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Functional Coexpression of HSV-1 Thymidine Kinase and Green Fluorescent Protein: Implications for Noninvasive Imaging of Transgene Expression

机译:HSV-1胸苷激酶和绿色荧光蛋白的功能共表达:对转基因表达的非侵入性成像的影响。

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摘要

Current gene therapy technology is limited by the paucity of methodology for determining the location and magnitude of therapeutic transgene expression in vivo. We describe and validate a paradigm for monitoring therapeutic transgene expression by noninvasive imaging of the herpes simplex virus type 1 thymidine kinase (HSV-1-tk) marker gene expression. To test proportional coexpression of therapeutic and marker genes, a model fusion gene comprising green fluorescent protein (gfp) and HSV-1-tk genes was generated (tkgfp gene) and assessed for the functional coexpression of the gene product, TKGFP fusion protein, in rat 9L gliosarcoma, RG2 glioma, and W256 carcinoma cells. Analysis of the TKGFP protein demonstrated that it can serve as a therapeutic gene by rendering tkgfp transduced cells sensitive to ganciclovir or as a screening marker useful for identifying transduced cells by fluorescence microscopy or fluorescence-activated cell sorting (FACS). TK and GFP activities in the TKGFP fusion protein were similar to corresponding wild-type proteins and accumulation of the HSV-1-tk-specific radiolabeled substrate, 2′-fluoro-2′-deoxy-1β-d-arabino-furanosyl-5-iodo-uracil (FIAU), in stability transduced clones correlated with gfp-fluorescence intensity over a wide range of expression levels. The tkgfp fusion gene itself may be useful in developing novel cancer gene therapy approaches. Valuable information about the efficiency of gene transfer and expression could be obtained by non-invasive imaging of tkgfp expression with FIAU and clinical imaging devices (gamma camera, positron-emission tomography [PET], single photon emission computed tomography [SPECT]), and/or direct visualization of gfp expression in situ by fluorescence microscopy or endoscopy.
机译:当前的基因治疗技术受到缺乏用于确定体内治疗性转基因表达的位置和大小的方法的限制。我们描述并验证了一种范式,用于通过无创成像监测单纯疱疹病毒1型胸苷激酶(HSV-1-tk)标记基因表达的治疗性转基因表达。为了测试治疗基因和标记基因的比例共表达,生成了包含绿色荧光蛋白(gfp)和HSV-1-tk基因的模型融合基因(tkgfp基因),并评估了基因产物TKGFP融合蛋白的功能共表达。大鼠9L胶质肉瘤,RG2胶质瘤和W256癌细胞。 TKGFP蛋白的分析表明,它可以通过使tkgfp转导的细胞对更昔洛韦敏感而用作治疗基因,或用作筛选标记,可用于通过荧光显微镜或荧光激活的细胞分选(FACS)识别转导的细胞。 TKGFP融合蛋白中的TK和GFP活性与相应的野生型蛋白和HSV-1-tk特异性放射性标记底物2'-fluoro-2'-deoxy-1β-d-arabino-furanosyl-5的积累相似-碘-尿嘧啶(FIAU),在稳定表达的克隆中,与广泛表达水平范围内的gfp荧光强度相关。 tkgfp融合基因本身可用于开发新的癌症基因治疗方法。可以通过使用FIAU和临床成像设备(γ相机,正电子发射断层扫描[PET],单光子发射计算机断层扫描[SPECT])对tkgfp表达进行无创成像来获得有关基因转移和表达效率的宝贵信息。 /或通过荧光显微镜或内窥镜检查直接观察gfp表达。

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