研究概要
暴露于抗癌药物后,SLAMF7 表达可通过 p53 依赖性和 p53 非依赖性机制在非血液系统恶性肿瘤中被诱导。鉴于 SLAMF7 是多发性骨髓瘤中单克隆抗体 Elotuzumab 经临床验证的靶点,其在实体瘤中的药物诱导性表达尤为引人关注。这一发现可能支持在 p53 功能正常的非血液系统恶性肿瘤中开发纳入 SLAMF7 靶向抗体的新型治疗策略。
研究思路结论见上方概要
背景
自然杀伤(NK)细胞处于抗击感染和癌症的最前沿,它们通过受监测细胞上表达的一组抑制性和激活性配体来识别靶标。肿瘤中此类配体的转录调控仍知之甚少。我们此前的转录组学研究提示,肿瘤抑制因子 p53 可能上调关键的 NK 激活性配体,包括 SLAM 家族成员 7(SLAMF7)和NK 细胞细胞毒性受体 3 配体 1(NCR3LG1)。在此,我们旨在验证这一调控轴的功能作用。
方法
来自多种癌症类型的同基因p53正常和p53缺陷细胞系(A549、NCI-H460、U-2 OS)被用于研究SLAMF7和NCR3LG1的p53依赖性调控。荧光素酶报告基因实验评估了推定的p53反应性增强子元件,通过DNA损伤剂(放线菌素D和喜树碱)以及MDM2原癌基因抑制剂nutlin-3a实现p53的药理学激活。使用原代人NK细胞和NK-92细胞系评估了NK细胞介导的细胞毒作用的功能影响。
结果
使用camptothecin或actinomycin D联合nutlin-3a对p53进行药理学激活,可在p53功能正常的癌细胞系中强烈诱导SLAMF7和NCR3LG1表达,而在p53缺陷的癌细胞系中则不然。SLAMF7蛋白通常仅在免疫细胞中表达,在p53激活后于上皮型和间质型癌症模型中被强烈诱导。Paclitaxel以不依赖p53的方式上调SLAMF7,提示存在另一种诱导途径。值得注意的是,actinomycin D与nutlin-3a联合处理可诱导可溶性SLAMF7的分泌。此外,NCR3LG1以依赖p53的方式被强烈上调。这些基因的克隆片段位于提示具有增强子活性的区域,可将p53反应性赋予报告基因。在功能上,actinomycin D与nutlin-3a对p53的双重激活显著提高了肿瘤细胞对原代人NK细胞及NK-92细胞系所介导的细胞裂解的易感性。
展开英文摘要原文
BACKGROUND
Natural killer (NK) cells are at the forefront of the fight against infections and cancer, where they recognize targets through a system of inhibitory and activating ligands expressed on monitored cells. The transcriptional regulation of such ligands in tumors remains poorly understood. Our previous transcriptomic studies suggest that the tumor suppressor p53 may upregulate key NK-activating ligands, including SLAM family member 7 (SLAMF7) and natural killer cell cytotoxicity receptor 3 ligand 1 (NCR3LG1). Herein, we aimed to validate the functional role of this regulatory axis.
METHODS
Isogenic p53-proficient and p53-deficient cell lines from diverse cancer types (A549, NCI-H460, U-2 OS) were used to examine p53-dependent regulation of SLAMF7 and NCR3LG1. Luciferase reporter assays assessed putative p53-responsive enhancer elements, with pharmacological activation of p53 achieved using DNA-damaging agents (actinomycin D and camptothecin) and the MDM2 proto-oncogene inhibitor nutlin-3a. The functional impact of NK cell-mediated cytotoxicity was assessed using primary human NK cells and the NK-92 cell line.
RESULTS
Pharmacological activation of p53 using camptothecin or combined actinomycin D and nutlin-3a strongly induced SLAMF7 and NCR3LG1 expression in p53-proficient, but not p53-deficient, cancer cell lines. The SLAMF7 protein, typically expressed only in immune cells, was strongly induced in epithelial and mesenchymal cancer models following p53 activation. Paclitaxel upregulated SLAMF7 independently of p53, suggesting an alternative pathway of induction. Notably, dual treatment with actinomycin D and nutlin-3a induced the secretion of soluble SLAMF7. Also, NCR3LG1 was strongly upregulated in a p53-dependent fashion. The cloned fragments of these genes, located in regions suggestive of enhancer activity, conferred p53 responsiveness to the reporter gene. Functionally, dual p53 activation by actinomycin D and nutlin-3a significantly increased tumor cell susceptibility to cytolysis by both primary human NK cells and the NK-92 cell line.
CONCLUSIONS
SLAMF7 expression can be induced in non-hematological cancers by p53-dependent and p53-independent mechanisms following exposure to anticancer agents. Given that SLAMF7 is a clinically validated target of the monoclonal antibody Elotuzumab in multiple myeloma, its drug-inducible expression in solid tumors is of particular interest. This finding may support the development of novel therapeutic strategies incorporating SLAMF7-targeting antibodies in p53-competent non-hematologic malignancies.
论文信息
- 作者
- Będzińska A、Gdowicz-Kłosok A、Krześniak M、Łasut-Szyszka B、Zeman M、Chwieduk A、Smagur A、Jablonska J
- 第一作者单位
- Center for Translational Research and Molecular Biology of Cancer, Maria Skłodowska-Curie National Research Institute of Oncology, Gliwice Branch, ul. Wybrzeże Armii Krajowej 15, Gliwice, 44-101, Poland.Poland
- 通讯作者单位
- Center for Translational Research and Molecular Biology of Cancer, Maria Skłodowska-Curie National Research Institute of Oncology, Gliwice Branch, ul. Wybrzeże Armii Krajowej 15, Gliwice, 44-101, Poland. Marek.Rusin@gliwice.nio.gov.pl.Poland
- 期刊
- Cell communication and signaling : CCS2026 Mar 5