Gestational sleep apnea perturbations induce metabolic disorders by divergent epigenomic regulation

Author:

Cortese Rene1ORCID,Khalyfa Abdelnaby1ORCID,Bao Riyue23ORCID,Gozal David1ORCID

Affiliation:

1. Department of Child Health, Child Health Research Institute, School of Medicine, University of Missouri, Columbia, MO 65212, USA

2. Hillman Cancer Center, UPMC, Pittsburgh, PA 15232, USA

3. Department of Medicine, University of Pittsburgh, Pittsburgh, PA 15213, USA

Abstract

Aim: Late-gestational sleep fragmentation (LG-SF) and intermittent hypoxia (LG-IH), two hallmarks of obstructive sleep apnea, lead to metabolic dysfunction in the offspring. We investigated specific biological processes that are epigenetically regulated by LG-SF and LG-IH. Materials & methods: We analyzed DNA methylation profiles in offspring visceral white adipose tissues by MeDIP-chip followed by pathway analysis. Results: We detected 1187 differentially methylated loci (p < 0.01) between LG-SF and LG-IH. Epigenetically regulated genes in LG-SF offspring were associated with lipid and glucose metabolism, whereas those in LG-IH were related to inflammatory signaling and cell proliferation. Conclusion: While LG-SF and LG-IH will result in equivalent phenotypic alterations in offspring, each paradigm appears to operate through epigenetic regulation of different biological processes.

Funder

Sears Foundation

Publisher

Future Medicine Ltd

Subject

Cancer Research,Genetics

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