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KaryoTap Enables Aneuploidy Detection in Thousands of Single Human Cells. | LitMetric

AI Article Synopsis

  • Investigating chromosomal instability and aneuploidy is crucial for understanding how tumors develop and creating better diagnostic and treatment methods.
  • The new method, KaryoTap, combines targeted DNA sequencing with advanced computational tools to efficiently detect chromosomal gains, losses, and neutral variants across thousands of single cells.
  • KaryoTap shows high accuracy in identifying chromosomal changes and has the potential to enhance research on aneuploidy in both tumor and normal cells, enabling functional screening with CRISPR technology.

Article Abstract

Investigating chromosomal instability and aneuploidy within tumors is essential for understanding tumorigenesis and developing diagnostic and therapeutic strategies. Single-cell DNA sequencing technologies have enabled such analyses, revealing aneuploidies specific to individual cells within the same tumor. However, it has been difficult to scale the throughput of these methods to detect rare aneuploidies while maintaining high sensitivity. To overcome this deficit, we developed KaryoTap, a method combining custom targeted DNA sequencing panels for the Tapestri platform with a computational framework to enable detection of chromosome- and chromosome arm-scale aneuploidy (gains or losses) and copy number neutral loss of heterozygosity in all human chromosomes across thousands of single cells simultaneously. KaryoTap allows detecting gains and losses with an average accuracy of 83% for arm events and 91% for chromosome events. Importantly, together with chromosomal copy number, our system allows us to detect barcodes and gRNAs integrated into the cells' genome, thus enabling pooled CRISPR- or ORF-based functional screens in single cells. As a proof of principle, we performed a small screen to expand the chromosomes that can be targeted by our recently described CRISPR-based KaryoCreate system for engineering aneuploidy in human cells. KaryoTap will prove a powerful and flexible approach for the study of aneuploidy and chromosomal instability in both tumors and normal tissues.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11463636PMC
http://dx.doi.org/10.1101/2023.09.08.555746DOI Listing

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