Mono- and Biallelic Replication–Coupled Gene Editing Discriminates Dominant-Negative and Loss-of-Function Variants of DNA Mismatch Repair Genes

IF 3.4 3区 医学 Q1 PATHOLOGY Journal of Molecular Diagnostics Pub Date : 2024-06-24 DOI:10.1016/j.jmoldx.2024.05.011
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Abstract

Replication-coupled gene editing using locked nucleic acid–modified single-stranded DNA oligonucleotides (LMOs) can genetically engineer mammalian cells with high precision at single nucleotide resolution. Based on this method, oligonucleotide-directed mutation screening (ODMS) was developed to determine whether variants of uncertain clinical significance of DNA mismatch repair (MMR) genes can cause Lynch syndrome. In ODMS, the appearance of 6-thioguanine–resistant colonies upon introduction of the variant is indicative for defective MMR and hence pathogenicity. Whereas mouse embryonic stem cells (mESCs) hemizygous for MMR genes were used previously, we now show that ODMS can also be applied in wild-type mESCs carrying two functional alleles of each MMR gene. 6-Thioguanine resistance can result from two possible events: first, the mutation is present in only one allele, which is indicative for dominant-negative activity of the variant; and second, both alleles contain the planned modification, which is indicative for a regular loss-of-function variant. Thus, ODMS in wild-type mESCs can discriminate fully disruptive and dominant-negative MMR variants. The feasibility of biallelic targeting suggests that the efficiency of LMO-mediated gene targeting at a nonselectable locus may be enriched in cells that had undergone a simultaneous selectable LMO targeting event. This turned out to be the case and provided a protocol to improve recovery of LMO-mediated gene modification events.

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单复制和双复制耦合基因编辑可区分 DNA 错配修复基因的显性阴性变体和功能缺失变体。
使用锁定核酸修饰的单链寡脱氧核苷酸(LMO)进行复制耦合基因编辑,可以在单核苷酸分辨率下高精度地对哺乳动物细胞进行基因工程改造。基于这种方法,我们开发了寡核苷酸定向突变筛选(ODMS),以确定临床意义不确定的DNA错配修复(MMR)基因变异是否会导致林奇综合征。在 ODMS 中,引入变体后出现的 6-硫鸟嘌呤(6TG)抗性菌落表明 MMR 存在缺陷,因此具有致病性。以前使用的是DNA错配修复(MMR)基因半杂合子的小鼠胚胎干细胞(mESCs),而现在我们发现,ODMS也可以应用于携带每个MMR基因的两个功能等位基因的野生型mESCs。6TG抗性可能由两种情况造成:第一,突变只存在于一个等位基因中,这表明该变体具有显性阴性活性;第二,两个等位基因都含有计划修饰,这表明该变体具有常规功能缺失性。因此,野生型 mESC 中的 ODMS 可以区分完全破坏性和显性阴性 MMR 变异。双拷贝靶向的可行性表明,在同时经历了可选择性 LMO 靶向事件的细胞中,非选择性基因座上 LMO 介导的基因靶向效率可能会更高。事实证明了这一点,并为改善 LMO 介导的基因修饰事件的恢复提供了一种方案。
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来源期刊
CiteScore
8.10
自引率
2.40%
发文量
143
审稿时长
43 days
期刊介绍: The Journal of Molecular Diagnostics, the official publication of the Association for Molecular Pathology (AMP), co-owned by the American Society for Investigative Pathology (ASIP), seeks to publish high quality original papers on scientific advances in the translation and validation of molecular discoveries in medicine into the clinical diagnostic setting, and the description and application of technological advances in the field of molecular diagnostic medicine. The editors welcome for review articles that contain: novel discoveries or clinicopathologic correlations including studies in oncology, infectious diseases, inherited diseases, predisposition to disease, clinical informatics, or the description of polymorphisms linked to disease states or normal variations; the application of diagnostic methodologies in clinical trials; or the development of new or improved molecular methods which may be applied to diagnosis or monitoring of disease or disease predisposition.
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