Li X, Zhao X, Fang Y, Jiang X, Duong T, Fan C, Huang C C, Kain S R
Laboratories, Inc., Palo Alto, California 94303, USA.
J Biol Chem. 1998 Dec 25;273(52):34970-5. doi: 10.1074/jbc.273.52.34970.
The green fluorescent protein (GFP) is a widely used reporter in gene expression and protein localization studies. GFP is a stable protein; this property allows its accumulation and easy detection in cells. However, this stability also limits its application in studies that require rapid reporter turnover. We created a destabilized GFP for use in such studies by fusing amino acids 422-461 of the degradation domain of mouse ornithine decarboxylase (MODC) to the C-terminal end of an enhanced variant of GFP (EGFP). The fusion protein, unlike EGFP, was unstable in the presence of cycloheximide and had a fluorescence half-life of 2 h. Western blot analysis indicated that the fluorescence decay of EGFP-MODC-(422-461) was correlated with degradation of the fusion protein. We mutated key amino acids in the PEST sequence of EGFP-MODC-(422-461) and identified several mutants with variable half-lives. The suitability of destabilized EGFP as a transcription reporter was tested by linking it to NFkappaB binding sequences and monitoring tumor necrosis factor alpha-mediated NFkappaB activation. We obtained time course induction and dose response kinetics similar to secreted alkaline phosphatase obtained in transfected cells. This result did not occur when unmodified EGFP was used as the reporter. Because of its autofluorescence, destabilized EGFP can be used to directly correlate gene induction with biochemical change, such as NFkappaB translocation to the nucleus.
绿色荧光蛋白(GFP)是基因表达和蛋白质定位研究中广泛使用的报告基因。GFP是一种稳定的蛋白质;这一特性使其能够在细胞中积累并易于检测。然而,这种稳定性也限制了它在需要报告基因快速周转的研究中的应用。我们通过将小鼠鸟氨酸脱羧酶(MODC)降解结构域的422 - 461位氨基酸融合到增强型GFP变体(EGFP)的C末端,创建了一种用于此类研究的不稳定GFP。与EGFP不同,该融合蛋白在放线菌酮存在的情况下不稳定,荧光半衰期为2小时。蛋白质印迹分析表明,EGFP - MODC -(422 - 461)的荧光衰减与融合蛋白的降解相关。我们对EGFP - MODC -(422 - 461)的PEST序列中的关键氨基酸进行了突变,并鉴定出了几种半衰期不同的突变体。通过将不稳定的EGFP与NFκB结合序列相连,并监测肿瘤坏死因子α介导的NFκB激活,测试了其作为转录报告基因的适用性。我们获得了与转染细胞中分泌型碱性磷酸酶相似的时间进程诱导和剂量反应动力学。当使用未修饰的EGFP作为报告基因时,未出现此结果。由于其自身荧光,不稳定的EGFP可用于直接将基因诱导与生化变化(如NFκB易位至细胞核)相关联。