Wentao Gao, Yangfeng Hou, Jiaxing Liu, Cheng Kiu Ho, Alfred Sze-Lok Cheng, Herman Waldmann, Bin Zhou, James Y W Lau, Kathy O Lui
CD8+ T cells promote atherosclerosis by inhibiting VSMC Notch; CD8+CD44+CD122+ Tregs restore Notch, preserve VSMC quiescence, and stabilize plaques. The CD8+ Treg-Notch axis is a novel and promising therapeutic target against atherosclerosis.
BACKGROUND: CD8+ (cluster of differentiation 8) T cells contribute to atherosclerosis, but how they affect VSMCs (vascular smooth muscle cells) is unclear. The protective role of CD8+ regulatory T cells (Tregs) and in vivo induction strategies also remain undefined.
METHODS: We analyzed human atherosclerosis single-cell RNA sequencing to map immune-VSMC communication. Atherosclerosis was modeled in adeno-associated virus-Pcsk9 or Apoe-/- mice. CD8+ T-cell activity was modulated by adoptive transfer of CD45.1+CD8+ T cells into syngeneic CD45.2+ Apoe-/- recipients (gain-of-function) or nonlytic anti-CD8α antibodies (loss-of-function). VSMC-specific Notch loss was tested in Myh11CreER;Rbpjfl/fl;Apoe-/- mice. Ligand-receptor interactions were perturbed with neutralizing antibodies. Lineage tracing was performed using Myh11CreER;RosaYFP;Apoe-/- mice. CD8+CD44+CD122+ Tregs were adoptively transferred to assess therapeutic potential. Transcription factor chromatin immunoprecipitation sequencing (ChIP-seq) was used to define VSMC gene regulation.
RESULTS: CD8+ T cells are the dominant immune partners communicating with VSMCs via CD8α in human plaques. Transferred CD8+ T cells localize to the media and inhibit VSMC Notch signaling. VSMC Notch ablation accelerates atherosclerosis, enhancing VSMC proliferation, inflammation, and phenotypic switching. CD8α blockade induces CD8+CD44+CD122+ Tregs, which, partly via IL-10 (interleukin-10), activate VSMC Notch, suppress proliferation, and limit VSMC-to-macrophage transdifferentiation. These Tregs express higher Notch ligands than conventional CD8+ T cells and decline with a high-cholesterol diet. Their adoptive transfer slows atherosclerosis progression. Blocking Notch1-Jag2 (Jagged 2), or synergistically blocking DLL1/4 (delta-like ligand 1/4) and Jag1/2, negates Treg protection. Mechanistically, Notch-RBPJ (recombination signal binding protein for immunoglobulin kappa J region) activates Hes1, which suppresses Klf4 and Rel via Hes1/EZH2-mediated trimethylation of histone H3 at lysine 27.
CONCLUSIONS: CD8+ T cells promote atherosclerosis by inhibiting VSMC Notch; CD8+CD44+CD122+ Tregs restore Notch, preserve VSMC quiescence, and stabilize plaques. The CD8+ Treg-Notch axis is a novel and promising therapeutic target against atherosclerosis.