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Updated: Mar 10, 2026

Correlating Gene-specific DNA Methylation Changes with Expression and Transcriptional Activity of Astrocytic KCNJ10 Kir4.1
Published on: September 26, 2015
DNA methylation levels associated with race and childhood asthma severity
Marcia A Chan1, Christina E Ciaccio2, Nicole M Gigliotti1
1a Division of Allergy, Asthma and Immunology , Children's Mercy Hospital , Kansas City , MO , USA.
Insights
Global DNA methylation in children with asthma is linked to race and socioeconomic status. Low-income, African American children with persistent asthma showed significantly higher methylation levels.
Area of Science:
- Environmental Epigenetics
- Pediatric Asthma Research
- Public Health
Background:
- Childhood asthma is a global health concern, disproportionately affecting disadvantaged populations.
- Indoor environmental exposures in substandard housing may influence asthma through epigenetic changes.
- Socioeconomic status, genetics, and environment are key factors in asthma incidence and severity.
Purpose of the Study:
- To investigate the association between global DNA methylation levels and socioeconomic status, asthma severity, and race/ethnicity in children.
- To explore potential epigenetic mechanisms underlying asthma disparities.
Main Methods:
- Global DNA methylation was measured in peripheral blood samples from children with asthma.
- Participants were enrolled in the Kansas City Safe and Healthy Homes Program with specific income and residency criteria.
- DNA methylation was quantified using an immunoassay measuring the percentage of 5-methylcytosine.
Main Results:
- African American children exhibited higher global DNA methylation levels compared to other racial/ethnic groups.
- A significant interaction was observed between socioeconomic status, asthma severity, and race/ethnicity.
- Low-income, African American children with persistent asthma showed markedly elevated global DNA methylation levels.
Conclusions:
- Global DNA methylation levels are significantly influenced by an interaction of asthma severity, race/ethnicity, and socioeconomic status.
- These findings highlight potential epigenetic contributions to asthma disparities in vulnerable populations.
Objective:
Asthma is a common chronic childhood disease worldwide. Socioeconomic status, genetic predisposition and environmental factors contribute to its incidence and severity. A disproportionate number of children with asthma are economically disadvantaged and live in substandard housing with potential indoor environmental exposures such as cockroaches, dust mites, rodents and molds. These exposures may manifest through epigenetic mechanisms that can lead to changes in relevant gene expression. We examined the association of global DNA methylation levels with socioeconomic status, asthma severity and race/ethnicity.
Methods:
We measured global DNA methylation in peripheral blood of children with asthma enrolled in the Kansas City Safe and Healthy Homes Program. Inclusion criteria included residing in the same home for a minimum of 4 days per week and total family income of less than 80% of the Kansas City median family income. DNA methylation levels were quantified by an immunoassay that assessed the percentage of 5-methylcytosine.
Results:
Our results indicate that overall, African American children had higher levels of global DNA methylation than children of other races/ethnicities (p = 0.029). This difference was more pronounced when socioeconomic status and asthma severity were coupled with race/ethnicity (p = 0.042) where low-income, African American children with persistent asthma had significantly elevated methylation levels relative to other races/ethnicities in the same context (p = 0.006, Hedges g = 1.14).
Conclusion:
Our study demonstrates a significant interaction effect among global DNA methylation levels, asthma severity, race/ethnicity, and socioeconomic status.
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