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Simultaneous sequencing of genetic and epigenetic bases in DNA

Authors :
Jens Füllgrabe
Walraj S. Gosal
Páidí Creed
Sidong Liu
Casper K. Lumby
David J. Morley
Tobias W. B. Ost
Albert J. Vilella
Shirong Yu
Helen Bignell
Philippa Burns
Tom Charlesworth
Beiyuan Fu
Howerd Fordham
Nicolas J. Harding
Olga Gandelman
Paula Golder
Christopher Hodson
Mengjie Li
Marjana Lila
Yang Liu
Joanne Mason
Jason Mellad
Jack M. Monahan
Oliver Nentwich
Alexandra Palmer
Michael Steward
Minna Taipale
Audrey Vandomme
Rita Santo San-Bento
Ankita Singhal
Julia Vivian
Natalia Wójtowicz
Nathan Williams
Nicolas J. Walker
Nicola C. H. Wong
Gary N. Yalloway
Joanna D. Holbrook
Shankar Balasubramanian
Source :
Nature Biotechnology.
Publication Year :
2023
Publisher :
Springer Science and Business Media LLC, 2023.

Abstract

DNA comprises molecular information stored in genetic and epigenetic bases, both of which are vital to our understanding of biology. Most DNA sequencing approaches address either genetics or epigenetics and thus capture incomplete information. Methods widely used to detect epigenetic DNA bases fail to capture common C-to-T mutations or distinguish 5-methylcytosine from 5-hydroxymethylcytosine. We present a single base-resolution sequencing methodology that sequences complete genetics and the two most common cytosine modifications in a single workflow. DNA is copied and bases are enzymatically converted. Coupled decoding of bases across the original and copy strand provides a phased digital readout. Methods are demonstrated on human genomic DNA and cell-free DNA from a blood sample of a patient with cancer. The approach is accurate, requires low DNA input and has a simple workflow and analysis pipeline. Simultaneous, phased reading of genetic and epigenetic bases provides a more complete picture of the information stored in genomes and has applications throughout biomedicine.

Details

ISSN :
15461696 and 10870156
Database :
OpenAIRE
Journal :
Nature Biotechnology
Accession number :
edsair.doi...........9d8005a9ad5fe3c2a23faf8b6338fb23
Full Text :
https://doi.org/10.1038/s41587-022-01652-0