Related Experiment Video
Updated: Mar 14, 2026

Isolation and Cultivation of Neural Progenitors Followed by Chromatin-Immunoprecipitation of Histone 3 Lysine 79 Dimethylation Mark
Published on: January 26, 2018
Neonatal monocytes exhibit a unique histone modification landscape
Jennifer R Bermick1, Nathalie J Lambrecht1, Aaron D denDekker2
1Department of Pediatrics, Division of Neonatal-Perinatal Medicine, University of Michigan Medical Center, 1540 E. Medical Center Drive, C.S. Mott Children's Hospital Room 8-621, Ann Arbor, MI 48109 USA.
Insights
Neonatal immune cells have distinct epigenetic modifications, including lower activating histone marks on key immune genes, contributing to their vulnerability to infections. This epigenetic state differs significantly from adults.
Area of Science:
- Immunology
- Epigenetics
- Neonatal Health
Background:
- Neonates exhibit reduced pro-inflammatory cytokine expression and impaired pathogen clearance, increasing infection susceptibility.
- The regulatory factors governing neonatal immune responses remain poorly understood.
- Epigenetic mechanisms, such as histone modifications, influence gene transcription and immune cell function but are understudied in neonates.
Purpose of the Study:
- To investigate the role of histone modifications in neonatal immune cell function.
- To compare the epigenetic landscape of neonatal and adult immune cells.
Main Methods:
- Chromatin immunoprecipitation (ChIP) performed on mononuclear cells from 45 healthy neonates.
- Chromatin immunoprecipitation with massively parallel DNA sequencing (ChIP-seq) to analyze histone modification landscapes (H3K4me3, H3K9me3, H3K27me3, H3K4me1, H3K27ac, H3K36me3) in neonatal and adult CD14+ monocytes.
Main Results:
- Activating H3K4me3 increased on pro-inflammatory cytokine promoters (IL1B, IL6, IL12B, TNF) as gestation approached term.
- Preterm neonates showed less accessible promoters compared to term neonates, indicated by no change in repressive H3K27me3.
- Monocytes transitioned from a poised enhancer mark (H3K4me1) to an activating mark (H3K4me3) from neonate to adult.
- Decreased H3K4me3 abundance at neonatal monocyte gene promoters (CCR2, CD300C, ILF2, IL1B, TNF) correlated with reduced gene expression.
Conclusions:
- Neonatal immune cells possess a unique epigenetic state distinct from adults.
- This epigenetic state contributes to neonatal-specific immune responses and heightened vulnerability to infections.
Background:
Neonates have dampened expression of pro-inflammatory cytokines and difficulty clearing pathogens. This makes them uniquely susceptible to infections, but the factors regulating neonatal-specific immune responses are poorly understood. Epigenetics, including histone modifications, can activate or silence gene transcription by modulating chromatin structure and stability without affecting the DNA sequence itself and are potentially modifiable. Histone modifications are known to regulate immune cell differentiation and function in adults but have not been well studied in neonates.
Results:
To elucidate the role of histone modifications in neonatal immune function, we performed chromatin immunoprecipitation on mononuclear cells from 45 healthy neonates (gestational ages 23-40 weeks). As gestation approached term, there was increased activating H3K4me3 on the pro-inflammatory IL1B, IL6, IL12B, and TNF cytokine promoters (p < 0.01) with no change in repressive H3K27me3, suggesting that these promoters in preterm neonates are less open and accessible to transcription factors than in term neonates. Chromatin immunoprecipitation with massively parallel DNA sequencing (ChIP-seq) was then performed to establish the H3K4me3, H3K9me3, H3K27me3, H3K4me1, H3K27ac, and H3K36me3 landscapes in neonatal and adult CD14+ monocytes. As development progressed from neonate to adult, monocytes lost the poised enhancer mark H3K4me1 and gained the activating mark H3K4me3, without a change in additional histone modifications. This decreased H3K4me3 abundance at immunologically important neonatal monocyte gene promoters, including CCR2, CD300C, ILF2, IL1B, and TNF was associated with reduced gene expression.
Conclusions:
These results provide evidence that neonatal immune cells exist in an epigenetic state that is distinctly different from adults and that this state contributes to neonatal-specific immune responses that leaves them particularly vulnerable to infections.
Related Concept Videos
Histone Modification
Histone Modification
Acetylation
The enzyme histone acetyltransferase adds acetyl group to the histones. Another enzyme, histone...
Chromatin Modification in iPS Cells
Compact chromatin makes reprogramming difficult. Enzymes, such as histone demethylases and acetyltransferases, are often added during reprogramming to loosen the chromatin, making the DNA more accessible to transcription factors. Molecules that inhibit histone...
Histone Variants at the Centromere
Spreading of Chromatin Modifications
Writers
The writer...
Inheritance of Chromatin Structures

