Targeting ANKRD11 Reverses HBV-Specific CD8+ T Cell Dysfunction and Tolerance
Targeting ANKRD11 Reverses HBV-Specific CD8+ T Cell Dysfunction and Tolerance
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.
Inclusion Criteria:
Exclusion Criteria:
wuhm2000@sina.com010-84322078
The human participant component of this study is limited to prospective collection of peripheral blood samples from patients with chronic hepatitis B and healthy volunteers for preclinical laboratory investigations. No therapeutic intervention is assigned to human participants. The major experimental components of the overall research project are conducted in vitro and in animal models.