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Legionella pneumophila Outer Membrane Vesicles: Isolation and Analysis of Their Pro-inflammatory Potential on Macrophages
Published on: February 22, 2017
Pneumolysin Is Responsible for Differential Gene Expression and Modifications in the Epigenetic Landscape of Primary
Joby Cole1,2,3,4, Adrienn Angyal1, Richard D Emes5,6
1Department of Infection, Immunity and Cardiovascular Diseases, University of Sheffield, Sheffield, United Kingdom.
Abstract:
Epigenetic modifications regulate gene expression in the host response to a diverse range of pathogens. The extent and consequences of epigenetic modification during macrophage responses to Streptococcus pneumoniae, and the role of pneumolysin, a key Streptococcus pneumoniae virulence factor, in influencing these responses, are currently unknown. To investigate this, we infected human monocyte derived macrophages (MDMs) with Streptococcus pneumoniae and addressed whether pneumolysin altered the epigenetic landscape and the associated acute macrophage transcriptional response using a combined transcriptomic and proteomic approach. Transcriptomic analysis identified 503 genes that were differentially expressed in a pneumolysin-dependent manner in these samples. Pathway analysis highlighted the involvement of transcriptional responses to core innate responses to pneumococci including modules associated with metabolic pathways activated in response to infection, oxidative stress responses and NFκB, NOD-like receptor and TNF signalling pathways. Quantitative proteomic analysis confirmed pneumolysin-regulated protein expression, early after bacterial challenge, in representative transcriptional modules associated with innate immune responses. In parallel, quantitative mass spectrometry identified global changes in the relative abundance of histone post translational modifications (PTMs) upon pneumococcal challenge. We identified an increase in the relative abundance of H3K4me1, H4K16ac and a decrease in H3K9me2 and H3K79me2 in a PLY-dependent fashion. We confirmed that pneumolysin blunted early transcriptional responses involving TNF-α and IL-6 expression. Vorinostat, a histone deacetylase inhibitor, similarly downregulated TNF-α production, reprising the pattern observed with pneumolysin. In conclusion, widespread changes in the macrophage transcriptional response are regulated by pneumolysin and are associated with global changes in histone PTMs. Modulating histone PTMs can reverse pneumolysin-associated transcriptional changes influencing innate immune responses, suggesting that epigenetic modification by pneumolysin plays a role in dampening the innate responses to pneumococci.
Insights
Pneumolysin from Streptococcus pneumoniae alters macrophage epigenetic modifications and gene expression. This virulence factor dampens innate immune responses, but histone modification can reverse these effects.
Area of Science:
- Immunology
- Epigenetics
- Microbiology
Background:
- Epigenetic modifications are crucial for host defense against pathogens.
- The role of epigenetic changes in macrophage response to Streptococcus pneumoniae and the influence of pneumolysin are not well understood.
Purpose of the Study:
- To investigate how pneumolysin affects the epigenetic landscape and transcriptional response of macrophages during Streptococcus pneumoniae infection.
- To determine the role of pneumolysin in modulating macrophage-mediated innate immunity.
Main Methods:
- Human monocyte-derived macrophages (MDMs) were infected with Streptococcus pneumoniae.
- Combined transcriptomic and proteomic analyses were employed to assess gene and protein expression.
- Quantitative mass spectrometry was used to analyze global histone post-translational modifications (PTMs).
Main Results:
- Pneumolysin-dependent differential gene expression was observed in 503 genes, involving innate immune pathways.
- Global changes in histone PTMs, including increased H3K4me1 and H4K16ac, and decreased H3K9me2 and H3K79me2, were identified in a pneumolysin-dependent manner.
- Pneumolysin was found to blunt early transcriptional responses of TNF-α and IL-6, a pattern reversed by the histone deacetylase inhibitor, Vorinostat.
Conclusions:
- Pneumolysin significantly alters the macrophage transcriptional response and associated histone PTMs during Streptococcus pneumoniae infection.
- Epigenetic modifications induced by pneumolysin play a role in dampening the innate immune response to pneumococci.
- Targeting histone PTMs offers a potential strategy to counteract pneumolysin-mediated suppression of innate immunity.

