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使用表达内源性野生型BRCA1的细胞来确定BRCA1突变对同源重组的影响。

Identifying the effects of BRCA1 mutations on homologous recombination using cells that express endogenous wild-type BRCA1.

作者信息

Parvin Jeffrey, Chiba Natsuko, Ransburgh Derek

机构信息

Department of Biomedical Informatics, The Ohio State University, USA.

出版信息

J Vis Exp. 2011 Feb 17(48):2468. doi: 10.3791/2468.

Abstract

The functional analysis of missense mutations can be complicated by the presence in the cell of the endogenous protein. Structure-function analyses of the BRCA1 have been complicated by the lack of a robust assay for the full length BRCA1 protein and the difficulties inherent in working with cell lines that express hypomorphic BRCA1 protein. We developed a system whereby the endogenous BRCA1 protein in a cell was acutely depleted by RNAi targeting the 3'-UTR of the BRCA1 mRNA and replaced by co-transfecting a plasmid expressing a BRCA1 variant. One advantage of this procedure is that the acute silencing of BRCA1 and simultaneous replacement allow the cells to grow without secondary mutations or adaptations that might arise over time to compensate for the loss of BRCA1 function. This depletion and add-back procedure was done in a HeLa-derived cell line that was readily assayed for homologous recombination activity. The homologous recombination assay is based on a previously published method whereby a recombination substrate is integrated into the genome (Figure 1). This recombination substrate has the rare-cutting I-SceI restriction enzyme site inside an inactive GFP allele, and downstream is a second inactive GFP allele. Transfection of the plasmid that expresses I-SceI results in a double-stranded break, which may be repaired by homologous recombination, and if homologous recombination does repair the break it creates an active GFP allele that is readily scored by flow cytometry for GFP protein expression. Depletion of endogenous BRCA1 resulted in an 8-10-fold reduction in homologous recombination activity, and add-back of wild-type plasmid fully restored homologous recombination function. When specific point mutants of full length BRCA1 were expressed from co-transfected plasmids, the effect of the specific missense mutant could be scored. As an example, the expression of the BRCA1(M18T) protein, a variant of unknown clinical significance, was expressed in these cells, it failed to restore BRCA1-dependent homologous recombination. By contrast, expression of another variant, also of unknown significance, BRCA1(I21V) fully restored BRCA1-dependent homologous recombination function. This strategy of testing the function of BRCA1 missense mutations has been applied to another biological system assaying for centrosome function (Kais et al, unpublished observations). Overall, this approach is suitable for the analysis of missense mutants in any gene that must be analyzed recessively.

摘要

错义突变的功能分析可能会因细胞中内源性蛋白质的存在而变得复杂。由于缺乏针对全长BRCA1蛋白的可靠检测方法,以及在处理表达低功能BRCA1蛋白的细胞系时存在固有的困难,BRCA1的结构-功能分析一直很复杂。我们开发了一种系统,通过靶向BRCA1 mRNA的3'-UTR的RNAi使细胞中的内源性BRCA1蛋白急性缺失,并通过共转染表达BRCA1变体的质粒来替代。该方法的一个优点是,BRCA1的急性沉默和同时替代使细胞能够生长,而不会出现随着时间推移可能出现的二次突变或适应性变化来补偿BRCA1功能的丧失。这种缺失和回补过程是在一个源自HeLa的细胞系中进行的,该细胞系易于检测同源重组活性。同源重组检测基于先前发表的一种方法,即重组底物整合到基因组中(图1)。该重组底物在一个无活性的GFP等位基因内有稀有切割的I-SceI限制性酶切位点,下游是第二个无活性的GFP等位基因。表达I-SceI的质粒转染会导致双链断裂,这可能通过同源重组进行修复,如果同源重组确实修复了断裂,它会产生一个有活性的GFP等位基因,通过流式细胞术对GFP蛋白表达进行评分很容易检测到。内源性BRCA1的缺失导致同源重组活性降低8-10倍,野生型质粒的回补完全恢复了同源重组功能。当从共转染的质粒中表达全长BRCA1的特定位点突变体时,可以对特定错义突变体的效果进行评分。例如,BRCA1(M18T)蛋白(一种临床意义未知的变体)在这些细胞中表达时,未能恢复BRCA1依赖的同源重组。相比之下,另一种同样意义未知的变体BRCA1(I21V)的表达完全恢复了BRCA1依赖的同源重组功能。这种测试BRCA1错义突变功能的策略已应用于另一个检测中心体功能的生物系统(Kais等人,未发表的观察结果)。总体而言,这种方法适用于分析任何必须隐性分析的基因中的错义突变体。

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