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Updated: Jun 11, 2025

Immunohistochemical Staining of B7-H1 PD-L1 on Paraffin-embedded Slides of Pancreatic Adenocarcinoma Tissue
Published on: January 3, 2013
BAP1 regulates HSF1 activity and cancer immunity in pancreatic cancer
Weiwei Yuan1,2, Qiyue Zhang2,3, Yuhan Zhao2,3
1Department of General Surgery, The Affiliated Cancer Hospital of Zhengzhou University & Henan Cancer Hospital, Zhengzhou, 450008, China.
Background:
The vast majority of pancreatic cancers have been shown to be insensitive to single-agent immunotherapy. Exploring the mechanisms of immune resistance and implementing combination therapeutic strategies are crucial for PDAC patients to derive benefits from immunotherapy. Deletion of BAP1 occurs in approximately 27% of PDAC patients and is significantly correlated with poor prognosis, but the mechanism how BAP1-deletion compromises survival of patients with PDAC remain a puzzle.
Methods:
Bap1 knock-out KPC (KrasG12D/+; LSLTrp53R172H/+; Pdx-1-Cre) mice and control KPC mice, syngeneic xenograft models were applied to analysis the correlation between BAP1 and immune therapy response in PDAC. Immunoprecipitation, RT-qPCR, luciferase and transcriptome analysis were combined to revealing potential mechanisms. Syngeneic xenograft models and flow cytometry were constructed to examine the efficacy of the inhibitor of SIRT1 and its synergistic effect with anti-PD-1 therapy.
Result:
The deletion of BAP1 contributes to the resistance to immunotherapy in PDAC, which is attributable to BAP1's suppression of the transcriptional activity of HSF1. Specifically, BAP1 competes with SIRT1 for binding to the K80 acetylated HSF1. The BAP1-HSF1 interaction preserves the acetylation of HSF1-K80 and promotes HSF1-HSP70 interaction, facilitating HSF1 oligomerization and detachment from the chromatin. Furthermore, we demonstrate that the targeted inhibition of SIRT1 reverses the immune insensitivity in BAP1 deficient PDAC mouse model.
Conclusion:
Our study elucidates an unrevealed mechanism by which BAP1 regulates immune therapy response in PDAC via HSF1 inhibition, and providing promising therapeutic strategies to address immune insensitivity in BAP1-deficient PDAC.
Insights
BAP1 deletion in pancreatic ductal adenocarcinoma (PDAC) causes immunotherapy resistance by inhibiting HSF1. Inhibiting SIRT1 can reverse this resistance, offering new therapeutic strategies for PDAC patients.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Pancreatic ductal adenocarcinoma (PDAC) is largely insensitive to single-agent immunotherapy.
- BAP1 deletion, found in ~27% of PDAC cases, correlates with poor prognosis, but its role in immune resistance is unclear.
Purpose of the Study:
- To investigate the mechanism by which BAP1 deletion impacts immunotherapy response in PDAC.
- To identify potential therapeutic targets to overcome immune resistance in BAP1-deficient PDAC.
Main Methods:
- Utilized Bap1 knock-out and control KPC mouse models and syngeneic xenografts.
- Employed immunoprecipitation, RT-qPCR, luciferase, and transcriptome analysis.
- Assessed SIRT1 inhibition efficacy and synergy with anti-PD-1 therapy using flow cytometry.
Main Results:
- BAP1 deletion promotes PDAC immune resistance by suppressing HSF1 transcriptional activity.
- BAP1 competes with SIRT1 for binding acetylated HSF1, maintaining HSF1-HSP70 interaction and chromatin detachment.
- SIRT1 inhibition reversed immunotherapy insensitivity in BAP1-deficient PDAC models.
Conclusions:
- Elucidated a novel mechanism of BAP1 regulating PDAC immune response via HSF1.
- Identified SIRT1 inhibition as a promising strategy to enhance immunotherapy efficacy in BAP1-deficient PDAC.
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