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:Identifying key mutations of radioresponsive genes in esophageal squamous cell carcinoma.
Identifying key mutations of radioresponsive genes in esophageal squamous cell carcinoma.
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这些结果表明,在 ESCC 中,放射敏感组与放射抵抗组之间存在胚系突变和体细胞突变的差异,并暗示 NOTCH1 在调控 ESCC 放射敏感性中发挥重要作用。这些发现可能为提高 ESCC 放疗敏感性的生物标志物和潜在治疗靶点提供依据。
放疗在食管鳞状细胞癌(ESCC)的标准治疗中发挥着重要作用。然而,由于放射抵抗的存在,该疗法的疗效有限,少数患者未能获得满意的治疗结果。因此,有必要识别ESCC潜在的预测生物标志物和治疗靶点。
我们进行了全外显子组测序,以确定ESCC中的胚系和体细胞突变。采用功能富集和基于通路的蛋白质-蛋白质相互作用分析,以确定潜在的调控网络。通过CCK-8和LDH释放试验测定ESCC细胞接受放疗后的细胞存活和细胞死亡。还分析了ESCC中NOTCH1与肿瘤免疫浸润的相关性。
我们的结果显示,共检测到344个体细胞和65个胚系差异突变基因是放射敏感性相关位点。肿瘤突变负荷(TMB)或微卫星不稳定性(MSI)与ESCC患者对放疗的反应无显著相关性。基于通路的蛋白-蛋白相互作用分析提示了若干节点最多的枢纽基因(如PIK3CA、NOTCH1、STAT3和KDR)。体外研究表明,敲低NOTCH1可抑制ESCC细胞存活,并在放疗处理后导致更多细胞死亡,而NOTCH1过表达则具有相反效应。此外,NOTCH1在ESCC中常上调,并与ESCC中活化B细胞和未成熟树突状细胞呈负相关。NOTCH1高表达伴随一些免疫治疗相关细胞水平降低,包括CD8(+) T细胞和NK细胞。
Radiotherapy plays an important effect on the standard therapy of esophageal squamous cell carcinoma (ESCC). However, the efficacy of the therapy is limited and a few patients do not achieve satisfactory treatment results due to the existence of radiation resistance. Therefore, it is necessary to identify the potential predictive biomarkers and treatment targets for ESCC.
We performed the whole-exome sequencing to determine the germline and somatic mutations in ESCC. Functional enrichment and pathway-based protein-protein interaction analyses were used to ascertain potential regulatory networks. Cell survival and cell death after treatment with radiotherapy were determined by CCK-8 and LDH release assays in ESCC cells. The correlations of NOTCH1 and tumor immune infiltration were also analyzed in ESCC.
Our results showed that 344 somatic and 65 germline differentially mutated genes were detected to be radiosensitivity-related loci. The tumor mutational burdens (TMB) or microsatellite instability (MSI) were not significantly correlated with the response to radiotherapy in ESCC patients. Pathway-based protein-protein interaction analyses implied several hub genes with most nodes (such as PIK3CA, NOTCH1, STAT3 and KDR). The in vitro studies showed that the knockdown of NOTCH1 inhibited cell survival and rendered more cell death after the treatment with radiotherapy in ESCC cells, while NOTCH1 overexpression had the opposite effects. Moreover, NOTCH1, frequently up-regulated in ESCC, was negatively correlated with activated B cell and immature dendritic cell in ESCC. High expression of NOTCH1 was accompanied with the low levels of some immunotherapy-related cells, including CD8(+) T cells and NK cells.
These results indicate the differences of the germline mutations and somatic mutations between the radiosensitive and radioresistence groups in ESCC and imply that NOTCH1 plays important roles in regulating the radiosensitivity of ESCC. The findings might provide the biomarkers and potential treatment targets for improving the sensitivity to radiotherapy in ESCC.
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