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Translational control of human p53 expression in yeast mediated by 5′-UTR–ORF structural interaction

机译:人的翻译控制 5-UTR–ORF介导的酵母中p53表达 结构相互作用

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摘要

We have expressed human p53 cDNA in the yeast Saccharomyces cerevisiae and shown that the level of production and the length of the p53 protein depends on the presence of untranslated mRNA regions (UTRs). The expression of the ORF alone leads to a p53 protein of correct size (53 kDa) that accumulates to high levels, concomitantly with the presence of a small amount of a p40 protein (40 kDa). However, when either the entire 5′-UTR and a part of the 3′- or 5′-UTR alone is used, this leads to the production of small amounts of the 40 kDa truncated form only. The p40 protein corresponds to a truncated form of p53 at the C-terminal extremity since it reacts only with a monoclonal antibody recognising the N-terminal epitope. This effect on the amount and length of p53 protein had no correlation at the mRNA level, suggesting that translational control probably occurs through the 5′-UTR. We propose a model of structural interaction between this UTR and a part of the ORF mRNA for the regulation of p53 expression in this heterologous context.
机译:我们已经在啤酒酵母中表达了人p53 cDNA,并表明生产水平和p53蛋白的长度取决于未翻译的mRNA区域(UTRs)的存在。单独表达ORF会导致正确大小(53 kDa)的p53蛋白积累到高水平,并伴有少量p40蛋白(40 kDa)的存在。但是,当单独使用整个5'-UTR和一部分3'-UTR或5'-UTR时,这只会导致少量的40 kDa截短形式产生。由于p40蛋白仅与识别N端表位的单克隆抗体反应,因此在C端末端对应于p53的截短形式。对p53蛋白数量和长度的这种影响在mRNA水平上没有相关性,表明翻译控制可能是通过5'-UTR进行的。我们提出了这种UTR和ORF mRNA的一部分之间的结构相互作用模型,用于在这种异源环境中调节p53表达。

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