Ray Sunetra, Paulmurugan Ramasamy, Patel Manish R, Ahn Byeong C, Wu Lily, Carey Michael, Gambhir Sanjiv S
Department of Molecular and Medical Pharmacology, University of California at Los Angeles (UCLA) School of Medicine, Los Angeles, California, USA.
Mol Ther. 2008 Nov;16(11):1848-56. doi: 10.1038/mt.2008.180. Epub 2008 Sep 2.
Promoters that limit transgene expression to tumors play a vital role in cancer gene therapy. Although tumor specific, the human Survivin promoter (pSurv) elicits low levels of transcription. A bidirectional two-step transcriptional amplification (TSTA) system was designed to enhance expression of the therapeutic gene (TG) tumor necrosis factor-alpha-related apoptosis-inducing ligand (TRAIL or TR) and the reporter gene firefly luciferase (FL) from pSurv. An adenoviral vector carrying the enhanced targeting apparatus (Ad-pSurv-TR-G8-FL) was tested for efficiency and specificity of gene expression in cells and in living animals. Compared to the one-step systems (Ad-pSurv-FL or Ad-pSurv-TR), the bidirectional TSTA system showed tenfold higher expression of both the therapeutic and the reporter gene and their expression correlated in cells (R(2) = 0.99) and in animals (R(2) = 0.67). Noninvasive quantitative monitoring of magnitude and time variation of TRAIL gene expression was feasible by bioluminescence imaging of the transcriptionally linked FL gene in xenograft tumors following intratumoral adenoviral injection. Moreover, the TSTA adenovirus maintained promoter specificity in nontarget tissues following tail vein administration. These studies demonstrate the potential of the bidirectional TSTA system to achieve high levels of gene expression from a weak promoter, while preserving specificity and the ability to image expression of the TG noninvasively.
将转基因表达限制在肿瘤中的启动子在癌症基因治疗中起着至关重要的作用。尽管具有肿瘤特异性,但人类生存素启动子(pSurv)引发的转录水平较低。设计了一种双向两步转录扩增(TSTA)系统,以增强治疗基因(TG)肿瘤坏死因子-α相关凋亡诱导配体(TRAIL或TR)和报告基因萤火虫荧光素酶(FL)从pSurv的表达。测试了携带增强靶向装置的腺病毒载体(Ad-pSurv-TR-G8-FL)在细胞和活体动物中基因表达的效率和特异性。与一步系统(Ad-pSurv-FL或Ad-pSurv-TR)相比,双向TSTA系统显示治疗基因和报告基因的表达均高出十倍,并且它们的表达在细胞中(R² = 0.99)和动物中(R² = 0.67)具有相关性。通过肿瘤内注射腺病毒后异种移植肿瘤中转录连接的FL基因的生物发光成像,对TRAIL基因表达的幅度和时间变化进行无创定量监测是可行的。此外,尾静脉给药后,TSTA腺病毒在非靶组织中保持启动子特异性。这些研究证明了双向TSTA系统从弱启动子实现高水平基因表达的潜力,同时保留了特异性和无创成像TG表达的能力。