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解析 PD-L1 启动子揭示了 VHL 突变型透明细胞肾细胞癌中 PD-L1 的差异转录调控。

Dissection of PD-L1 promoter reveals differential transcriptional regulation of PD-L1 in VHL mutant clear cell renal cell carcinoma.

机构信息

Department of Pathology, Korea University College of Medicine, Seoul, Republic of Korea.

Department of Pathology, Korea University Ansan Hospital, Ansan, Republic of Korea.

出版信息

Lab Invest. 2022 Apr;102(4):352-362. doi: 10.1038/s41374-021-00703-5. Epub 2021 Nov 17.

Abstract

Programmed death-ligand 1 (PD-L1) is constitutively expressed by hypoxia-inducible factor 2α (HIF2α). It can be induced by interferon gamma (IFNγ) signaling in clear cell renal cell carcinoma (ccRCC). Clinical trials of metastatic ccRCCs have suggested that a canonical IFNγ signature is a better biomarker for therapeutic response to immune checkpoint inhibitors (ICIs) than PD-L1 expression levels in tumor cells. To understand the therapeutic response to ICIs according to PD-L1 expression levels, we analyzed transcriptional regulation of the PD-L1 promoter by HIF2α and IFNγ-inducible interferon regulatory factor-1 (IRF-1) in ccRCC cells. Here, we present two ccRCC cell models showing differential PD-L1 expression levels in response to IFNγ and hypoxia. Analysis of The Cancer Genome Atlas RNA-sequencing data revealed that PD-L1 expression correlated with JAK2 and STAT1 expression of the canonical IFNγ signature in ccRCC tissues. Upon IFNγ stimulation, PD-L1 was induced by sequential activation of JAK2/STAT1/IRF-1 signaling in both WT- and Mut- VHL ccRCC cells. IFNγ activated the IRF-1α site of the PD-L1 promoter. The IFNγ-mediated increase of PD-L1 expression in Mut-VHL cells was 4.8-fold greater than that in WT-VHL cells. Under normoxia condition, PD-L1 expression in Mut-VHL cells was significantly higher than that in WT-VHL cells due to high basal HIF2α expression. Under hypoxia condition, PD-L1 expression in WT-VHL cells was induced up to 1.8-fold through activation of hypoxia-response elements 2 and 3. In contrast, although PD-L1 in Mut-VHL cells was already highly expressed in the basal state through activation of hypoxia-response elements 2, 3, and 4, it was no longer induced by hypoxia. In conclusion, Mut-VHL ccRCC cells displayed higher PD-L1 expression due to high basal HIF2α expression and a stronger response to IFNγ stimulation than WT-VHL cells. The fact that HIF2α antagonists can potentially reduce PD-L1 expression levels should be considered in ICI combination therapy.

摘要

程序性死亡配体 1(PD-L1)由缺氧诱导因子 2α(HIF2α)组成性表达。它可以被干扰素 γ(IFNγ)信号在透明细胞肾细胞癌(ccRCC)中诱导。转移性 ccRCC 的临床试验表明,经典 IFNγ 特征是预测免疫检查点抑制剂(ICIs)治疗反应的更好生物标志物,优于肿瘤细胞中 PD-L1 的表达水平。为了根据 PD-L1 表达水平了解对 ICI 的治疗反应,我们分析了 ccRCC 细胞中 HIF2α 和 IFNγ 诱导的干扰素调节因子-1(IRF-1)对 PD-L1 启动子的转录调控。在这里,我们提出了两个 ccRCC 细胞模型,它们在对 IFNγ 和缺氧的反应中显示出不同的 PD-L1 表达水平。对癌症基因组图谱 RNA-seq 数据的分析表明,PD-L1 的表达与 ccRCC 组织中经典 IFNγ 特征的 JAK2 和 STAT1 表达相关。IFNγ 刺激后,WT-和 Mut-VHL ccRCC 细胞中,PD-L1 是通过 JAK2/STAT1/IRF-1 信号的顺序激活诱导的。IFNγ 激活了 PD-L1 启动子的 IRF-1α 位点。在 Mut-VHL 细胞中,IFNγ 介导的 PD-L1 表达增加是 WT-VHL 细胞的 4.8 倍。在常氧条件下,由于基础 HIF2α 表达较高,Mut-VHL 细胞中的 PD-L1 表达明显高于 WT-VHL 细胞。在缺氧条件下,WT-VHL 细胞中的 PD-L1 表达通过激活缺氧反应元件 2 和 3 诱导至 1.8 倍。相比之下,尽管 Mut-VHL 细胞中的 PD-L1 通过激活缺氧反应元件 2、3 和 4 在基础状态下已经高度表达,但它不再被缺氧诱导。总之,由于基础 HIF2α 表达较高且对 IFNγ 刺激的反应更强,Mut-VHL ccRCC 细胞显示出更高的 PD-L1 表达。HIF2α 拮抗剂可能降低 PD-L1 表达水平的事实应在 ICI 联合治疗中考虑。

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