Detection of CRISPR-mediated genome modifications through altered methylation patterns of CpG islands

被引:3
作者
Farris, M. Heath [1 ]
Texter, Pamela A. [1 ]
Mora, Agustin A. [1 ]
Wiles, Michael, V [2 ]
Mac Garrigle, Ellen F. [1 ]
Klaus, Sybil A. [1 ]
Rosfjord, Kristine [1 ]
机构
[1] Mitre Corp, 7515 Colshire Dr, Mclean, VA 22102 USA
[2] Jackson Lab, Technol Evaluat & Dev, 600 Main St, Bar Harbor, ME 04609 USA
关键词
CRISPR genome editing; Homology-directed repair; Non-homologous end-joining; Epigenetic modification; CpG island; Methylation variance; Statistical variance detection; DE-NOVO METHYLATION; DNA METHYLATION; GENE DELIVERY; EFFICIENT; KNOCKOUT; MICE;
D O I
10.1186/s12864-020-07233-2
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
BackgroundThe development and application of CRISPR technologies for the modification of the genome are rapidly expanding. Advances in the field describe new CRISPR components that are strategically engineered to improve the precision and reliability of CRISPR editing within the genome sequence. Genome modification using induced genome breaks that are targeted and mediated by CRISPR components leverage cellular mechanisms for repair like homology directed repair (HDR) to incorporate genomic edits with increased precision.ResultsIn this report, we describe the gain of methylation at typically hypomethylated CpG island (CGI) locations affected by the CRISPR-mediated incorporation of donor DNA using HDR mechanisms. With characterization of CpG methylation patterns using whole genome bisulfite sequencing, these CGI methylation disruptions trace the insertion of the donor DNA during the genomic edit. These insertions mediated by homology-directed recombination disrupt the generational methylation pattern stability of the edited CGI within the cells and their cellular lineage within the animal strain, persisting across generations. Our approach describes a statistically based workflow for indicating locations of modified CGIs and provides a mechanism for evaluating the directed modification of the methylome of the affected CGI at the CpG-level.ConclusionsWith advances in genome modification technology comes the need to detect the level and persistence of methylation change that modifications to the genomic sequence impose upon the collaterally edited methylome. Any modification of the methylome of somatic or germline cells could have implications for gene regulation mechanisms governed by the methylation patterns of CGI regions in the application of therapeutic edits of more sensitively regulated genomic regions. The method described here locates the directed modification of the mouse epigenome that persists over generations. While this observance would require supporting molecular observations such as direct sequence changes or gene expression changes, the observation of epigenetic modification provides an indicator that intentionally directed genomic edits can lead to collateral, unintentional epigenomic changes post modification with generational persistence.
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页数:22
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