| Literature DB >> 32678018 |
Julia Romanowska1,2,3, Øystein A Haaland4, Astanand Jugessur4,5,6, Miriam Gjerdevik4,6, Zongli Xu7, Jack Taylor7, Allen J Wilcox7, Inge Jonassen8, Rolv T Lie4,5, Håkon K Gjessing4,5.
Abstract
BACKGROUND: Current technology allows rapid assessEntities:
Keywords: Case-parent triads; DNA methylation; Genome-wide data; Haplin; Integrative analysis; Parent-of-origin; Statistical interaction effect
Mesh:
Year: 2020 PMID: 32678018 PMCID: PMC7367265 DOI: 10.1186/s13148-020-00881-x
Source DB: PubMed Journal: Clin Epigenetics ISSN: 1868-7075 Impact factor: 6.551
Fig. 1Scheme of the choice of SNP–methylation pairs used in the analyses presented here. For each SNP (green circle), we detect all the CpGs within 50 kb and check which of those are in a promoter, gene, or enhancer region. Note that some of the CpGs can be part of more than one region type, while some have no annotation. Next, we summarize the DNAm values of all CpGs within each region and use this single value to create strata and search for gene–methylation (G ×Me) or parent-of-origin–methylation (PoO ×Me) interaction. For each SNP, we perform six analyses at most
Fig. 2Flowchart of the method for integrating DNA methylation information into genetic association analyses. RR relative risk, G ×Me gene–methylation interaction, PoO ×Me parent-of-origin–methylation interaction
The SNPs selected for the current analyses, along with the names of the nearest genes (if any), and the measures of association (relative risks (RR), 95% confidence intervals (CI), and p values; taken from Tables 1–3 in Ref. [24])
| rs12543318 | c | 0.31 | 1.51 | 1.31–1.75 | 4.46e −8 | CLO | |
| rs987525 | a | 0.19 | 1.85 | 1.63–2.10 | 1.47e −19 | CLP | |
| rs560426 | g | 0.44 | 1.24 | 1.10–1.41 | 3.91e −4 | CLP | |
| rs3758249 | t | 0.36 | 0.78 | 0.69–0.88 | 8.18e −5 | CLP | |
| rs642961 | a | 0.23 | 1.60 | 1.36–1.87 | 1.41e −8 | CLO | |
| rs7078160 | a | 0.17 | 1.33 | 1.15–1.53 | 1.04e −4 | CLP | |
| rs13041247 | c | 0.41 | 0.67 | 0.59–0.76 | 2.32e −9 | CLP | |
| rs227731 | g | 0.47 | 0.74 | 0.64–0.85 | 3.8e −5 | CPO | |
| rs742071 | t | 0.38 | 1.52 | 1.31–1.75 | 3.74e −8 | CLO | |
| rs8001641 | g | 0.54 | 0.79 | 0.70–0.90 | 2.05e −4 | CLP | |
| rs7590268 | g | 0.25 | 1.27 | 1.12–1.46 | 3.96e −4 | CLP | |
| rs1873147 | g | 0.27 | 1.31 | 1.13–1.53 | 5.82e −4 | CLO |
aThe minor allele and its frequency (MAF) for the Norwegian population were taken from Table 1 in the Appendix of Ref. [24]
bThe cleft subtype (CLO, CPO, or CLP) for which the association was the strongest
Availability of data for G ×Me and PoO ×Me analyses. We used genotypes and DNA methylation data and classified CpGs into one of gene, promoter, or enhancer classes. In each of those groups, we performed both G ×Me and PoO ×Me analyses, where at least one CpG was localized within 50 kb from the indicated SNP (gray shading; the number indicates how many CpGs were in each category)
Fig. 3Quantile–quantile plots of the interaction p values from the G ×Me analyses. The dashed lines represent the 95% confidence interval
Fig. 4G ×Me effect between rs12543318 at locus 8q21.3 and the methylation level of the CpG from the promoter region nearby. The x-axis groups the results into the unstratified dataset “all” and the results for each stratum: “1” denoting low methylation level, “2”—medium, and “3”—high methylation level. The minor and reference alleles are given for each group, along with their frequencies. The y-axis shows the relative risk on a log scale, with “c” denoting the child effect when only one minor allele is inherited (single dose) and “cdd” denoting the child effect when two such alleles are inherited (double dose)
Fig. 5G ×Me effect between rs3758249 in FOXE1 and the methylation level at the CpGs from the gene region. The x-axis groups the results into the unstratified dataset “all” and the results for each stratum: “1” denoting low methylation level, “2” — medium, and “3” — high methylation level. The minor and reference alleles are given for each group, along with their frequencies. The y-axis shows the relative risk on a log scale, with “c” denoting the child effect when only one minor allele is inherited (single dose) and “cdd” denoting the child effect when two such alleles are inherited (double dose)
Fig. 6Quantile–quantile plot of the G ×Me results from the analysis of 20 randomly selected SNPs in the CL/P dataset
Fig. 7Quantile–quantile plots of the interaction p values from the PoO ×Me analyses. The dashed lines represent the 95% confidence interval
Fig. 8PoO ×Me interaction between a parent-of-origin effect of rs227731 in NOG1 and the methylation level of the CpGs within a promoter region nearby. The x-axis groups the results into the unstratified dataset “all” and the results for each stratum: “1” denoting low methylation level, “2” — medium, and “3” — high methylation level. The minor and reference alleles are given for each group, along with their frequencies. The y-axis shows the relative risk on a log scale, with “cm_cf” denoting the parent-of-origin effect when only one minor allele is inherited (single dose) and “cdd” denoting the parent-of-origin effect when two such alleles are inherited (double dose)
Fig. 9Quantile–quantile plot of the p values from the PoO ×Me analysis using the top 20 SNPs with the lowest p values from the GWAS scan for PoO effects of the CLP dataset. The dashed lines represent the 95% confidence interval
Fig. 10Histograms of the averaged β values in the CL/P dataset; the red line indicates the median value