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CRISPR-dCas9 mediated TET1 targeting for selective DNA demethylation at <i>BRCA1</i> promoter

Oncotarget · 2016 · Vol. 7(29) · pp. 46545–46556
Samrat Roy ChoudhuryYi CuiKatarzyna LubeckaBarbara StefañskaJoseph Irudayaraj

Abstract

DNA hypermethylation at the promoter of tumour-suppressor genes is tightly correlated with their transcriptional repression and recognized as the hallmark of majority of cancers. Epigenetic silencing of tumour suppressor genes impairs their cellular functions and activates a cascade of events driving cell transformation and cancer progression. Here, we examine site-specific and spatiotemporal alteration in DNA methylation at a target region in BRCA1 gene promoter, a model tumour suppressor gene. We have developed a programmable CRISPR-Cas9 based demethylase tool containing the deactivated Cas9 (dCas9) fused to the catalytic domain (CD) of Ten-Eleven Translocation (TET) dioxygenase1 (TET1CD). The fusion protein selectively demethylates targeted regions within BRCA1 promoter as directed by the designed single-guide RNAs (sgRNA), leading to the transcriptional up-regulation of the gene. We also noticed the increment in 5-hydroxymethylation content (5-hmC) at the target DNA site undergoing the most profound demethylation. It confirms the catalytic activity of TET1 in TET1-dCas9 fusion proteins-mediated demethylation at these target sequences. The modular design of the fusion constructs presented here allows for the selective substitution of other chromatin or DNA modifying enzymes and for loci-specific targeting to uncover epigenetic regulatory pathways at gene promoters and other selected genomic regions.

Epigenetics and DNA MethylationCRISPR and Genetic EngineeringGenetics, Aging, and Longevity in Model OrganismsBiologyDNA methylationDNA demethylationEpigeneticsDemethylaseCas9PromoterChromatinGeneCRISPR

MeSH terms

HeLa CellsHumansMixed Function OxygenasesPromoter Regions, GeneticProto-Oncogene ProteinsCpG IslandsDNA MethylationGenes, BRCA1Catalytic DomainMCF-7 CellsCRISPR-Cas Systems

Funding

  • National Science Foundation
  • W. M. Keck Foundation
  • Purdue University
  • Indiana Clinical and Translational Sciences Institute
  • National Institutes of Health
  • Purdue Women’s Global Health Institute, Purdue University
  • National Center for Advancing Translational Sciences
Citations
349
FWCI
18.10
field-weighted impact
References
50
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99%
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References
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JNCI Journal of the National Cancer Institute · 2000 · 1,215 citations
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Nature Neuroscience · 2004 · 6,109 citations
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