Aung Winn, Okauchi Takashi, Sato Masaaki, Saito Toshiyuki, Nakagawa Hidehiko, Ishihara Hiroshi, Ikota Nobuo, Suhara Tetsuya, Anzai Kazunori
Redox Regulation Research Group, National Institute of Radiological Sciences, Chiba 263-8555, Japan.
Nucl Med Commun. 2005 Mar;26(3):259-68. doi: 10.1097/00006231-200503000-00011.
Increasing interest is being shown in a variety of methods for the in-vivo monitoring of gene expression. Of these, the reporter assay using positron emission tomography (PET) has been studied most extensively.
We evaluated tetracycline-induced gene expression using a PET reporter method employing the dopamine type 2 receptor (D2R) gene as a reporter gene and [(11)C]FLB 457 as a reporter probe. We constructed a plasmid containing the D2R gene, whose expression was under the control of the tetracycline-responsive element, and transfected it into HeLa-Tet-On cells. D2R messenger RNA (mRNA) expression was measured by reverse transcription-polymerase chain reaction (RT-PCR) and D2R binding in the cultured cells was measured by a binding assay using methoxy-[(3)H]raclopride as a ligand. The tetracycline analogue, doxycycline, was used to regulate D2R expression.
Doxycycline dose- and exposure time-dependent D2R transgene expression was observed in the mRNA measurements and receptor binding in the cells. The stably transfected cells were inoculated into nude rats and D2R expression in xenograft tumours was monitored by in-vivo receptor binding using PET. Doxycycline-dependent D2R expression was also observed in this in-vivo system. The correlation between the magnitude of the [(11)C]FLB 457 PET signal and the D2R-expressing cell fraction in the tumours showed the usefulness of the D2R-FLB 457 reporter gene-reporter probe system with PET for the quantitative evaluation of inducible in-vivo gene expression.
The D2R-FLB 457 reporter gene-reporter probe system should be considered as a useful technique for measuring inducible in-vivo gene expression.
人们对多种体内基因表达监测方法的兴趣与日俱增。其中,使用正电子发射断层扫描(PET)的报告基因检测法研究最为广泛。
我们采用以多巴胺2型受体(D2R)基因为报告基因、[(11)C]FLB 457为报告探针的PET报告基因方法,评估四环素诱导的基因表达。我们构建了一个含有D2R基因的质粒,其表达受四环素反应元件控制,并将其转染到HeLa-Tet-On细胞中。通过逆转录聚合酶链反应(RT-PCR)测量D2R信使核糖核酸(mRNA)表达,使用甲氧基-[(3)H]雷氯必利作为配体,通过结合试验测量培养细胞中的D2R结合。四环素类似物强力霉素用于调节D2R表达。
在mRNA测量和细胞受体结合中观察到强力霉素剂量和暴露时间依赖性的D2R转基因表达。将稳定转染的细胞接种到裸鼠体内,通过PET体内受体结合监测异种移植肿瘤中的D2R表达。在这个体内系统中也观察到了强力霉素依赖性的D2R表达。[(11)C]FLB 457 PET信号强度与肿瘤中表达D2R的细胞分数之间的相关性表明,D2R-FLB 457报告基因-报告探针系统结合PET可用于定量评估诱导性体内基因表达。
D2R-FLB 457报告基因-报告探针系统应被视为测量诱导性体内基因表达的一种有用技术。