A CRISPR/Cas9-based method for targeted DNA methylation enables cancer initiation in B lymphocytes

Shota Katayama, Koichi Shiraishi, Naoki Gorai, Masao Andou
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引用次数: 2

Abstract

Targeted DNA methylation is important for understanding transcriptional modulation and epigenetic diseases. Although CRISPR-Cas9 has potential for this purpose, it has not yet been successfully used to efficiently introduce DNA methylation and induce epigenetic diseases. We herein developed a new system that enables the replacement of an unmethylated promoter with a methylated promoter through microhomology-mediated end joining-based knock-in. We successfully introduced an approximately 100% DNA methylation ratio at the cancer-associated gene SP3 in HEK293 cells. Moreover, engineered SP3 promoter hypermethylation led to transcriptional suppression in human B lymphocytes and induced B-cell lymphoma. Our system provides a promising framework for targeted DNA methylation and cancer initiation through epimutations.

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一种基于CRISPR/ cas9的靶向DNA甲基化方法能够在B淋巴细胞中引发癌症
靶向DNA甲基化对于理解转录调控和表观遗传疾病是重要的。尽管CRISPR-Cas9具有实现这一目的的潜力,但它尚未成功地用于有效引入DNA甲基化和诱导表观遗传疾病。我们在此开发了一种新的系统,可以通过微同源介导的末端连接敲入,将未甲基化的启动子替换为甲基化的启动子。我们成功地在HEK293细胞中引入了大约100%的癌症相关基因SP3的DNA甲基化率。此外,工程化的SP3启动子超甲基化导致人B淋巴细胞的转录抑制和诱导B细胞淋巴瘤。我们的系统提供了一个有希望的框架靶向DNA甲基化和癌症起始通过上皮化。
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