Kühnel Florian, Zender Lars, Wirth Thomas, Schulte Bernd, Trautwein Christian, Manns Michael, Kubicka Stefan
Department of Gastroenterology, Hepatology and Endocrinology, Medical School Hannover, Carl Neuberg Str. 1, 30625 Hannover, Germany.
Cancer Gene Ther. 2004 Jan;11(1):28-40. doi: 10.1038/sj.cgt.7700632.
Adenoviral gene expression that is repressed by p53 in nontransformed cells could provide a tumor-specific gene therapy approach for a large subset of tumors. Adenoviral infection in vivo induces stabilization of p53, which can be utilized for a strategy that includes p53-dependent expression of a transcriptional repressor and a target promoter,which is highly susceptible for transcriptional repression. Therefore, we constructed different versions of CMV-promoters (CMVgal) with binding sites for GAL4-DBD and investigated 11 GAL4-DBD fusion proteins to elucidate the most effective repressor domain to silence CMVgal activity. The transcriptional repressor GAL4-KRAB-A under control of a p53-dependent promoter facilitates strong CMVgal-mediated gene expression specifically in p53 mutant cells by a double-recombinant adenoviral vector (Ad-RGCdR). GAL4-KRAB-A mediates strong transcriptional repression of Ad-RGCdR in p53 wild-type cells, which could be further enhanced by preactivation of p53-signalling following low-dose chemotherapy prior to adenoviral infection. By utilizing p53 signalling involved in chemotherapy and adenoviral infection, more than 99% of Ad-RGCdR gene expression could be repressed in p53 wild-type cells. Controlled gene expression from CMVgal promoters by transcriptional repression utilizing functional p53 signalling thus provides a very effective tool for tumor-specific adenoviral gene therapy.
在未转化细胞中被p53抑制的腺病毒基因表达可为大部分肿瘤提供一种肿瘤特异性基因治疗方法。体内腺病毒感染可诱导p53稳定,这可用于一种策略,该策略包括转录抑制因子的p53依赖性表达和一个对转录抑制高度敏感的靶启动子。因此,我们构建了带有GAL4-DBD结合位点的不同版本的CMV启动子(CMVgal),并研究了11种GAL4-DBD融合蛋白,以阐明沉默CMVgal活性最有效的抑制结构域。在p53依赖性启动子控制下的转录抑制因子GAL4-KRAB-A通过双重组腺病毒载体(Ad-RGCdR)促进p53突变细胞中强烈的CMVgal介导的基因表达。GAL4-KRAB-A在p53野生型细胞中介导Ad-RGCdR的强转录抑制,在腺病毒感染前进行低剂量化疗使p53信号预激活可进一步增强这种抑制。通过利用化疗和腺病毒感染中涉及的p53信号,在p53野生型细胞中可抑制超过99%的Ad-RGCdR基因表达。利用功能性p53信号通过转录抑制来控制CMVgal启动子的基因表达,从而为肿瘤特异性腺病毒基因治疗提供了一种非常有效的工具。
Cancer Res. 2000-8-15
Nucleic Acids Res. 2009-7