Rare genetic variants underlie outlying levels of DNA methylation and gene-expression

Author:

Chundru V Kartik12ORCID,Marioni Riccardo E3,Prendergast James G D4,Lin Tian1,Beveridge Allan J5,Martin Nicholas G6,Montgomery Grant W1,Hume David A7,Deary Ian J8,Visscher Peter M1,Wray Naomi R19,McRae Allan F1ORCID

Affiliation:

1. The University of Queensland Institute for Molecular Bioscience, , Brisbane, QLD 4072 , Australia

2. Wellcome Sanger Institute , Hinxton CB10 1RQ , UK

3. The University of Edinburgh Centre for Genomic and Experimental Medicine, Institute of Genetics and Cancer, , Edinburgh EH4 2XU , UK

4. The University of Edinburgh The Roslin Institute, , Midlothian EH25 9RG , UK

5. The University of Glasgow Glasgow Polyomics, Wolfson Wohl Cancer Research Centre, , Glasgow G61 1QH , UK

6. QIMR Berghofer Medical Research Institute , Brisbane, QLD 4006 , Australia

7. The University of Queensland Mater Research Institute, , Brisbane, QLD 4102 , Australia

8. The University of Edinburgh Lothian Birth Cohorts, Department of Psychology, , Edinburgh EH8 9JZ , UK

9. The University of Queensland Queensland Brain Institute, , Brisbane, QLD 4072 , Australia

Abstract

Abstract Testing the effect of rare variants on phenotypic variation is difficult due to the need for extremely large cohorts to identify associated variants given expected effect sizes. An alternative approach is to investigate the effect of rare genetic variants on DNA methylation (DNAm) as effect sizes are expected to be larger for molecular traits compared with complex traits. Here, we investigate DNAm in healthy ageing populations—the Lothian Birth Cohorts of 1921 and 1936—and identify both transient and stable outlying DNAm levels across the genome. We find an enrichment of rare genetic single nucleotide polymorphisms (SNPs) within 1 kb of DNAm sites in individuals with stable outlying DNAm, implying genetic control of this extreme variation. Using a family-based cohort, the Brisbane Systems Genetics Study, we observed increased sharing of DNAm outliers among more closely related individuals, consistent with these outliers being driven by rare genetic variation. We demonstrated that outlying DNAm levels have a functional consequence on gene expression levels, with extreme levels of DNAm being associated with gene expression levels toward the tails of the population distribution. This study demonstrates the role of rare SNPs in the phenotypic variation of DNAm and the effect of extreme levels of DNAm on gene expression.

Funder

NHMRC

Australian Research Council

Medical Research Council

Wellcome Trust

Scottish Government

Biotechnology and Biological Sciences Research Council

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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