A validation of Illumina EPIC array system with bisulfite-based amplicon sequencing

Author:

Noble Alexandra J.1,Pearson John F.2,Boden Joseph M.3,Horwood L. John3,Gemmell Neil J.4,Kennedy Martin A.2,Osborne Amy J.1

Affiliation:

1. School of Biological Sciences, University of Canterbury, Christchurch, New Zealand

2. Department of Pathology and Biomedical Sciences, University of Otago, Christchurch, New Zealand

3. Department of Psychological Medicine, University of Otago, Christchurch, New Zealand

4. Department of Anatomy, Univeristy of Otago, Dunedin, New Zealand

Abstract

The Illumina Infinium® MethylationEPIC BeadChip system (hereafter EPIC array) is considered to be the current gold standard detection method for assessing DNA methylation at the genome-wide level. EPIC arrays are often used for hypothesis generation or pilot studies, the natural conclusion to which is to validate methylation candidates and expand these in a larger cohort, in a targeted manner. As such, an accurate smaller-scale, targeted technique, that generates data at the individual CpG level that is equivalent to the EPIC array, is needed. Here, we tested an alternative DNA methylation detection technique, known as bisulfite-based amplicon sequencing (BSAS), to determine its ability to validate CpG sites detected in EPIC array studies. BSAS was able to detect differential DNA methylation at CpG sites to a degree which correlates highly with the EPIC array system at some loci. However, BSAS correlated less well with EPIC array data in some instances, and most notably, when the magnitude of change via EPIC array was greater than 5%. Therefore, our data suggests that BSAS can be used to validate EPIC array data, but each locus must be compared on an individual basis, before being taken forward into large scale screening. Further, BSAS does offer advantages compared to the probe-based EPIC array; BSAS amplifies a region of the genome (∼500 bp) around a CpG of interest, allowing analyses of other CpGs in the region that may not be present on the EPIC array, aiding discovery of novel CpG sites and differentially methylated regions of interest. We conclude that BSAS offers a valid investigative tool for specific regions of the genome that are currently not contained on the array system.

Funder

University of Otago Research

The Carney Centre for Pharmacogenomics

The Health Research Council of New Zealand

The Canterbury Medical Research Foundation

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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