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:mTOR pathway gene mutations predict response to immune checkpoint inhibitors in multiple cancers.
mTOR pathway gene mutations predict response to immune checkpoint inhibitors in multiple cancers.
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这些结果提示,mTOR 通路基因突变可预测多种癌症接受 ICI 治疗后的更好生存,可能与其增强抗肿瘤免疫相关。需要更大规模的研究来验证我们的发现。
mTOR通路已知可促进癌症恶性程度并影响癌症免疫,但其在免疫检查点抑制剂(ICI)治疗中的作用尚不清楚。
利用Memorial Sloan-Kettering Cancer Center数据集(MSKCC),我们在1661例接受ICI的癌症患者中提取了mTOR通路基因突变,用于逐步Cox回归。我们将逐步Cox回归所得基因特征的突变与这1661例患者的生存相关联。另从6个队列中收集了553例接受ICI治疗的患者用于验证。我们还在MSKCC未接受ICI治疗的患者中作为发现集(n = 2244)以及在The Cancer Genome Atlas(TCGA)中作为验证集(n = 763)进行了这种生存关联分析。利用TCGA和IMvigor210试验的转录组谱进行了通路富集分析,以探讨潜在机制。
我们在发现队列(n = 1661)中通过逐步Cox回归识别出8个参与mTOR通路的基因,包括FGFR2、PIK3C3、FGFR4、FGFR1、FGF3、AKT1、mTOR和RPTOR。在发现队列(n = 1661)和验证队列(n = 553)中,这8基因特征的突变与接受ICI治疗的患者更好的生存相关,该关联独立于肿瘤突变负荷(TMB),且主要归因于错义突变。在未接受ICI治疗的患者中未观察到这种生存关联。有趣的是,这8基因特征的突变与TMB升高及PD1/PD-L1表达增加相关。在免疫学上,当mTOR通路中存在该突变特征时,参与抗肿瘤免疫应答的通路富集,导致免疫效应细胞(如CD8 + T细胞、NK细胞和M1巨噬细胞)浸润增加,而免疫抑制性M2巨噬细胞浸润减少。
mTOR pathway is known to promote cancer malignancy and influence cancer immunity but is unknown for its role in immune checkpoint inhibitors (ICI) therapy.
Using Memorial Sloan-Kettering Cancer Center dataset (MSKCC), we extracted mTOR pathway gene mutations for stepwise Cox regression in 1661 cancer patients received ICI. We associated the mutation of the gene signature resulted from the stepwise Cox regression with the 1661 patients' survival. Other 553 ICI-treated patients were collected from 6 cohorts for validation. We also performed this survival association in patients without ICI treatment from MSKCC as discovery (n = 2244) and The Cancer Genome Atlas (TCGA) as validation (n = 763). Pathway enrichment analysis were performed using transcriptome profiles from TCGA and IMvigor210 trial to investigate the potential mechanism.
We identified 8 genes involved in mTOR pathway, including FGFR2, PIK3C3, FGFR4, FGFR1, FGF3, AKT1, mTOR, and RPTOR, resulted from stepwise Cox regression in discovery (n = 1661). In both discovery (n = 1661) and validation (n = 553), the mutation of the 8-gene signature was associated with better survival of the patients treated with ICI, which was independent of tumor mutation burden (TMB) and mainly attributed to the missense mutations. This survival association was not observed in patients without ICI therapy. Intriguingly, the mutation of the 8-gene signature was associated with increased TMB and PD1/PD-L1 expression. Immunologically, pathways involved in anti-tumor immune response were enriched in presence of this mutational signature in mTOR pathway, leading to increased infiltration of immune effector cells (e.g., CD8 + T cells, NK cells, and M1 macrophages), but decreased infiltration of immune inhibitory M2 macrophages.
These results suggested that mTOR pathway gene mutations were predictive of better survival upon ICI treatment in multiple cancers, likely by its association with enhanced anti-tumor immunity. Larger studies are warranted to validate our findings.
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