基于 DNA 超分子水凝胶的保护性 NK 细胞储库用于增强三阴性乳腺癌治疗
Protective NK Cell Reservoir Based on DNA Supramolecular Hydrogel for Enhanced Triple-Negative Breast Cancer Therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:DUSP22 dephosphorylates LGALS1 to enhance T cell-driven antitumor immunity.
DUSP22 dephosphorylates LGALS1 to enhance T cell-driven antitumor immunity.
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我们的发现揭示了一条新的磷酸化依赖性 DUSP22-LGALS1 轴,可重编程免疫抑制性 TME。
肿瘤微环境(TME)中CD8⁺ T细胞浸润不足,严重限制抗肿瘤免疫和癌症免疫治疗疗效。本研究旨在识别新的肿瘤细胞内在T细胞浸润调节因子并阐明其作用机制。
我们在小鼠乳腺癌模型中开展全基因组Sleeping Beauty转座子诱变筛选。通过质谱鉴定蛋白质相互作用,并以共免疫沉淀验证。采用逆转录和定量PCR及蛋白质印迹检测基因和蛋白表达。利用流式细胞术、免疫组化(IHC)、多重IHC,以及整体和单细胞RNA测序数据结合生物信息学分析,评估T细胞浸润与功能。通过磷酸化模拟突变实验确认LGALS1的特定去磷酸化位点,并利用体外T细胞跨内皮迁移实验和体内小鼠模型进一步验证T细胞浸润。
筛选鉴定出39个候选基因,其中肿瘤细胞内在的双特异性磷酸酶22(DUSP22)表达与CD8⁺ T细胞积累增强及肿瘤进展受抑相关。过表达DUSP22可增加CD8⁺ T细胞浸润并增强T细胞功能。机制上,DUSP22与LGALS1结合,并使其Ser8和Thr58位点去磷酸化,导致LGALS1降解,从而缓解LGALS1介导的免疫抑制。人乳腺癌样本中,LGALS1表达与DUSP22水平及CD8⁺ T细胞浸润均呈负相关。治疗性靶向DUSP22-LGALS1轴可显著增强CD8⁺ T细胞浸润,并与抗程序性细胞死亡蛋白1治疗协同,增强抗肿瘤应答。
我们的发现揭示了一条新的、依赖磷酸化调控的DUSP22-LGALS1轴,可重塑免疫抑制性TME,并提出一种有前景的治疗策略,有望克服乳腺癌对免疫检查点阻断的耐药。
Insufficient infiltration of CD8 + T cells in the tumor microenvironment (TME) critically restricts antitumor immunity and cancer immunotherapy efficacy. The purpose of this study was to identify novel tumor cell-intrinsic regulators of T-cell infiltration and to elucidate their mechanisms of action.
We performed a genome-wide Sleeping Beauty transposon mutagenesis screen in murine breast cancer models. Protein-protein interactions were identified by mass spectrometry and validated by co-immunoprecipitation. Gene and protein expression levels were assessed by reverse transcription and quantitative PCR and western blotting. T-cell infiltration and function were evaluated using flow cytometry, immunohistochemistry (IHC), multiplex IHC, and by analyzing bulk and single-cell RNA sequencing data complemented by bioinformatic analysis. The specific dephosphorylation sites on LGALS1 were confirmed through phosphomimetic mutant experiments. T-cell infiltration was further validated using an in vitro T-cell transendothelial migration assay and in vivo mouse models.
Our screening identified 39 candidate genes, with tumor cell-intrinsic dual-specificity phosphatase 22 (DUSP22) expression correlating with enhanced CD8 + T-cell accumulation and suppressed tumor progression. Overexpression of DUSP22 resulted in increased CD8 + T-cell infiltration and enhanced T-cell function. Mechanistically, DUSP22 binds to LGALS1 and dephosphorylates it at the Ser8 and Thr58 residues, leading to LGALS1 degradation and subsequent alleviation of LGALS1-mediated immunosuppression. In human breast cancer samples, LGALS1 expression was negatively correlated with both DUSP22 levels and CD8 + T-cell infiltration. Therapeutic targeting of the DUSP22-LGALS1 axis significantly enhanced CD8 + T-cell infiltration and synergized with anti-programmed cell death protein-1 therapy to boost antitumor responses.
Our findings unveil a novel phosphorylation-dependent DUSP22-LGALS1 axis that reprograms the immunosuppressive TME. This work thus proposes a promising therapeutic strategy to overcome immune checkpoint blockade resistance in breast cancer.
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