研究概要
自噬-ATG5-KLF4/KLF2轴可能下调顺铂耐药肺癌细胞中的IL-15,抑制NK细胞活化并促进脑转移。这些发现为肺癌脑转移的机制提供了有益的见解,并为该病理状况的预防和治疗策略的开发提供了有价值的参考。
研究思路结论见上方概要
背景
肺癌患者常发生脑转移。耐药肺癌细胞转移潜能增强的机制尚不清楚。此前,我们已经证明缺氧诱导的自噬促进顺铂耐药。然而,在耐药形成过程中,自噬诱导对促转移基因表达的影响尚未被研究。
方法
本研究评估了顺铂耐药的A549(A549/DDP)和SK-MES-1(SK-MES-1/DDP)细胞中的自噬激活情况。利用GSE213102、GSE108214、GSE110495、GSE161116和GSE73158数据集进行的差异基因分析揭示,IL-15是顺铂耐药、自噬与脑转移之间相互作用的关键组分。接下来,研究了A549/DDP细胞抑制自然杀伤(NK)细胞激活的机制。利用荧光素酶报告基因、染色质免疫沉淀和DNA pull-down实验研究了转录因子KLF4和KLF2对IL15的调控作用。通过颈动脉注射在小鼠体内建立了脑转移模型。
结果
耐药细胞表现出自噬激活增强和ATG5上调。IL-15在耐药细胞中下调,通过下调IFN-γ、颗粒酶B和穿孔素损害NK细胞活化。机制上,ATG5上调KLF4/KLF2,后者随后抑制IL15。KLF4可直接结合IL15启动子,而KLF2通过与PCAF相互作用抑制NF-κB(p50/p65)驱动的IL15转录。IL-15过表达抑制了A549/DDP细胞在小鼠中的脑转移。
展开英文摘要原文
BACKGROUND: Patients with lung cancer often develop brain metastases. The mechanism underlying the enhanced metastatic potential of drug-resistant lung cancer cells is unclear. Previously, we demonstrated that hypoxia-induced autophagy promotes cisplatin resistance. However, the effect of autophagy induction on pro-metastatic gene expression during drug resistance development has not been examined.
OBJECTIVE: This study aimed to explore the molecular mechanism underlying autophagy mediated brain metastasis.
METHODS: This study evaluated autophagy activation in cisplatin-resistant A549 (A549/DDP) and SK-MES-1 (SK-MES-1/DDP) cells. Differential gene analysis using GSE213102, GSE108214, GSE110495, GSE161116, and GSE73158 datasets revealed that IL-15 is a key component in the interplay between cisplatin resistance, autophagy, and brain metastasis. Next, the mechanism through which A549/DDP cells suppress natural killer (NK) cell activation was examined. The regulatory effects of the transcription factors KLF4 and KLF2 on IL15 were investigated using the luciferase reporter, chromatin immunoprecipitation, and DNA pull-down assays. In vivo brain metastasis was modeled in mice via carotid artery injection.
RESULTS: Drug-resistant cells exhibited enhanced autophagy activation and ATG5 upregulation. IL-15 was downregulated in drug-resistant cells, impairing NK cell activation by downregulating IFN-γ, granzyme B, and perforin. Mechanistically, ATG5 upregulated KLF4/KLF2, which subsequently repressed IL15. KLF4 could directly bind the IL15 promoter, while KLF2 inhibited NF-κB (p50/p65)-driven IL15 transcription by interacting with PCAF. IL-15 overexpression suppressed the brain metastasis of A549/DDP cells in mice.
CONCLUSION: The autophagy-ATG5-KLF4/KLF2 axis may downregulate IL-15 in cisplatin-resistant lung cancer cells, suppressing NK cell activation and promoting brain metastasis. These findings offer useful insights into the mechanisms underlying the brain metastasis of lung cancer and provide valuable reference for the development of preventive and therapeutic strategies for this pathological condition.
论文信息
- 作者
- Cai Y、Zhao W、Wang J
- 第一作者单位
- Department of Radiation Oncology, Shanghai Tianyou Hospital, Tongji University School of Medicine, Shanghai, China.China
- 通讯作者单位
- Department of Oncology, Shanghai Pulmonary Hospital, Tongji University School of Medicine, No. 507 Zhengmin Road, Shanghai, 200433, China. jiyingsph@126.com.China
- 期刊
- European journal of medical research2026 Mar 5