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Induction of wild-type p53 activity in human cancer cells by ribozymes that repair mutant p53 transcripts

机译:修复突变体p53转录物的核酶诱导人癌细胞中野生型p53活性

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摘要

Several groups have attempted to develop gene therapy strategies to treat cancer via introduction of the wild-type (wt) p53 cDNA into cancer cells. Unfortunately, these approaches do not result in regulated expression of the p53 gene and do not reduce expression of the mutant p53 that is overexpressed in cancerous cells. These shortcomings may greatly limit the utility of this gene replacement approach. We describe an alternative strategy with trans-splicing ribozymes that can simultaneously reduce mutant p53 expression and restore wt p53 activity in various human cancers. The ribozyme accomplished such conversion by repairing defective p53 mRNAs with high fidelity and specificity. The corrected transcripts were translated to produce functional p53 that can transactivate p53-responsive promoters and down-modulate expression of the multidrug resistance (MDR1) gene promoter. The level of wt p53 activity generated was significant, resulting in a 23-fold induction of a p53-responsive promoter and a 3-fold reduction in MDR1 promoter expression in transfected cancer cells. Once efficient delivery systems are developed, this strategy should prove useful for making human cancers more responsive to p53 activity and more sensitive to chemotherapeutic agents.
机译:几个研究小组试图通过将野生型(wt)p53 cDNA引入癌细胞来开发基因治疗策略来治疗癌症。不幸的是,这些方法不会导致p53基因的表达受调控,也不会降低在癌细胞中过表达的突变型p53的表达。这些缺点可能会大大限制这种基因替代方法的实用性。我们描述了一种与转拼核酶的替代策略,该策略可以同时减少突变型p53表达并恢复各种人类癌症中的wt p53活性。核酶通过以高保真度和特异性修复有缺陷的p53 mRNA实现了这种转化。翻译正确的转录本以产生功能性p53,该功能性p53可以激活p53响应性启动子并下调多药耐药性(MDR1)基因启动子的表达。产生的wt p53活性水平显着,导致p53反应性启动子的23倍诱导和转染癌细胞中MDR1启动子表达的3倍降低。一旦开发出有效的递送系统,该策略应证明对使人类癌症对p53活性更敏感,对化学治疗剂更敏感有用。

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