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首页> 外文期刊>Journal of Biotechnology >A bidirectional Tet-dependent promotor construct regulating the expression of E1A for tight control of oncolytic adenovirus replication
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A bidirectional Tet-dependent promotor construct regulating the expression of E1A for tight control of oncolytic adenovirus replication

机译:双向调控Tet依赖的启动子构建体,调控E1A的表达,以严格控制溶瘤腺病毒的复制

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Tight regulation of oncolytic adenoviruses (oAdV) represents an important requirement for their safe application. Here we describe a new doxycycline (Dox)-dependent oAdV with a bidirectional expression cassette, which drives the expression of the reverse tetracycline-controlled transactivator (rtTA(s)-M2) from a lung tumor-specific promoter and, in the opposite direction, the expression of the adenoviral E1A gene from a second generation TetO(7) sequence linked to an isolated TATA box. In H441 lung cancer cells, this oAdV showed a strictly Dox-dependent E1A expression, adenoviral replication, cell killing activity and a 450-fold induction of progeny virus production. The virus could be shut off again by withdrawal of Dox and, in contrast to a control oAdV expressing E1A directly from the SP-B promoter, did not replicate in non-target cells. However, the absolute values of virus production and the cell killing activity in the presence of the inducer were still reduced as compared to the control oAdV. The results demonstrate, for the first time, Dox-dependent oAdV replication from a single adenoviral vector genome. Future improvement of the Dox-dependent E1A regulation cassette should lead to the generation of an oAdV well suited to meet the demands for a highly regulated and efficient oncolytic virus for in vivo applications.
机译:溶瘤腺病毒(oAdV)的严格调控代表了其安全应用的重要要求。在这里,我们描述了一种新的强力霉素(Dox)依赖性的oAdV,具有双向表达盒,可从肺肿瘤特异性启动子向相反方向驱动反向四环素控制的反式激活因子(rtTA(s)-M2)的表达,从第二代TetO(7)序列与分离的TATA盒连接的腺病毒E1A基因的表达。在H441肺癌细胞中,该oAdV表现出严格的Dox依赖性E1A表达,腺病毒复制,细胞杀伤活性以及后代病毒产生的450倍诱导。可以通过撤回Dox再次关闭病毒,并且与直接从SP-B启动子表达E1A的对照oAdV相比,该病毒不会在非靶细胞中复制。然而,与对照oAdV相比,在诱导剂存在下病毒产生的绝对值和细胞杀伤活性仍然降低。结果首次证明了从单个腺病毒载体基因组复制的Dox依赖性oAdV。依赖Dox的E1A调控盒的未来改进将导致oAdV的产生,该蛋白非常适合满足体内应用对高度调控和高效溶瘤病毒的需求。

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