← 返回

SMAD7 通过经典 TGF-β 阻断和非经典 STAT5A 转录激活驱动 NK 细胞抗肿瘤活性

英文原题:SMAD7 drives natural killer cell antitumor activity through canonical TGF-β blockade and non-canonical transcriptional activation of STAT5A.

查看英文原题

SMAD7 drives natural killer cell antitumor activity through canonical TGF-β blockade and non-canonical transcriptional activation of STAT5A.

PubMed 2026/04/09(内容时间) J Immunother Cancer Q1 · IF 11.7(JCR 2025)

分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。

研究概要

我们的研究结果表明,SMAD7 通过经典抑制 TGF-信号通路和非经典激活 STAT5A 转录,成为 NK 细胞抗肿瘤活性的关键增强因子。调控 SMAD7 为改善基于 NK 细胞的免疫治疗提供了一种有前景的方法。

研究思路结论见上方概要

自然杀伤(NK)细胞是抗肿瘤免疫中的关键效应细胞,但其功能在肿瘤微环境中被转化生长因子-(TGF-)显著抑制。SMAD7 是已明确的 TGF- 信号通路胞内拮抗剂,但其在 NK 细胞中的具体作用仍鲜有明确。

SMAD7 在肿瘤浸润 NK 细胞中的临床相关性,通过对公开单细胞和 bulk 转录组数据集的整合分析进行评估。功能研究包括:在同源肿瘤模型中使用 NK 细胞条件性 Smad7 敲除小鼠进行的功能缺失实验,以及使用过表达 SMAD7 的人 NK-92MI 细胞系进行的功能获得实验。NK 细胞的抗肿瘤功能通过细胞毒性实验以及检测所选效应分子和耗竭标志物的表达进行评估。SMAD7 介导的转录靶点通过整合 RNA 测序、染色质免疫沉淀后定量 PCR 以及荧光素酶报告基因实验加以鉴定。SMAD7 在基于 NK 细胞的治疗中的潜在作用在过继转移肿瘤模型中进行了评估。

肿瘤浸润NK细胞中SMAD7高表达与多种癌症类型患者预后良好相关。NK细胞中SMAD7的条件性缺失显著损害了其抗肿瘤细胞毒性,导致胰腺癌和肝癌小鼠模型中肿瘤进展加速。相反,SMAD7过表达增强了NK细胞细胞毒性并缓解了功能性耗竭,部分是通过拮抗TGF-介导的抑制实现的。值得注意的是,我们发现了SMAD7在NK细胞中此前未被认识的核功能。SMAD7直接结合STAT5A启动子并促进其转录,从而增强NK细胞中的STAT5A信号传导。STAT5A的破坏在很大程度上消除了野生型SMAD7所赋予的增强细胞毒性,并完全废除了TGF-受体结合缺陷型SMAD7突变体的效应。在体内治疗研究中,过表达SMAD7的NK细胞过继转移对胰腺癌和肝癌均显示出更优的抗肿瘤疗效,并且SMAD7修饰在肝癌的嵌合抗原受体(CAR)-NK细胞治疗模型中也显著改善了肿瘤控制并延长了生存期。

展开英文摘要原文

Natural killer (NK) cells are key effectors in antitumor immunity, yet their function is markedly suppressed by transforming growth factor- (TGF- ) in the tumor microenvironment. SMAD7 is an established intracellular antagonist of TGF- signaling, but its specific role within NK cells remains poorly defined.

The clinical relevance of SMAD7 in tumor-infiltrating NK cells was evaluated via integrative analyses of public single-cell and bulk transcriptomic datasets. Functional studies included loss-of-function experiments using NK cell-conditional Smad7 knockout mice in syngeneic tumor models and gain-of-function experiments using a SMAD7-overexpressing human NK-92MI cell line. NK cell antitumor function was assessed through cytotoxicity assays and by measuring the expression of selected effector and exhaustion markers. SMAD7-mediated transcriptional targets were identified by integrating RNA sequencing, chromatin immunoprecipitation followed by quantitative PCR, and luciferase reporter assays. The potential role of SMAD7 in NK cell-based therapy was evaluated in adoptive transfer tumor models.

High SMAD7 expression in tumor-infiltrating NK cells was associated with a favorable patient prognosis across multiple cancer types. Conditional deletion of SMAD7 in NK cells markedly impaired their antitumor cytotoxicity, leading to accelerated tumor progression in mouse models of both pancreatic and liver cancers. In contrast, SMAD7 overexpression enhanced NK cell cytotoxicity and alleviated functional exhaustion, partly by counteracting TGF- -mediated suppression. Notably, we uncovered a previously unrecognized nuclear function of SMAD7 in NK cells. SMAD7 directly binds to the STAT5A promoter and promotes its transcription, thereby strengthening STAT5A signaling in NK cells. Disruption of STAT5A largely abolished the enhanced cytotoxicity conferred by wild-type SMAD7 and completely abrogated the effect of a SMAD7 mutant, which was defective in TGF- receptor binding. In in vivo therapeutic studies, adoptive transfer of SMAD7-overexpressing NK cells showed superior antitumor efficacy against both pancreatic and liver cancers, and SMAD7 modification also significantly improved tumor control and prolonged survival in a chimeric antigen receptor (CAR)-NK cell therapeutic model for liver cancer.

Our findings identify SMAD7 as a key enhancer of NK-cell antitumor activity through canonical inhibition of TGF- signaling and non-canonical activation of STAT5A transcription. Modulating SMAD7 offers a promising approach to improve NK cell-based immunotherapy.

论文信息

作者
Li J、Liu T、Xiao W、Zhao D、Li Q、Liu S、Li X、Tong Y
第一作者单位
State Key Laboratory of Systems Medicine for Cancer, Shanghai Cancer Institute, Renji Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200032, China.China
通讯作者单位
State Key Laboratory of Systems Medicine for Cancer, Shanghai Cancer Institute, Renji Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200032, China ganyu@shsci.org tuhong@shsci.org.China
期刊
Journal for immunotherapy of cancer2026 Apr 9
原文标识
PubMed 41956539 · DOI 10.1136/jitc-2025-014473