acid). The correlation coefficient equals 0.99. The coefficient of variation equals 2.7%. (C) 2000 Elsevier Science Inc. All rights reserved. [References: 12]
机译:本文旨在研究固定化L-谷氨酸脱羧酶(GDC)的制备和表征,并开发一种使用新型生物传感器测定L-谷氨酸的灵敏方法,该传感器由固定在新型离子上的GDC酶柱反应器组成交换树脂(烯丙基葡聚糖和N,N'-亚甲基双丙烯酰胺CM-CADB的羧甲基共聚物)和与CO2电极相连的离子分析仪。通过以下参数优化酶固定的条件:缓冲液组成和浓度,吸附平衡时间,酶量,温度,离子强度和pH。所选择的Na2HPO4-柠檬酸缓冲系统的动态响应远优于其他系统,即0.10 M HAc-0.10 hi NaAc和0.10 M柠檬酸钠-0.10 M柠檬酸。该缓冲系统中酶反应v(0)的初始速率为1.76 mol。 l(-1)min(-1),此外,酶反应速率在前4分钟内呈线性变化。最佳的吸附平衡时间约为6小时。吸附在CM-CADB树脂上的酶的量会影响对底物L-谷氨酸的反应,线性范围最广的是超过30 mg(GDC)/ g(树脂)。当固定温度保持在40℃左右时,固定在CM-CADB上的GDC活性达到最大。当测量固定的GDC的活性时,pH保持在4.4。当容量超过2.5meq / g(CM-CADB树脂)时,未观察到固定的GDC的活性变化。表征了固定化酶在CM-CADB上的性质。当底物浓度超过12.00 mmol / l时,固定的GDC的活性等于1.58 mmol / l.min.g,则无法实现显着改善。发现最佳pH为5.2,与游离GDC(5.0)相比,变化了0.2个单位。发现最佳温度为48摄氏度左右,低于自由GDC的55摄氏度。游离GDC和固定GDC的临界温度分别约为50摄氏度和45摄氏度。当固定化酶在低温(4摄氏度)下保存时,活性的半衰期为127天。固定化的GDC酶柱反应器与流动注射系统,离子分析仪和CO2电极数据收集系统相匹配,构成了用于测定L-谷氨酸的生物传感器设备的原始形式。确定条件为缓冲溶液为pH 4.4且t = 37℃的0.10 M Na2HPO4-0.05 M柠檬酸。检测极限为1.0 x 10(-5)M。线性响应在5范围内x 10(-2)-5 x 10(-5)M。校准曲线的线性回归方程为y = 43.3x + 181.6(y是电位响应的毫伏,x是对数的对数L-谷氨酸底物的浓度)。相关系数等于0.99。变异系数等于2.7%。 (C)2000 Elsevier Science Inc.保留所有权利。 [参考:12]

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