Paquin A, Jaalouk D E, Galipeau J
Lady Davis Institute for Medical Research, Department of Medicine, Division of Hematology-Oncology, SMBD-Jewish General Hospital (McGill University), Montréal, Canada H3T 1E2.
Hum Gene Ther. 2001 Jan 1;12(1):13-23. doi: 10.1089/104303401450924.
Expression vectors encoding herpes simplex virus thymidine kinase (HSVTK) have been extensively used in cell and gene therapy applications either as anticancer "suicide" or as "self-destruct" transgenes in adoptive immunotherapy applications. In both gene therapy applications, reliable detection of HSVTK transgene expression is required in genetically engineered cells. Direct fluorescent labeling of the HSVTK protein may be the remedy. We designed a retrovector encoding a chimeric GFP-HSVTK fusion protein that can serve as a bifunctional suicide and reporter transgene. The fusion gene was incorporated in a VSV G-pseudotyped retrovector (vGFPTKfus) and high-titer stable retroviral producer was generated ( approximately 3 x 10(6) retroparticles/ml). Tumor cell lines transduced at an MOI of 8 for 3 days led to >90% gene transfer efficiency. Southern blot analysis confirmed that unrearranged proviral genomes integrated in chromosomal DNA. Protein extract immunoblot with HSVTK antisera revealed the presence of a 70-kDa protein consistent with the predicted size of an HSVTK-GFP fusion protein. Fluorescence microscopy and FACS analysis revealed that GFPTKfus-mediated fluorescence was nuclear localized and was 30-fold greater than that observed in a bicistronic HSVTK-GFP vector. Growth of cell lines expressing vGFPTKfus was significantly suppressed in the presence of ganciclovir. The DA3 mouse mammary carcinoma cell line was transduced with vGFPTKfus and implanted in syngeneic BALB/c mice. Preestablished tumors completely regressed in seven of nine mice treated with ganciclovir. Normal human peripheral blood T lymphocytes were transduced with vGFPTKfus and nucleus-restricted green fluorescence was observed. Sorting of green fluorescent lymphocytes allowed for selection of engineered cells. In conclusion, we demonstrate the utility of vGFPTKfus as a suicide/reporter transgene in tumor cells in vitro and in vivo. Furthermore, its potential use as an analytical and therapeutic tool targeting human T lymphocytes is shown.
编码单纯疱疹病毒胸苷激酶(HSVTK)的表达载体已广泛应用于细胞和基因治疗,在抗癌“自杀”疗法或过继性免疫治疗应用中的“自毁”转基因方面发挥作用。在这两种基因治疗应用中,都需要在基因工程细胞中可靠地检测HSVTK转基因的表达。对HSVTK蛋白进行直接荧光标记可能是解决办法。我们设计了一种逆转录载体,编码嵌合的GFP-HSVTK融合蛋白,它可作为双功能自杀和报告转基因。融合基因被整合到VSV G假型逆转录载体(vGFPTKfus)中,并产生了高滴度稳定的逆转录病毒生产细胞系(约3×10⁶逆转录颗粒/毫升)。以8的感染复数转导肿瘤细胞系3天,基因转移效率>90%。Southern印迹分析证实未重排的原病毒基因组整合到染色体DNA中。用HSVTK抗血清进行的蛋白质提取物免疫印迹显示存在一种70 kDa的蛋白质,与预测的HSVTK-GFP融合蛋白大小一致。荧光显微镜和流式细胞术分析显示,GFPTKfus介导的荧光定位于细胞核,比双顺反子HSVTK-GFP载体中观察到的荧光强30倍。在更昔洛韦存在的情况下,表达vGFPTKfus的细胞系生长受到显著抑制。用vGFPTKfus转导DA3小鼠乳腺癌细胞系,并将其植入同基因BALB/c小鼠体内。在用更昔洛韦治疗的9只小鼠中,有7只预先形成的肿瘤完全消退。用vGFPTKfus转导正常人外周血T淋巴细胞,观察到细胞核受限绿色荧光。对绿色荧光淋巴细胞进行分选可筛选出工程细胞。总之,我们证明了vGFPTKfus作为自杀/报告转基因在体外和体内肿瘤细胞中的实用性。此外,还显示了其作为靶向人类T淋巴细胞分析和治疗工具的潜在用途。