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Pipeline Olympics: continuable benchmarking of computational workflows for DNA methylation sequencing data against an experimental gold standard

delete2025-10-28
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OA
AI
Y
Yu‐Yu Lin
K
Kersten Breuer
D
Dieter Weichenhan
P
Pascal Lafrenz
A
Antonella Sarnataro
A
Agata Wilk
M
Maryna Chepeleva
O
Oliver Mücke
M
Maximilian Schönung
F
Franziska Petermann
P
Philip Kensche
L
Lena Weiser
F
Frank Thommen
G
Gideon Giacomelli
K
Karl Nordstroem
E
Edahí González‐Avalos
A
Angelika Merkel
B
Bustamante, Jacinta
J
Jonas Fischer
S
Stephen Krämer
M
Murat Iskar
S
Stephan Wolf
I
Ivo Buchhalter
M
Manel Esteller
S
Sven Twardziok
M
Marc Zapatka
V
Volker Hovestadt
Y
Yang, Fengyuan
M
Marcel H. Schulz
S
Steve Hoffmann
C
Clarissa Gerhäuser
J
Jörn Walter
M
Mark Hartmann
D
Daniel B. Lipka
Y
Yassen Assenov
C
Christoph Bock
C
Christoph Plass
R
Réka Tóth *
P
Pavlo Lutsik *
DOI:10.1093/nar/gkaf970delete
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Abstract

Abstract

En 中文
DNA methylation is a widely studied epigenetic mark and a powerful biomarker of cell type, age, environmental exposures, and disease. Whole-genome sequencing following selective conversion of unmethylated cytosines into thymines via bisulfite treatment or enzymatic methods remains the reference method for DNA methylation profiling genome-wide. While numerous software tools facilitate processing of DNA methylation sequencing reads, a comprehensive benchmarking study has been lacking. In this study, we systematically compared complete computational workflows for processing DNA methylation sequencing data using a dedicated benchmarking dataset generated with five whole-genome profiling protocols. As an evaluation reference, we employed accurate locus-specific measurements from our previous benchmark of targeted DNA methylation assays. Based on this experimental gold-standard assessment and multiple performance metrics, we identified workflows that consistently demonstrated superior performance and revealed major workflow development trends. To ensure the long-term utility of our benchmark, we implemented an interactive workflow execution and data presentation platform, adaptable to user-defined criteria and readily expandable to future software.
Keywords:
LIBRARY PREPARATION
LOW-INPUT
CANCER
METHYLOME
DYNAMICS
PROMOTER
DISEASE
MAPS
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Journal

Nucleic Acids Research cover
Nucleic Acids Research
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13.1
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3.6W
Citations:
29.0W

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L
luxembourg institute of health
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139
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Ruprecht Karls University Heidelberg
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University of Augsburg
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guardant health, inc
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National Center for Tumor Diseases
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German Cancer Research Center (DKFZ)
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Saarland University
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ciber - centro de investigacion biomedica en red
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Helmholtz Association
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ku leuven
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Pompeu Fabra University
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Max Planck Society
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Humboldt University of Berlin
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