DeLisa M P, Li J, Rao G, Weigand W A, Bentley W E
Center for Agricultural Biotechnology, University of Maryland Biotechnology Institute, College Park, Maryland 20742, USA.
Biotechnol Bioeng. 1999 Oct 5;65(1):54-64.
Synthesis of an operon fusion protein was investigated in batch and fed-batch cultures at high cell densities of recombinant Escherichia coli JM105 [pBAD-GFP::CAT]. Glucose-limited growth was achieved without accumulation of inhibitory byproducts allowing high cell densities (110 g L(-1) DCW) to be attained. This was believed to be the highest reported value for dry cell mass of E. coli strain JM105 expressing two recombinant proteins. Transcription of the two reporter genes, green fluorescent protein (GFP) and chloramphenicol acetyltransferase (CAT), was under the control of the p(BAD) promoter of the araBAD (arabinose) operon. Each protein was independently translated via separate ribosome binding sites. CAT served as a model recombinant protein product to illustrate the noninvasive quantitative reporting ability of GFP during high cell density fermentations. Expression of GFP was monitored on-line using an intensity-based optical sensor. A linear correlation between the on-line GFP intensity and the enzymatic activity of CAT allowed for in vivo real-time quantitative monitoring of a fermentation product under conditions of high biomass concentration and high productivity.
在重组大肠杆菌JM105 [pBAD-GFP::CAT]的高细胞密度分批培养和补料分批培养中,对操纵子融合蛋白的合成进行了研究。实现了葡萄糖限制生长,且无抑制性副产物积累,从而能够达到高细胞密度(110 g L(-1)干细胞重量)。据信,这是表达两种重组蛋白的大肠杆菌JM105菌株干细胞质量的最高报道值。两个报告基因,绿色荧光蛋白(GFP)和氯霉素乙酰转移酶(CAT)的转录受araBAD(阿拉伯糖)操纵子的p(BAD)启动子控制。每种蛋白质通过单独的核糖体结合位点独立翻译。CAT作为一种模型重组蛋白产物,用于说明在高细胞密度发酵过程中GFP的非侵入性定量报告能力。使用基于强度的光学传感器在线监测GFP的表达。在线GFP强度与CAT酶活性之间的线性相关性允许在高生物量浓度和高生产率条件下对发酵产物进行体内实时定量监测。