Inducing CD8 + Tregs Limits Atherosclerosis via Notch-Mediated VSMC Quiescence

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 Myh11 CreER ;Rbpj fl/fl ;Apoe –/– mice. Ligand-receptor interactions were perturbed with neutralizing antibodies. Lineage tracing was performed using Myh11 CreER ;Rosa YFP ;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.

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Journal
Circulation Research
Published
2026-09-09
DOI
https://doi.org/10.1161/circresaha.126.328918
Primary Topic
Atherosclerosis and Cardiovascular Diseases
Type
article
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article

Inducing CD8 + Tregs Limits Atherosclerosis via Notch-Mediated VSMC Quiescence

Yangfeng Hou, Kathy O. Lui, Wentao Gao, James Y. Lau et al.
Circulation Research
Atherosclerosis and Cardiovascular Diseases
article

Inducing CD8 + Tregs Limits Atherosclerosis via Notch-Mediated VSMC Quiescence

Yangfeng Hou, Kathy O. Lui, Wentao Gao, James Y. Lau, Jiaxing Liu, Bin Zhou, Herman Waldmann, Cheng Kiu Ho, Alfred Sze-Lok Cheng
article en

Abstract

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 Myh11 CreER ;Rbpj fl/fl ;Apoe –/– mice. Ligand-receptor interactions were perturbed with neutralizing antibodies. Lineage tracing was performed using Myh11 CreER ;Rosa YFP ;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.

Circulation Research
Chinese University of Hong Kong (HK), University of Oxford (GB), Prince of Wales Hospital (CN), Center for Excellence in Molecular Cell Science (CN), University of Hong Kong (HK)
Openalex Percentile: Top 17%
Atherosclerosis and Cardiovascular Diseases
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