Accurate genomic variant detection in single cells with primary template-directed amplification

Author:

Gonzalez-Pena Veronica,Natarajan SivaramanORCID,Xia Yuntao,Klein DavidORCID,Carter Robert,Pang Yakun,Shaner Bridget,Annu Kavya,Putnam DanielORCID,Chen WenanORCID,Connelly JonORCID,Pruett-Miller ShondraORCID,Chen Xiang,Easton JohnORCID,Gawad CharlesORCID

Abstract

Improvements in whole genome amplification (WGA) would enable new types of basic and applied biomedical research, including studies of intratissue genetic diversity that require more accurate single-cell genotyping. Here, we present primary template-directed amplification (PTA), an isothermal WGA method that reproducibly captures >95% of the genomes of single cells in a more uniform and accurate manner than existing approaches, resulting in significantly improved variant calling sensitivity and precision. To illustrate the types of studies that are enabled by PTA, we developed direct measurement of environmental mutagenicity (DMEM), a tool for mapping genome-wide interactions of mutagens with single living human cells at base-pair resolution. In addition, we utilized PTA for genome-wide off-target indel and structural variant detection in cells that had undergone CRISPR-mediated genome editing, establishing the feasibility for performing single-cell evaluations of biopsies from edited tissues. The improved precision and accuracy of variant detection with PTA overcomes the current limitations of accurate WGA, which is the major obstacle to studying genetic diversity and evolution at cellular resolution.

Funder

HHS | National Institutes of Health

Burroughs Wellcome Fund

ALSAC

Hyundai Foundation for Pediatric Reseaerch

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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