Lasko D R, Wang D I
Institute of Biotechnology, ETH Zürich, CH-8093 Zürich, Switzerland.
Biotechnol Bioeng. 1996 Nov 5;52(3):364-72. doi: 10.1002/(SICI)1097-0290(19961105)52:3<364::AID-BIT2>3.0.CO;2-I.
A method was developed to provide a real-time measurement of intracellular adenosine 5'-triphosophate (ATP) concentrations in growing Escherichia coli. The bacteria to be monitored must first be modified by inserting the cDNA for firefly luciferase expressed from a constitutive promoter. Such a construct leads to constant specific activity of firefly luciferase during both the lag phase and exponential growth. When the luciferase substrate, D-luciferin, is added to the medium, ATP within the cells is utilized in the luciferase-catalyzed reaction that produces light. The light is carried from the bioreactor to a computer-based detector by an optical fiber. The detected per cell light emission varies during exponential growth. Analysis of cytoplasm extracts shows that this variance is related to changes in the ATP concentration, which ranges from 1 to 6 times the literature value for K(M). Experimental analyses demonstrated that inner filter effects are not a significant factor affecting the use of this system. The method was tested in a benchtop fermentor at cell densities above 13 g/L dry cell weight. A correction factor based on the accumulated light data is calculated and used in real time to account for consumption of luciferin from the culture broth by the light producing reaction. Dissolved oxygen concentrations must be kept above 15% of air saturation to ensure constant light output, but no detectable increase in oxygen demand is seen. The method does not significantly affect growth or production rates. (c) 1996 John Wiley & Sons, Inc.
已开发出一种方法,用于实时测量生长中的大肠杆菌细胞内的腺苷5'-三磷酸(ATP)浓度。首先必须通过插入由组成型启动子表达的萤火虫荧光素酶的cDNA来对要监测的细菌进行改造。这样的构建体在迟缓期和指数生长期都会使萤火虫荧光素酶具有恒定的比活性。当将荧光素酶底物D-荧光素添加到培养基中时,细胞内的ATP会在荧光素酶催化的产生光的反应中被利用。光通过光纤从生物反应器传输到基于计算机的检测器。在指数生长期,每个细胞检测到的发光会发生变化。对细胞质提取物的分析表明,这种变化与ATP浓度的变化有关,ATP浓度范围为文献中K(M)值的1至6倍。实验分析表明,内滤光效应不是影响该系统使用的重要因素。该方法在台式发酵罐中以高于13 g/L干细胞重量的细胞密度进行了测试。基于累积光数据计算出一个校正因子,并实时用于校正由于发光反应消耗培养液中的荧光素而产生的影响。溶解氧浓度必须保持在空气饱和度的15%以上,以确保光输出恒定,但未观察到可检测到的氧气需求增加。该方法不会显著影响生长速率或生产率。(c)1996约翰威立国际出版公司