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The complexity of screening PMS2 in DNA isolated from formalin-fixed paraffin-embedded material

机译:从福尔马林固定石蜡包埋材料中分离的DNA中筛选PMS2的复杂性

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Germline variants in the DNA mismatch repair (MMR) gene PMS2 cause 1-14% of all Lynch Syndrome cancers. Correct variant analysis of PMS2 is complex due to the presence of multiple pseudogenes and the occurrence of gene conversion. The analysis complexity increases in highly fragmented DNA from formalin-fixed paraffin-embedded (FFPE) tissue. Here we describe a reliable approach to detect true PMS2 variants in fragmented DNA. A custom NGS panel designed for FFPE tissue was used targeting four MMR genes, POLE and POLD1. Amplicon design for PMS2 was based on the position of paralogous sequence variants (PSVs) that distinguish PMS2 from its pseudogenes. PMS2 variants in exons 1-11 can be correctly curated based on this information. For exons 12-15 this is less reliable as these undergo gene conversion. Using this method, we screened PMS2 variants in 125 MMR-deficient tumors. Of the 125 tumors tested, six were unexplained MMR-deficient tumors with solitary PMS2 protein expression loss. In these six tumors two unclassified variants (class 3) and five variants likely affecting function (class 4/5) were detected in PMS2. One microsatellite unstable tumor with positive staining for all MMR proteins was found to carry a frameshift PMS2 variant (class 5). No class 4 or class 5 PMS2 variants were detected in tumors with other patterns of MMR protein expression loss.
机译:DNA错配修复(MMR)基因PMS2中的种系变体导致1-14%的林奇综合征癌症。由于存在多种伪原和基因转化的发生,PMS2的正确变体分析是复杂的。分析复杂性从福尔马林固定的石蜡包埋(FFPE)组织的高碎裂的DNA增加。在这里,我们描述了一种可靠的方法来检测碎片DNA中真正的PMS2变体。使用针对FFPE组织设计的自定义NGS面板靶向四个MMR基因,杆和POLD1。 PMS2的扩增子设计基于与其伪原因区分PMS2的旁晕序列变体(PSV)的位置。外显子1-11中的PMS2变体可以根据这些信息正确策划。对于外显子12-15,这不太可靠,因为这些经历基因转化率。使用这种方法,我们筛选了125 mMR缺乏肿瘤中的PMS2变体。在测试的125个肿瘤中,六种是具有孤立PMS2蛋白表达损失的未解释的MMR缺陷肿瘤。在这六种肿瘤中,在PMS2中检测到两个未分类的变体(3级)和可能影响功能(4/5类)的五种变体。发现一种微卫星不稳定的肿瘤,用于所有MMR蛋白的阳性染色携带架构PMS2变体(5级)。在肿瘤中没有4类或5类PMS2变体,其具有其他模式的MMR蛋白表达损失。

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