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An efficient pipeline for the generation and functional analysis of human BRCA2 variants of uncertain significance.

机译:用于不确定意义的人类BRCA2变异体的产生和功能分析的有效管道。

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摘要

The implementation of next-generation sequence analysis of disease-related genes has resulted in an increasing number of genetic variants with an unknown clinical significance. The functional analysis of these so-called "variants of uncertain significance" (VUS) is hampered by the tedious and time-consuming procedures required to generate and test specific sequence variants in genomic DNA. Here, we describe an efficient pipeline for the generation of gene variants in a full-length human gene, BRCA2, using a bacterial artificial chromosome. This method permits the rapid generation of intronic and exonic variants in a complete gene through the use of an exon-replacement strategy based on simple site-directed mutagenesis and an effective positive-negative selection system in E. coli. The functionality of variants can then be assessed through the use of functional assays, such as complementation of gene-deficient mouse-embryonic stem (mES) cells in the case of human BRCA2. Our methodology builds upon an earlier protocol and, through the introduction of a series of major innovations, now represents a practical proposition for the rapid analysis of BRCA2 variants and a blueprint for the analysis of other genes using similar approaches. This method enables rapid generation and reliable classification of VUS in disease-related genes, allowing informed clinical decision-making.
机译:疾病相关基因的下一代序列分析的实施导致越来越多的具有未知临床意义的遗传变异。这些所谓的“不确定重要性变体”(VUS)的功能分析受到在基因组DNA中生成和测试特定序列变体所需的繁琐且耗时的过程的阻碍。在这里,我们描述了使用细菌人工染色体在全长人基因BRCA2中产生基因变异的有效途径。通过使用基于简单定点诱变的外显子置换策略和有效的大肠杆菌正负选择系统,该方法可以通过完整的基因快速生成内含子和外显子变体。然后可以通过使用功能测定法来评估变体的功能,例如在人类BRCA2的情况下,对基因缺陷的小鼠胚胎干(mES)细胞进行补充。我们的方法基于较早的协议,并且通过引入一系列重大创新,现在代表了快速分析BRCA2变体的实用命题,以及使用相似方法分析其他基因的蓝图。这种方法可以快速生成疾病相关基因中的VUS并对其进行可靠的分类,从而可以进行明智的临床决策。

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