A blood- and brain-based EWAS of smoking

A Aleksandra D. Chybowska E Elena Bernabeu P Paul Yousefi M Matthew Suderman R Robert F. Hillary R Richard Clark L Louise MacGillivray L Lee Murphy S Sarah E. Harris J Janie Corley A Archie Campbell T Tara L. Spires-Jones D Daniel L. McCartney S Simon R. Cox J Jackie F. Price K Kathryn L. Evans R Riccardo E. Marioni

Abstract

Abstract DNA methylation offers an objective method to assess the impact of smoking. In this work, we conduct a Bayesian EWAS of smoking pack years ( n  = 17,865, ~850k sites, Illumina EPIC array) and extend it by analysing whole genome data of smokers and non-smokers from Generation Scotland ( n  = 46, ~4–21 million sites via TWIST and Oxford Nanopore sequencing). We develop mCigarette, an epigenetic biomarker of smoking, and test it in two British cohorts. Results of brain- and blood-based EWAS (n brain =14, n blood  = 882, >450k sites, Illumina arrays) reveal several loci with near-perfect discrimination of smoking status, but which do not overlap across tissues. Furthermore, we perform a GWAS of epigenetic smoking, identifying several smoking-related loci. Overall, we improve smoking-related biomarker accuracy and enhance the understanding of the effects of smoking by integrating DNA methylation data from multiple tissues and cohorts.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 04, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (17)

A

Aleksandra D. Chybowska

E

Elena Bernabeu

P

Paul Yousefi

M

Matthew Suderman

R

Robert F. Hillary

R

Richard Clark

L

Louise MacGillivray

L

Lee Murphy

S

Sarah E. Harris

J

Janie Corley

A

Archie Campbell

T

Tara L. Spires-Jones

D

Daniel L. McCartney

S

Simon R. Cox

J

Jackie F. Price

K

Kathryn L. Evans

R

Riccardo E. Marioni