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Histone modification cross talk between a host and pathogen.

Created on 25 Aug 2026

Authors

Shantinique S Miller, Joel A Hrit, Scott B Rothbart, Evan J Worden

Published in

Proceedings of the National Academy of Sciences of the United States of America. Volume 123. Issue 35. Pages e2611585123. Epub Aug 24, 2026.

Abstract

Bacterial pathogens modulate host cell physiology by secreting effector proteins that rewire host signaling pathways. A subset of these effectors directly modify host chromatin to reprogram gene expression and promote infection. While these enzymes are thought to function autonomously, the extent to which the host epigenetic landscape regulates their activity remains largely unknown. RomA and its homolog LegAs4 are Set domain-containing lysine methyltransferases from Legionella pneumophila that methylate histone H3 at lysine 14 (H3K14) to suppress host immune responses and enhance intracellular bacterial replication. Here, we demonstrate that RomA activity is constrained by preexisting host histone posttranslational modifications (PTMs) through multiple layers of histone PTM cross talk. RomA selectively binds and methylates unmodified histone H3 tails and is inhibited by histone PTMs associated with active transcription, including H3K4 trimethylation, H3K4 acetylation, and H4K12 mono-methylation. We identify both cis- and trans-histone regulatory mechanisms, whereby unmodified H3K4 and H3K14 must reside on the same H3 tail to support RomA activity, while H4K12me1 inhibits RomA across the nucleosome. Notably, cryo-electron microscopy analysis and biochemical data reveal that RomA does not engage the nucleosome acidic patch but instead associates flexibly through histone tails. Together, these findings establish the host epigenetic regulation of bacterial effectors as a fundamental and previously unrecognized layer of host-pathogen interactions.

PMID:
42636370
Bibliographic data and abstract were imported from PubMed on 25 Aug 2026.

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