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:Dual Role of Cancer Epithelial-Specific TRAF3 in Regulating Breast Cancer Cell Survival and Lymphocyte Activity.
Dual Role of Cancer Epithelial-Specific TRAF3 in Regulating Breast Cancer Cell Survival and Lymphocyte Activity.
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TRAF3(TNF受体相关因子3)是NF-κB信号通路的调节因子,主要作为替代性NF-κB通路的抑制因子发挥作用。尽管TRAF3在免疫功能中的作用已较为明确,主要通过调节B淋巴细胞和T淋巴细胞实现,但其在癌症中的作用仍不清楚。乳腺癌是女性最常见的恶性肿瘤,也是一种具有高度瘤内异质性的肿瘤。识别和理解乳腺癌细胞与免疫系统交界处的关键分子对于推进乳腺癌患者的治疗策略至关重要。
本研究通过利用公开可用的乳腺癌数据集、稳定表达TRAF3的乳腺癌细胞系、质谱分析结合功能实验、共培养体系以及信号通路表征,旨在评估TRAF3在乳腺癌细胞中的具体作用,以及表达TRAF3的乳腺癌细胞如何影响其免疫微环境。
我们的结果表明,TRAF3蛋白过表达通过调控凋亡抑制集落形成。对TRAF3相互作用蛋白的蛋白质组学分析和过表征分析鉴定出多个与细胞周期、凋亡和免疫应答相关的蛋白复合物。
此外,表达TRAF3的乳腺癌细胞显示PD-L1水平降低,当与PBMCs共培养时,诱导了促炎特征,表现为CD16-NK细胞增加,培养体系中IFN-γ和TNF-α水平升高,IL-10和Tregs降低。这些发现进一步拓展了TRAF3在乳腺癌中的作用,其不仅是癌细胞EMT和生存的调节因子,也是肿瘤免疫微环境的调控因子。
TRAF3 (TNF Receptor Associated Factor 3) is a regulator of NF-κB signaling, acting mainly as an inhibitor of the alternative NF-κB pathway. While TRAF3 has a well-established role in immune function, mainly via B- and T-lymphocyte regulation, its roles in cancer remain unclear.
Breast cancer is the most common malignancy in women and a neoplasm displaying high levels of intratumoral heterogeneity. Identifying and understanding key molecules at the interface of breast cancer cells and the immune system is crucial for advancing therapeutic strategies for breast cancer patients.
Here, by employing publicly available breast cancer datasets, breast cancer cell lines stably expressing TRAF3, mass spectrometry analysis in combination with functional assays, co-culture systems, and signal pathway characterization, we sought to assess the specific role of TRAF3 in breast cancer cells and how TRAF3-expressing breast cancer cells affect their immune microenvironment.
Our results indicate that TRAF3 protein overexpression inhibits colony formation through apoptosis regulation. Proteome analysis for TRAF3 interactors and over-representation analysis identified multiple protein complexes related to cell cycle, apoptosis, and immune responses.
Furthermore, TRAF3-expressing breast cancer cells displayed reduced levels of PD-L1 and when co-cultured with PBMCs induced a pro-inflammatory profile with increased CD16-NK cells and higher levels of IFN-γ and TNF-α and lower IL-10 and Tregs in the culture.
These findings further expand the role of TRAF3 in breast cancer, not only as a regulator of EMT and survival of cancer cells, but also as a modulator of the tumor-immune microenvironment.
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