DNA damage in macrophages drives immune autoreactivity via nuclear antigen presentation.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 41540279.
- Also identified by DOI 10.1038/s43587-025-01053-3 and PMC identifier 12920141.
- Licence recorded as CC BY-NC-ND.
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Abstract
Aging and DNA damage increase the risk of chronic inflammation and autoimmunity, yet the molecular underpinnings remain unclear. In this study, we uncover a DNA damage-driven mechanism in macrophages that triggers immune autoreactivity. Here, using Er1<sup>Lyz2/</sup><sup>-</sup> mice with a macrophage-specific DNA repair defect in ERCC1-XPF, we demonstrate that monocyte-derived macrophages accumulate DNA damage, activate the immune system, drive polyclonal T cell responses and generate antinuclear autoantibodies. Proteomic and immunopeptidomic analyses reveal a distinct major histocompatibility complex class II (MHC-II) antigen repertoire enriched in nuclear and ribosomal peptides, relying on autophagy for nuclear cargo delivery to MHC-II. Aged macrophages exhibit a similar lysosomal cargo profile, linking autophagy-driven nuclear antigen presentation to immune activation. Notably, inhibiting autophagy in Er1<sup>Lyz2/</sup><sup>-</sup> mice suppresses autoimmune features, pinpointing autophagy-facilitated nuclear antigen processing as a central driver of age-related autoimmunity. These findings establish DNA damage-induced autophagy in macrophages as a pivotal mechanism linking aging to autoimmunity, unveiling potential therapeutic targets to mitigate age-related immune dysregulation.
Medical subject headings
- Macrophages
- DNA Damage
- Antigen Presentation
- Autoimmunity
- Aging