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:Regulation of IFN-γ-mediated PD-L1 expression by MYC in colorectal cancer with wild-type KRAS and TP53 and its clinical implications.
Regulation of IFN-γ-mediated PD-L1 expression by MYC in colorectal cancer with wild-type KRAS and TP53 and its clinical implications.
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所选定的结直肠癌细胞系具有已知的KRAS突变或TP53突变。采用TCGA数据分析研究接受抗PD-1/PD-L1免疫治疗患者的总体生存与KRAS/TP53突变状态之间的相关性。此外,还通过TCGA数据分析研究了PD-L1表达与KRAS/TP53突变状态之间的相关性。采用体外实验探讨KRAS和TP53相关PD-L1表达的机制。
首先,基因表达和总体生存的TCGA数据分析以及一项体外研究显示,野生型KRAS/TP53细胞系对干扰素γ暴露表现出高反应性,并与接受抗PD-1/PD-L1治疗患者更好的生存相关。其次,实验数据显示,在野生型KRAS和TP53结直肠癌中,干扰素γ主要通过调控MYC诱导程序性细胞死亡1配体1的上调。讨论:我们的发现揭示了对抗PD-1/PD-L1癌症免疫治疗的反应常发生于野生型KRAS和TP53结直肠癌中,这些癌症也被发现表现出更高的程序性细胞死亡1配体1表达。我们的研究结果表明,野生型 KRAS/TP53 结直肠癌细胞系可能对干扰素 γ 治疗反应更好,该治疗可引起程序性细胞死亡 1 配体 1 表达升高,这可能是野生型 KRAS 和野生型 TP53 结直肠癌对抗 PD-1/PD-L1 治疗反应更好的机制之一。此外,实验结果提示,干扰素 γ 通过调控 MYC 来调节程序性细胞死亡 1 配体 1 的表达,这可能进一步影响 PD-1/PD-L1 肿瘤免疫治疗的疗效。这些结果提示了一种新的潜在治疗策略,可用于增强大多数结直肠癌患者 PD-1/PD-L1 阻断免疫治疗的疗效。
Introduction: In the tumor microenvironment, interferon gamma (IFN-γ) secreted by tumor infiltrating lymphocytes can upregulate programmed cell death 1 ligand 1 (PD-L1) expression in many cancers. The present study evaluated the expression of PD-L1 in selected colorectal cancer cell lines with IFN-γ treatment and explored the correlation between programmed cell death 1 ligand 1 expression and KRAS/TP53 mutation status. Methods: The selected colorectal cancer cell lines had known KRAS mutations or TP53 mutations. TCGA data analysis were used to investigate the correlation between overall survival of patient with anti-PD-1/PD-L1 immunotherapy and KRAS/TP53 mutation status. Besides, the correlation between PD-L1 expression and KRAS/TP53 mutation status were also investigated by using TCGA data analysis.
In vitro experiments were used to explore the mechanism underlying KRAS- and TP53-related PD-L1 expression. Results: Firstly, TCGA data analysis for gene expression and overall survival and an in vitro study revealed that the wild-type KRAS/TP53 cell lines exhibited hyperresponsiveness to interferon gamma exposure and correlated with better survival in patients receiving anti-PD-1/PD-L1 treatment.
Secondly, experimental data revealed that interferon gamma induced the upregulation of programmed cell death 1 ligand 1 mainly through regulating MYC in wild-type KRAS and TP53 colorectal cancers. Discussion: Our findings revealed that the response to anti-PD-1/PD-L1 cancer immunotherapy frequently happened in wild-type KRAS and TP53 colorectal cancers, which were also found to show higher programmed cell death 1 ligand 1 expression.
Our results indicate that the wild-type KRAS/TP53 colorectal cancer cell lines may respond better to interferon gamma treatment, which causes increased programmed cell death 1 ligand 1 expression and may be a mechanism underlying the better responses to anti-PD-1/PD-L1 therapies in wild-type KRAS and wild-type TP53 colorectal cancer.
Furthermore, the experimental results suggest that interferon gamma regulated programmed cell death 1 ligand 1 expression through the regulation of MYC, which may further affect the response to PD-1/PD-L1 cancer immunotherapy. These results suggest a novel potential treatment strategy for enhancing the efficacy of PD-1/PD-L1 blockade immunotherapy in most colorectal cancer patients.
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