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Targeting ANKRD11 Reverses HBV-Specific CD8+ T Cell Dysfunction and Tolerance
Sponsor: Beijing Municipal Administration of Hospitals
Summary
Achieving a functional cure for chronic hepatitis B (CHB) is largely hindered by the irreversible functional exhaustion and immune tolerance of hepatitis B virus (HBV)-specific CD8+ T cells. In our previous studies, an in vivo CRISPR screen identified ANKRD11 for the first time as an "epigenetic brake" on CD8+ T-cell effector function. Loss of ANKRD11 markedly enhanced the expansion, effector function, and viral clearance capacity of HBV-specific T cells. Based on these findings, we hypothesize that ANKRD11 regulates the epigenetic program of T-cell exhaustion by restricting the activity of AP-1 family transcription factors, and that targeting ANKRD11 can reverse T-cell dysfunction and overcome immune tolerance. This project will: (1) elucidate the epigenetic mechanisms by which ANKRD11 regulates T-cell exhaustion using conditional knockout mouse models and multi-omics approaches; (2) evaluate how ANKRD11 deficiency reshapes the differentiation trajectory and antiviral function of HBV-specific T cells in models of chronic HBV infection; and (3) develop a combinatorial gene-editing strategy integrating "release of the brake" with "stepping on the accelerator" to generate enhanced TCR-T cells and evaluate their efficacy and safety in humanized mouse models.The study is expected to define a novel mechanism by which ANKRD11 regulates T-cell exhaustion, establish an enhanced TCR-T therapeutic strategy, and provide a potential approach toward achieving a functional cure for chronic HBV infection.
Key Details
Gender
All
Age Range
18 Years - 65 Years
Study Type
OBSERVATIONAL
Enrollment
3
Start Date
2026-12
Completion Date
2028-08
Last Updated
2026-08-20
Healthy Volunteers
Yes