A meta-analysis on age-associated changes in blood DNA methylation: results from an original analysis pipeline for Infinium 450k data

Aging is characterized by a profound remodeling of the epigenetic architecture in terms of DNA methylation patterns. To date the most effective tool to study genome wide DNA methylation changes is Infinium HumanMethylation450 BeadChip (Infinium 450k). Despite the wealth of tools for Infinium 450k an...

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Veröffentlicht in:Aging (Albany, NY.) NY.), 2015-02, Vol.7 (2), p.97-109
Hauptverfasser: Bacalini, Maria Giulia, Boattini, Alessio, Gentilini, Davide, Giampieri, Enrico, Pirazzini, Chiara, Giuliani, Cristina, Fontanesi, Elisa, Remondini, Daniel, Capri, Miriam, Del Rio, Alberto, Luiselli, Donata, Vitale, Giovanni, Mari, Daniela, Castellani, Gastone, Di Blasio, Anna Maria, Salvioli, Stefano, Franceschi, Claudio, Garagnani, Paolo
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Sprache:eng
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Zusammenfassung:Aging is characterized by a profound remodeling of the epigenetic architecture in terms of DNA methylation patterns. To date the most effective tool to study genome wide DNA methylation changes is Infinium HumanMethylation450 BeadChip (Infinium 450k). Despite the wealth of tools for Infinium 450k analysis, the identification of the most biologically relevant DNA methylation changes is still challenging. Here we propose an analytical pipeline to select differentially methylated regions (DMRs), tailored on microarray architecture, which is highly effective in highlighting biologically relevant results. The pipeline groups microarray probes on the basis of their localization respect to CpG islands and genic sequences and, depending on probes density, identifies DMRs through a single-probe or a region-centric approach that considers the concomitant variation of multiple adjacent CpG probes. We successfully applied this analytical pipeline on 3 independent Infinium 450k datasets that investigated age-associated changes in blood DNA methylation. We provide a consensus list of genes that systematically vary in DNA methylation levels from 0 to 100 years and that have a potentially relevant role in the aging process.
ISSN:1945-4589
1945-4589
DOI:10.18632/aging.100718