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一种经校准的基于细胞的功能测定法,辅助 MLH1 DNA 错配修复基因突变的分类。

A calibrated cell-based functional assay to aid classification of MLH1 DNA mismatch repair gene variants.

机构信息

Center for Molecular Oncology, UConn Health, Farmington, Connecticut, USA.

Department of Genetics and Genome Sciences, UConn Health, Farmington, Connecticut, USA.

出版信息

Hum Mutat. 2022 Dec;43(12):2295-2307. doi: 10.1002/humu.24462. Epub 2022 Sep 12.

Abstract

Functional assays provide important evidence for classifying the disease significance of germline variants in DNA mismatch repair genes. Numerous laboratories, including our own, have developed functional assays to study mismatch repair gene variants. However, previous assays are limited due to the model system employed, the manner of gene expression, or the environment in which function is assessed. Here, we developed a human cell-based approach for testing the function of variants of uncertain significance (VUS) in the MLH1 gene. Using clustered regularly interspaced short palindromic repeats gene editing, we knocked in MLH1 VUS into the endogenous MLH1 loci in human embryonic stem cells. We examined their impact on RNA and protein, including their ability to prevent microsatellite instability and instigate a DNA damage response. A statistical clustering analysis determined the range of functions associated with known pathogenic or benign variants, and linear regression was performed using existing odds in favor of pathogenicity scores for these control variants to calibrate our functional assay results. By converting the functional outputs into a single odds in favor of pathogenicity score, variant classification expert panels can use these results to readily reassess these VUS. Ultimately, this information will guide proper diagnosis and disease management for suspected Lynch syndrome patients.

摘要

功能检测为鉴定 DNA 错配修复基因种系变异的疾病意义提供了重要证据。包括我们实验室在内的许多实验室已经开发了功能检测方法来研究错配修复基因变异。然而,由于所采用的模型系统、基因表达方式或评估功能的环境,以前的检测方法存在局限性。在这里,我们开发了一种基于人细胞的方法来检测 MLH1 基因中意义不明的变异(VUS)的功能。使用簇状规律间隔短回文重复基因编辑,我们将 MLH1 VUS 敲入人胚胎干细胞中的内源性 MLH1 基因座。我们检测了它们对 RNA 和蛋白质的影响,包括它们预防微卫星不稳定和引发 DNA 损伤反应的能力。统计聚类分析确定了与已知致病性或良性变异相关的功能范围,并使用现有的有利于致病性评分的比值比,对这些对照变异进行线性回归,以校准我们的功能检测结果。通过将功能输出转化为单一有利于致病性评分的比值比,变异分类专家小组可以使用这些结果来重新评估这些 VUS。最终,这些信息将指导疑似林奇综合征患者的正确诊断和疾病管理。

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