ArCH: improving the performance of clonal hematopoiesis variant calling and interpretation

Author:

Chan Irenaeus C C1ORCID,Panchot Alex1,Schmidt Evelyn1,McNulty Samantha2,Wiley Brian J1,Liu Jie1ORCID,Turner Kimberly1,Moukarzel Lea3,Wong Wendy S W4,Tran Duc1,Beeler J Scott1,Batchi-Bouyou Armel Landry1,Machiela Mitchell J4ORCID,Karyadi Danielle M4,Krajacich Benjamin J5,Zhao Junhua5,Kruglyak Semyon5,Lajoie Bryan5,Levy Shawn5,Patel Minal3,Kantoff Philip W3,Mason Christopher E6,Link Daniel C1,Druley Todd E7,Stopsack Konrad H89,Bolton Kelly L1

Affiliation:

1. Department of Medicine, Washington University School of Medicine , St. Louis, MO 63110, United States

2. Invitae Corporation , San Francisco, CA 94103, United States

3. Department of Medicine, Memorial Sloan Kettering Cancer Center , New York City, NY 10065, United States

4. National Cancer Institute Division of Cancer Epidemiology and Genetics, , Bethesda, MD 20814, United States

5. Department of Genomic Applications, Element BioSciences , San Diego, CA 92121, United States

6. Department of Physiology and Biophysics, Weill Cornell Medical College , New York City, NY 10065, United States

7. Mission Bio , San Francisco, CA 94080, United States

8. Department of Epidemiology, Harvard T. H. Chan School of Public Health , Boston, MA 02115, United States

9. Clinical and Translational Epidemiology Unit, Massachusetts General Hospital and Harvard Medical School , Boston, MA 02130, United States

Abstract

Abstract Motivation The acquisition of somatic mutations in hematopoietic stem and progenitor stem cells with resultant clonal expansion, termed clonal hematopoiesis (CH), is associated with increased risk of hematologic malignancies and other adverse outcomes. CH is generally present at low allelic fractions, but clonal expansion and acquisition of additional mutations leads to hematologic cancers in a small proportion of individuals. With high depth and high sensitivity sequencing, CH can be detected in most adults and its clonal trajectory mapped over time. However, accurate CH variant calling is challenging due to the difficulty in distinguishing low frequency CH mutations from sequencing artifacts. The lack of well-validated bioinformatic pipelines for CH calling may contribute to lack of reproducibility in studies of CH. Results Here, we developed ArCH, an Artifact filtering Clonal Hematopoiesis variant calling pipeline for detecting single nucleotide variants and short insertions/deletions by combining the output of four variant calling tools and filtering based on variant characteristics and sequencing error rate estimation. ArCH is an end-to-end cloud-based pipeline optimized to accept a variety of inputs with customizable parameters adaptable to multiple sequencing technologies, research questions, and datasets. Using deep targeted sequencing data generated from six acute myeloid leukemia patient tumor: normal dilutions, 31 blood samples with orthogonal validation, and 26 blood samples with technical replicates, we show that ArCH improves the sensitivity and positive predictive value of CH variant detection at low allele frequencies compared to standard application of commonly used variant calling approaches. Availability and implementation The code for this workflow is available at: https://github.com/kbolton-lab/ArCH.

Funder

Edward P. Evans Foundation

American Society of Hematology

Publisher

Oxford University Press (OUP)

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