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CRISPR/Cas9 基因组编辑构建 MEN1 综合征新型同基因人源细胞模型。

A Novel Isogenic Human Cell-Based System for MEN1 Syndrome Generated by CRISPR/Cas9 Genome Editing.

机构信息

Endocrinology Research Centre, 115478 Moscow, Russia.

Vavilov Institute of General Genetics, Russian Academy of Sciences, 119991 Moscow, Russia.

出版信息

Int J Mol Sci. 2021 Nov 8;22(21):12054. doi: 10.3390/ijms222112054.

Abstract

Multiple endocrine neoplasia type 1 (MEN1) is a rare tumor syndrome that manifests differently among various patients. Despite the mutations in the gene that commonly predispose tumor development, there are no obvious phenotype-genotype correlations. The existing animal and in vitro models do not allow for studies of the molecular genetics of the disease in a human-specific context. We aimed to create a new human cell-based model, which would consider the variability in genetic or environmental factors that cause the complexity of MEN1 syndrome. Here, we generated patient-specific induced pluripotent stem cell lines carrying the mutation c.1252G>T, D418Y in the gene. To reduce the genetically determined variability of the existing cellular models, we created an isogenic cell system by modifying the target allele through CRISPR/Cas9 editing with great specificity and efficiency. The high potential of these cell lines to differentiate into the endodermal lineage in defined conditions ensures the next steps in the development of more specialized cells that are commonly affected in MEN1 patients, such as parathyroid or pancreatic islet cells. We anticipate that this isogenic system will be broadly useful to comprehensively study gene function across different contexts, including in vitro modeling of MEN1 syndrome.

摘要

多发性内分泌腺瘤病 1 型(MEN1)是一种罕见的肿瘤综合征,在不同患者中的表现形式不同。尽管 基因的突变通常容易导致肿瘤的发展,但没有明显的表型-基因型相关性。现有的动物和体外模型不能在人类特有的背景下研究该疾病的分子遗传学。我们旨在创建一种新的基于人类细胞的模型,该模型将考虑导致 MEN1 综合征复杂性的遗传或环境因素的可变性。在这里,我们生成了携带突变 c.1252G>T、D418Y 的患者特异性诱导多能干细胞系 基因。为了降低现有细胞模型中遗传决定的可变性,我们通过使用 CRISPR/Cas9 编辑以高度特异性和高效率修饰靶等位基因来创建同基因细胞系统。这些细胞系在特定条件下分化为内胚层谱系的高潜力确保了向更专门的细胞(如甲状旁腺或胰岛细胞)的进一步分化,这些细胞通常受 MEN1 患者的影响。我们预计这个同基因系统将广泛用于全面研究不同背景下的 基因功能,包括 MEN1 综合征的体外建模。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17fc/8584395/4de4fad12b82/ijms-22-12054-g001.jpg

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