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一种大规模平行荧光分析方法,用于研究同义突变对表达的影响。

A Massively Parallel Fluorescence Assay to Characterize the Effects of Synonymous Mutations on Expression.

机构信息

Department of Genome Sciences, University of Washington, Seattle, Washington.

Howard Hughes Medical Institute, University of Washington, Seattle, Washington.

出版信息

Mol Cancer Res. 2017 Oct;15(10):1301-1307. doi: 10.1158/1541-7786.MCR-17-0245. Epub 2017 Jun 26.

Abstract

Although synonymous mutations can affect gene expression, they have generally not been considered in genomic studies that focus on mutations that increase the risk of cancer. However, mounting evidence implicates some synonymous mutations as driver mutations in cancer. Here, a massively parallel assay, based on cell sorting of a reporter containing a segment of p53 fused to GFP, was used to measure the effects of nearly all synonymous mutations in exon 6 of In this reporter context, several mutations within the exon caused strong expression changes including mutations that may cause potential gain or loss of function. Further analysis indicates that these effects are largely attributed to errors in splicing, including exon skipping, intron inclusion, and exon truncation, resulting from mutations both at exon-intron junctions and within the body of the exon. These mutations are found at extremely low frequencies in healthy populations and are enriched a few-fold in cancer genomes, suggesting that some of them may be driver mutations in This assay provides a general framework to identify previously unknown detrimental synonymous mutations in cancer genes. Using a massively parallel assay, this study demonstrates that synonymous mutations in the gene affect protein expression, largely through their impact on splicing. http://mcr.aacrjournals.org/content/molcanres/15/10/1301/F1.large.jpg .

摘要

虽然同义突变可能会影响基因表达,但在专注于增加癌症风险的突变的基因组研究中,通常不会考虑这些突变。然而,越来越多的证据表明,一些同义突变是癌症中的驱动突变。在这里,基于 GFP 融合的 p53 片段的报告细胞分选的大规模平行测定,用于测量外显子 6 中几乎所有同义突变的影响。在这种报告者背景下,外显子内的几个突变引起了强烈的表达变化,包括可能导致潜在获得或功能丧失的突变。进一步的分析表明,这些影响主要归因于剪接错误,包括外显子跳跃、内含子包含和外显子截断,这是由于外显子-内含子交界处和外显子体内的突变引起的。这些突变在外显子中非常低的频率出现在健康人群中,并且在癌症基因组中富集几倍,表明其中一些突变可能是驱动突变。该测定为鉴定癌症基因中以前未知的有害同义突变提供了一个通用框架。该研究使用大规模平行测定,证明 基因中的同义突变会影响蛋白质表达,主要是通过对剪接的影响。

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