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B7-H4 在携带 EGFR 激活突变的肺腺癌中升高,并促进免疫抑制

英文原题:B7-H4 is increased in lung adenocarcinoma harboring EGFR-activating mutations and contributes to immunosuppression.

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B7-H4 is increased in lung adenocarcinoma harboring EGFR-activating mutations and contributes to immunosuppression.

PubMed 2021/11/27(内容时间) Oncogene Q1 · IF 9.1(JCR 2025)

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中文摘要

PD-1/PD-L1 抑制剂在肺腺癌(LUAD)中已显示出临床获益。然而,免疫治疗策略在 EGFR 激活突变(EGFR MT)患者中效果较差。研究表明,除 PD-L1 低表达外,TIL 缺失以及免疫检查点分子表达谱的差异可能与这部分患者亚群的低应答相关。

在本研究中,我们首先通过数据集分析比较了携带不同驱动突变的不同 LUAD 亚型中 CD8A、GZMB 和 PRF1 mRNA 水平,并研究了 15 个明确界定的 B7-CD28 家族成员与驱动突变之间的关联。

结果显示,CD8+ TIL 密度和功能下降、CD274(PD-L1 基因)和 CD86 降低,以及 VTCN1(B7-H4 基因)和 HHLA2 升高,与携带 EGFR 激活突变的 LUAD 相关。免疫组化染色研究进一步支持该亚型中 PD-L1 下调而 B7-H4 上调。

此外,PD-L1 表达与 CD8A 和颗粒酶 B 水平呈正相关,而 B7-H4 表达与颗粒酶 B 水平呈负相关。在肺癌细胞系中,EGFR 激活突变有效上调 B7-H4 并下调 PD-L1。MEK/ERK 通路激活上调 B7-H4,PI3K/Akt 激活上调 PD-L1。EGFR 19Del 突变与 CD8+ T 细胞功能抑制相关,而敲低 B7-H4 可逆转这种抑制,并进一步在体内显示出肿瘤生长抑制和更长的生存期。

综上所述,本研究揭示 B7-H4 可能是一种替代性免疫检查点分子,也是携带 EGFR MT 的 LUAD 的潜在治疗靶点。

展开英文摘要原文

PD-1/PD-L1 inhibitors have shown clinical benefit in lung adenocarcinoma (LUAD).

However, the immunotherapy strategy is less effective in patients with EGFR-activating mutations (EGFR MT). Studies showed that besides low expression of PD-L1, the absence of TILs and distinct expression profile of immune checkpoint molecules might be associated with low response of the patient subset. In this study, we first compared CD8A, GZMB and PRF1 mRNA levels in different LUAD subtypes harboring different driver mutations by dataset analyses and investigated the association between 15 well-defined B7-CD28 family members and driver mutations.

The results showed that the decreases in the density and function of CD8 + TILs, CD274 (PD-L1 gene), and CD86 and increases in VTCN1 (B7-H4 gene) and HHLA2 were associated with LUAD with EGFR-activating mutations. Immunohistochemical staining studies further supported that PD-L1 was downregulated and B7-H4 was upregulated in the subtype.

Furthermore, PD-L1 expression was positively associated with levels of CD8A and granzyme B, while B7-H4 expression was negatively associated with granzyme B levels. In lung cancer cell lines, EGFR-activating mutations effectively upregulated B7-H4 and downregulated PD-L1. MEK/ERK-pathway activation upregulated B7-H4, and PI3K/Akt activation upregulated PD-L1.

EGFR 19Del mutation was associated with inhibition of CD8 + T-cell function, while knocking down B7-H4 could reverse the inhibition, and further showed tumor-growth inhibition and longer survival in vivo. Taken together, this study shed light on that B7-H4 might be an alternative immune-checkpoint molecule and a potential therapeutic target for LUAD with EGFR MT.

论文信息

作者
Lu Y、Wu F、Cao Q、Sun Y、Huang M、Xiao J、Zhou B、Zhang L
第一作者单位
College of Pharmaceutical Sciences, Soochow University, Suzhou, Jiangsu, China.China
通讯作者单位
College of Pharmaceutical Sciences, Soochow University, Suzhou, Jiangsu, China. zliang@suda.edu.cn.China
期刊
Oncogene2022 Jan
原文标识
PubMed 34839353 · DOI 10.1038/s41388-021-02124-6