Comprehensive single-cell genome analysis at nucleotide resolution using the PTA Analysis Toolbox

Publication date

2023-09-13

Authors

Middelkamp, Sjors
Manders, Freek
Peci, Flavia
Van Roosmalen, Markus J.
González, Diego Montiel
Bertrums, Eline J.M.
van der Werf, Inge
Derks, Lucca L.M.
Groenen, Niels M.
Verheul, Mark

Editors

Advisors

Supervisors

Document Type

Article

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cc_by

Abstract

Detection of somatic mutations in single cells has been severely hampered by technical limitations of whole-genome amplification. Novel technologies including primary template-directed amplification (PTA) significantly improved the accuracy of single-cell whole-genome sequencing (WGS) but still generate hundreds of artifacts per amplification reaction. We developed a comprehensive bioinformatic workflow, called the PTA Analysis Toolbox (PTATO), to accurately detect single base substitutions, insertions-deletions (indels), and structural variants in PTA-based WGS data. PTATO includes a machine learning approach and filtering based on recurrence to distinguish PTA artifacts from true mutations with high sensitivity (up to 90%), outperforming existing bioinformatic approaches. Using PTATO, we demonstrate that hematopoietic stem cells of patients with Fanconi anemia, which cannot be analyzed using regular WGS, have normal somatic single base substitution burdens but increased numbers of deletions. Our results show that PTATO enables studying somatic mutagenesis in the genomes of single cells with unprecedented sensitivity and accuracy.

Keywords

cancer, Fanconi anemia, hematopoietic stem cells, mutational signatures, primary template-directed amplification, single-cell sequencing, somatic mutations, structural variants, whole-genome amplification, whole-genome sequencing, Biochemistry, Genetics and Molecular Biology (miscellaneous), Genetics

Citation

Middelkamp, S, Manders, F, Peci, F, van Roosmalen, M J, González, D M, Bertrums, E J M, van der Werf, I, Derks, L L M, Groenen, N M, Verheul, M, Trabut, L, Pleguezuelos-Manzano, C, Brandsma, A M, Antoniou, E, Reinhardt, D, Bierings, M, Belderbos, M E & van Boxtel, R 2023, 'Comprehensive single-cell genome analysis at nucleotide resolution using the PTA Analysis Toolbox', Cell genomics, vol. 3, no. 9, 100389. https://doi.org/10.1016/j.xgen.2023.100389