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Mutations to nonsense codons in human genetic disease: implications for gene therapy by nonsense suppressor tRNAs

机译:人类遗传疾病中无意义密码子的突变:无意义抑制性tRNA对基因治疗的意义

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Nonsense suppressor tRNAs have been suggested as potential agents for human somatic gene therapy. Recent work from this laboratory has described significant effects of 3′ codon context on the efficiency of human nonsense suppressors. A rapid increase in the number of reports of human diseases caused by nonsense codons, prompted us to determine how the spectrum of mutation to either UAG, UAA or UGA codons and their respective 3′ contexts, might effect the efficiency of human suppressor tRNAs employed for purposes of gene therapy. This paper presents a survey of 179 events of mutations to nonsense codons which cause human germline or somatic disease. The analysis revealed a ratio of approximately 1:2:3 for mutation to UAA, UAG and UGA respectively. This pattern is similar, but not identical, to that of naturally occurring stop codons. The 3′ contexts of new mutations to stop were also analysed. Once again, the pattern was similar to the contexts surrounding natural termination signals. These results imply there will be little difference in the sensitivity of nonsense mutations and natural stop codons to suppression by nonsense suppressor tRNAs. Analysis of the codons altered by nonsense mutations suggests that efforts to design human UAG suppressor tRNAs charged with Trp, Gin, and Glu; UAA suppressors charged with Gin and Glu, and UGA suppressors which insert Arg, would be an essential step in the development of suppressor tRNAs as agents of human somatic gene therapy.
机译:无意义的抑制性tRNA已被建议作为人类体细胞基因治疗的潜在药物。该实验室的最新工作描述了3'密码子背景对人类无意义抑制物效率的重大影响。由无意义密码子引起的人类疾病的报告数量迅速增加,促使我们确定UAG,UAA或UGA密码子的突变谱及其各自的3'上下文如何影响人类抑制性tRNA的效率基因治疗的目的。本文对导致人种系或体细胞疾病的无义密码子突变的179个事件进行了调查。分析表明突变分别为UAA,UAG和UGA的比率约为1:2:3。该模式与自然发生的终止密码子相似但不相同。还分析了终止新突变的3'背景。再次,该模式类似于围绕自然终止信号的上下文。这些结果表明,无义突变和天然终止密码子对无义抑制子tRNA抑制的敏感性几乎没有差异。对无义突变改变的密码子的分析表明,努力设计带有Trp,Gin和Glu的人UAG抑制性tRNA;装有Gin和Glu的UAA抑制剂以及插入Arg的UGA抑制剂将是开发抑制性tRNA作为人类体细胞基因治疗药物的重要步骤。

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