RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:The ATF5-GPER1 axis drives female protection in hepatocellular carcinoma through dual tumor-suppressive and immune-modulatory mechanisms.
The ATF5-GPER1 axis drives female protection in hepatocellular carcinoma through dual tumor-suppressive and immune-modulatory mechanisms.
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肝细胞癌(HCC)表现出显著的性别二态性,女性患者生存期更优,但其潜在的分子机制仍不清楚。我们整合了批量转录组学(GSE39791、TCGA-LIHC、GSE14520)和单细胞RNA测序(五个数据集,n = 58例患者,238,982个细胞)以及机器学习(LASSO、SVM、随机森林)来鉴定驱动HCC性别差异的女性保护基因。激活转录因子5(ATF5)作为一个女性保护基因浮现,在多个队列中女性表达高于男性。单细胞分析揭示ATF5定义了一个女性富集的低度恶性亚群,该亚群凋亡程序升高、增殖信号降低,伪时间分析显示在恶性进展过程中ATF5-GPER1协同下调(Spearman ρ = -0.52和-0.48;均p < 0.001)。
在免疫区室中,ATF5标记了一个女性富集的IFN-γ⁺巨噬细胞状态,具有增强的免疫刺激程序以及与CD8/NK细胞优先通过CXCL9/10-CXCR3介导的通讯。在机制上,ATF5转录激活G蛋白偶联雌激素受体1(GPER1),形成一个雌激素响应性调控模块,该模块以GPER1依赖的方式功能性抑制增殖、诱导凋亡(HepG2:26.45% vs. 11.88%,p < 0.0001)并抑制迁移,这一点通过回补实验得到证实。组织芯片验证(n = 167)确认高ATF5表达预测女性患者无复发生存期改善(HR = 0.34,p = 0.040),但男性患者则不然(p = 0.080)。ATF5-GPER1轴代表一个女性保护性回路,通过肿瘤内在抑制和免疫重塑发挥作用,为HCC性别二态性提供了机制性见解,并将ATF5确定为具有潜在治疗意义的性别特异性预后生物标志物。
Hepatocellular carcinoma (HCC) exhibits marked sexual dimorphism, with females demonstrating superior survival, yet the underlying molecular mechanisms remain unclear.
We integrated bulk transcriptomics (GSE39791, TCGA-LIHC, GSE14520) and single-cell RNA sequencing (five datasets, n = 58 patients, 238,982 cells) with machine learning (LASSO, SVM, random forest) to identify female-protective genes driving HCC disparities. Activating transcription factor 5 (ATF5) emerged as a female-protective gene with higher expression in females versus males across cohorts.
Single-cell analyses revealed ATF5 defines a female-enriched, low-grade malignant subcluster with elevated apoptotic programs and reduced proliferative signaling, and pseudotime analysis showed coordinated ATF5-GPER1 downregulation during malignant progression (Spearman ρ = -0. 52 and -0. 48; both p < 0. 001). In the immune compartment, ATF5 marked a female-enriched IFN-γ⁺ macrophage state with enhanced immunostimulatory programs and preferential CXCL9/10-CXCR3-mediated communication with CD8/NK cells.
Mechanistically, ATF5 transcriptionally activates G protein-coupled estrogen receptor 1 (GPER1), forming an estrogen-responsive regulatory module that functionally suppresses proliferation, induces apoptosis (HepG2: 26. 45% vs. 11. 88%, p < 0. 0001), and inhibits migration in a GPER1-dependent manner as demonstrated by rescue experiments.
Tissue microarray validation (n = 167) confirmed high ATF5 expression predicts improved recurrence-free survival specifically in female patients (HR = 0. 34, p = 0. 040) but not males (p = 0. 080). The ATF5-GPER1 axis represents a female-protective circuit operating through tumor-intrinsic suppression and immune remodeling, offering mechanistic insight into HCC sexual dimorphism and identifying ATF5 as a sex-specific prognostic biomarker with potential therapeutic implications.
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