Go to The Journal of Clinical Investigation
  • About
  • Editors
  • Consulting Editors
  • For authors
  • Journal stats
  • Publication ethics
  • Publication alerts by email
  • Transfers
  • Advertising
  • Job board
  • Contact
  • Physician-Scientist Development
  • Current issue
  • Past issues
  • By specialty
    • COVID-19
    • Cardiology
    • Immunology
    • Metabolism
    • Nephrology
    • Oncology
    • Pulmonology
    • All ...
  • Videos
  • Collections
    • In-Press Preview
    • Resource and Technical Advances
    • Clinical Research and Public Health
    • Research Letters
    • Editorials
    • Perspectives
    • Physician-Scientist Development
    • Reviews
    • Top read articles

  • Current issue
  • Past issues
  • Specialties
  • In-Press Preview
  • Resource and Technical Advances
  • Clinical Research and Public Health
  • Research Letters
  • Editorials
  • Perspectives
  • Physician-Scientist Development
  • Reviews
  • Top read articles
  • About
  • Editors
  • Consulting Editors
  • For authors
  • Journal stats
  • Publication ethics
  • Publication alerts by email
  • Transfers
  • Advertising
  • Job board
  • Contact
BRD7 as key factor in PBAF complex assembly and CD8+ T cell differentiation
Feng Huang, Yingtong Lin, Yidan Qiao, Yaochang Yuan, Zhihan Zhong, Baohong Luo, Yating Wu, Jun Liu, Jingliang Chen, Wanying Zhang, Hui Zhang, Bingfeng Liu
Feng Huang, Yingtong Lin, Yidan Qiao, Yaochang Yuan, Zhihan Zhong, Baohong Luo, Yating Wu, Jun Liu, Jingliang Chen, Wanying Zhang, Hui Zhang, Bingfeng Liu
View: Text | PDF
Research Article Immunology Infectious disease

BRD7 as key factor in PBAF complex assembly and CD8+ T cell differentiation

  • Text
  • PDF
Abstract

Upon infection, naive CD8+ T cells differentiate into cytotoxic effector cells to eliminate the pathogen-infected cells. Although many mechanisms underlying this process have been demonstrated, the regulatory role of chromatin remodeling system in this process remains largely unknown. Here we show that BRD7, a component of the polybromo-associated BAF complex (PBAF), was required for naive CD8+ T cells to differentiate into functional short-lived effector cells (SLECs) in response to acute infections caused by influenza virus or lymphocytic choriomeningitis virus (LCMV). BRD7 deficiency in CD8+ T cells resulted in profound defects in effector population and functions, thereby impairing viral clearance and host recovery. Further mechanical studies indicate that the expression of BRD7 significantly turned to high from naive CD8+ T cells to effector cells, which bridged BRG1 and PBRM1 to the core module of PBAF complex, consequently facilitating the assembly of PBAF complex rather than BAF complex in the effector cells. The PBAF complex changed the chromatin accessibility at the loci of Tbx21 gene and upregulated its expression, leading to the maturation of effector T cells. Our research demonstrates that BRD7 and the PBAF complex are key in CD8+ T cell development and present a significant target for advancing immune therapies.

Authors

Feng Huang, Yingtong Lin, Yidan Qiao, Yaochang Yuan, Zhihan Zhong, Baohong Luo, Yating Wu, Jun Liu, Jingliang Chen, Wanying Zhang, Hui Zhang, Bingfeng Liu

×

Figure 3

BRD7 is required for effector function.

Options: View larger image (or click on image) Download as PowerPoint
BRD7 is required for effector function.
(A and B) Intracellular cytokine...
(A and B) Intracellular cytokine staining of IFN-γ (A) or TNF-α (B) produced by splenic CD8+ T cells from Brd7fl/fl (n = 4) and Brd7ΔT (n = 4) mice infected with HKx31 virus stimulated with NP peptide at 10 d p.i. Number beside outlined areas indicates percent of IFN-γ+CD8+ (A) or TNF-α+CD8+ (B) T cells. Frequency of IFN-γ+ (A) or TNF-α+ (B) cells among CD8+ T cells. (C and D) Flow cytometry of granzyme B (GzmB) (C) or perforin (Prf1) (D) produced by splenic NP+CD8 + T cells from Brd7fl/fl (n = 4) and Brd7ΔT (n = 3) mice infected with HKx31 virus at 10 d p.i. Numbers beside outlined areas indicate mean fluorescence intensity (MFI) of GzmB (C) or Prf1 (D) among NP+CD8+ T cells. MFI of GzmB (C) or Prf1 (D) among NP+CD8+ T cells. (E) In vivo cytolysis assay. Noninfected WT host mice or infected BRD7 WT (n = 3) or BRD7-deficient (n = 3) mice received equal numbers of low CFSE–labeled B6 splenocytes loaded with NP peptide plus high CFSE–labeled B6 splenocytes without NP peptide stimulation at 10 d p.i. Cytotoxic T lymphocyte activity was assessed 4 hours after transfer. Numbers above bracketed lines represent percentages of cells per CFSE peak. (F) Frequency of peptide-pulsed cells in E was shown. (G) Body weight of Brd7fl/fl (n = 8) and Brd7ΔT (n = 7) mice infected with 0.5 LD50 of A/PR/8/34 (H1N1) virus at various times p.i. Body weight at day 0 was set as 100%. (H) Histological examination of lung from Brd7fl/fl or Brd7ΔT mice noninfected with PR8 virus (top panel) or infected at day 8 p.i. (bottom panel). Lung from Brd7ΔT mice infected with PR8 virus showed severe tissue damage and lymphocytic infiltration. Data are shown as mean ± SEM. *P < 0.05, **P < 0.01, and ***P < 0.001 (2-tailed Student’s t test). Data are representative of 3 independent experiments.

Copyright © 2026 American Society for Clinical Investigation
ISSN 2379-3708

Sign up for email alerts