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HDAC5 modulates PD-L1 expression and cancer immunity via p65 deacetylation in pancreatic cancer

组蛋白脱乙酰基酶5 癌症研究 胰腺癌 组蛋白脱乙酰基酶 癌症免疫疗法 免疫检查点 免疫疗法 PD-L1 免疫系统 生物 免疫学 癌症 医学 组蛋白 内科学 遗传学 基因
作者
Yingke Zhou,Xin Jin,Haixin Yu,Gengdu Qin,Penglin Pan,Jingyuan Zhao,Taoyu Chen,Xueyi Liang,Yan Sun,Bo Wang,Dianyun Ren,Shikai Zhu,Heshui Wu
出处
期刊:Theranostics [Ivyspring International Publisher]
卷期号:12 (5): 2080-2094 被引量:69
标识
DOI:10.7150/thno.69444
摘要

Rationale: Pancreatic ductal adenocarcinoma (PDAC) is a lethal disease with a dismal 5-year survival less than 10%. Most patients with PDAC exhibit poor response to single-agent immunotherapy. Multimodal therapies targeting mechanisms of resistance to immunotherapy are urgently needed. We found that the class IIa histone deacetylase (HDAC) member, HDAC5 is downregulated in multiple solid tumors and its level were associated with favorable prognosis in PDAC patients. Upregulated genes in patients harboring HDAC5 deletions were enriched in adaptive immune responses and lymphocyte-mediated immunity in The Cancer Genome Atlas (TCGA) pancreatic cancer dataset. Methods: Tissue microarray of pancreatic cancer were used to analysis the correlation between HDAC5 and PD-L1. RNA-seq, transcription factor motif analysis, drug screening and molecular biology assays were performed to identify the mechanism of HDAC5's repression on PD-L1. Allografts of pancreatic cancer in mouse were applied to test the efficiency of HDAC5 inhibition and anti-PD1 co-treatment. Results: HDAC5 regulated PD-L1 expression by directly interacting with NF-κB p65; this interaction was suppressed by p65 phosphorylation at serine-311. Additionally, HDAC5 diminished p65 acetylation at lysine-310, which is essential for the transcriptional activity of p65. Importantly, we demonstrated that HDAC5 silencing or inhibition sensitized PDAC tumors to immune checkpoint blockade (ICB) therapy in syngeneic mouse model and KPC mouse derived PDAC model. Conclusion: Our findings revealed a previously unknown role of HDAC5 in regulating the NF-κB signaling pathway and antitumor immune responses. These findings provide a strong rationale for augment the antitumor effects of ICB in immunotherapy-resistant PDAC by inhibiting HDAC5.
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