Genome-wide screening identifies DNA methylation sites that regulate the blood proteome

Author:

Nikpay Majid1ORCID,Ravati Sepehr2ORCID,McPherson Ruth13ORCID

Affiliation:

1. Omics and Biomedical Analysis Core Facility, University of Ottawa Heart Institute, Ottawa, K1Y 4W7, Canada

2. Plastenor Technologies Company, Montreal, H2P 2G4, Canada

3. Atherogenomics Laboratory, University of Ottawa Heart Institute, Ottawa, K1Y 4W7, Canada

Abstract

Background: Identifying DNA methylation sites that regulate the blood proteome is important for biomedical purposes. Materials & methods: Here the authors performed a genome-wide search to find DNA methylation sites that impact proteins. Results: The authors identified 165 methylation sites associated with 138 proteins. The authors noted hotspot genomic regions that control the levels of several proteins. For example, methylation of the ABO locus impacted 37 proteins and contributed to cardiometabolic comorbidities, including the severity of SARS-CoV-2 infection. The authors made these findings publicly available as a Unix software that identifies methylation sites that cause disease and reveals the underlying proteins. The authors underlined the software application by showing that components of innate immunity contribute to systolic blood pressure. Conclusion: This study provides a catalog of DNA methylation sites that regulate the proteome, and the results are available as freeware for biological insight.

Funder

Canadian Institutes of Health Research

Publisher

Future Medicine Ltd

Subject

Cancer Research,Genetics

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