CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Tenascin C as a novel zinc finger protein 750 target regulating the immunogenicity via DNA damage in lung squamous cell carcinoma.
Tenascin C as a novel zinc finger protein 750 target regulating the immunogenicity via DNA damage in lung squamous cell carcinoma.
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肺鳞状细胞癌(LUSC)中DNA损伤修复的调节可导致新抗原的产生和免疫原性的增强。因此,理解DNA损伤修复机制对于识别免疫治疗靶点和制定治疗策略具有重要的临床意义。
我们的研究揭示了LUSC中的肿瘤抑制因子锌指蛋白750(ZNF750)与tenascin C(TNC)的启动子区域结合,导致TNC表达降低。这种调节可能影响肿瘤细胞的恶性行为,并与患者预后相关。
此外,LUSC组织的单细胞RNA测序(scRNA-seq)显示ZNF750/TNC表达水平与免疫原性呈负相关。在体外对LUSC细胞中ZNF750-TNC轴的操控显示了对CD8+细胞的差异性敏感性,强调了其在调节细胞免疫原性中的关键作用。
进一步的转录组测序分析、DNA损伤修复实验和单链断裂分析揭示了ZNF750-TNC轴参与决定DNA损伤的同源重组(HR)修复或非同源末端连接(NHEJ)修复的偏好,并涉及Hippo/ERK信号通路。
总之,本研究揭示了ZNF750-TNC轴在LUSC中DNA损伤修复调节中的作用,为未来LUSC免疫细胞治疗的转化研究奠定了基础。
Modulation of DNA damage repair in lung squamous cell carcinoma (LUSC) can result in the generation of neoantigens and heightened immunogenicity.
Therefore, understanding DNA damage repair mechanisms holds significant clinical relevance for identifying targets for immunotherapy and devising therapeutic strategies.
Our research has unveiled that the tumor suppressor zinc finger protein 750 (ZNF750) in LUSC binds to the promoter region of tenascin C (TNC), leading to reduced TNC expression. This modulation may impact the malignant behavior of tumor cells and is associated with patient prognosis.
Additionally, single-cell RNA sequencing (scRNA-seq) of LUSC tissues has demonstrated an inverse correlation between ZNF750/TNC expression levels and immunogenicity. Manipulation of the ZNF750-TNC axis in vitro within LUSC cells has shown differential sensitivity to CD8 + cells, underscoring its pivotal role in regulating cellular immunogenicity.
Further transcriptome sequencing analysis, DNA damage repair assay, and single-strand break analyses have revealed the involvement of the ZNF750-TNC axis in determining the preference for homologous recombination (HR) repair or non-homologous end joining (NHEJ) repair of DNA damage. with involvement of the Hippo/ERK signaling pathway. In summary, this study sheds light on the ZNF750-TNC axis's role in DNA damage repair regulation in LUSC, laying a groundwork for future translational research in immune cell therapy for LUSC.
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