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:Untargeted Metabolomics Showed Accumulation of One-Carbon Metabolites to Facilitate DNA Methylation during Extracellular Matrix Detachment of Cancer Cells.
Untargeted Metabolomics Showed Accumulation of One-Carbon Metabolites to Facilitate DNA Methylation during Extracellular Matrix Detachment of Cancer Cells.
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脱离细胞外基质(ECM)的肿瘤细胞会发生失巢凋亡抵抗和代谢重编程,从而促进癌细胞存活并推动转移。在ECM脱离过程中,癌细胞利用基因组甲基化来调控转录事件。一碳(1C)代谢是SAM的已知贡献者,而SAM是甲基化反应尤其是DNA甲基化的全局底物。ECM脱离期间DNA甲基化介导的NK细胞配体MICA和MICB的抑制一直被忽视。在当前工作中,我们定量了ECM脱离对一碳代谢物、1C调控通路基因表达以及总甲基化水平的影响。
我们的结果表明,ECM脱离促进一碳代谢物的积累,并诱导调控通路基因和总DNA甲基化。此外,我们检测了ECM脱离期间癌细胞中NK细胞配体即MICA/B这一已知DNA甲基化靶点的表达,并观察到与ECM贴附的癌细胞相比其表达较低。
最后,我们用维生素C(一种全局甲基化抑制剂)处理ECM脱离的癌细胞,观察到NK细胞配体启动子甲基化降低,导致MICA/B重新表达。还发现维生素C处理可降低ECM脱离癌细胞中的全局DNA甲基化水平。
Tumor cells detached from the extracellular matrix (ECM) undergo anoikis resistance and metabolic reprogramming to facilitate cancer cell survival and promote metastasis. During ECM detachment, cancer cells utilize genomic methylation to regulate transcriptional events. One-carbon (1C) metabolism is a well-known contributor of SAM, a global substrate for methylation reactions, especially DNA methylation.
DNA methylation-mediated repression of NK cell ligands MICA and MICB during ECM detachment has been overlooked. In the current work, we quantitated the impact of ECM detachment on one-carbon metabolites, expression of 1C regulatory pathway genes, and total methylation levels.
Our results showed that ECM detachment promotes the accumulation of one-carbon metabolites and induces regulatory pathway genes and total DNA methylation.
Furthermore, we measured the expression of well-known targets of DNA methylation in NK cell ligands in cancer cells, namely, MICA/B, during ECM detachment and observed low expression compared to ECM-attached cancer cells.
Finally, we treated the ECM-detached cancer cells with vitamin C (a global methylation inhibitor) and observed a reduction in the promoter methylation of NK cell ligands, resulting in MICA/B re-expression. Treatment with vitamin C was also found to reduce global DNA methylation levels in ECM-detached cancer cells.
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