Augmenting and directing long-range CRISPR-mediated activation in human cells

被引:0
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作者
Y. Esther Tak
Joy E. Horng
Nicholas T. Perry
Hayley T. Schultz
Sowmya Iyer
Qiuming Yao
Luli S. Zou
Martin J. Aryee
Luca Pinello
J. Keith Joung
机构
[1] Massachusetts General Hospital,Molecular Pathology Unit
[2] Massachusetts General Hospital,Center for Cancer Research
[3] Massachusetts General Hospital,Center for Computational and Integrative Biology
[4] Harvard Medical School,Department of Pathology
[5] Broad Institute of MIT and Harvard,Cell Circuits and Epigenomics Program
[6] Harvard T. H. Chan School of Public Health,Department of Biostatistics
来源
Nature Methods | 2021年 / 18卷
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摘要
Epigenetic editing is an emerging technology that uses artificial transcription factors (aTFs) to regulate expression of a target gene. Although human genes can be robustly upregulated by targeting aTFs to promoters, the activation induced by directing aTFs to distal transcriptional enhancers is substantially less robust and consistent. Here we show that long-range activation using CRISPR-based aTFs in human cells can be made more efficient and reliable by concurrently targeting an aTF to the target gene promoter. We used this strategy to direct target gene choice for enhancers capable of regulating more than one promoter and to achieve allele-selective activation of human genes by targeting aTFs to single-nucleotide polymorphisms embedded in distally located sequences. Our results broaden the potential applications of the epigenetic editing toolbox for research and therapeutics.
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页码:1075 / 1081
页数:6
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