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:Targeting the KLF5/PI3K/AKT axis as a therapeutic strategy to overcome neoadjuvant chemoresistance in colorectal cancer.
Targeting the KLF5/PI3K/AKT axis as a therapeutic strategy to overcome neoadjuvant chemoresistance in colorectal cancer.
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靶向 KLF5/PI3K/AKT 轴可能增强结直肠癌的化疗疗效并克服耐药性。
以奥沙利铂为基础的新辅助化疗(NAC)是晚期结直肠癌(CRC)的标准治疗方案,然而对NAC的耐药性构成了重大的临床挑战。
为探究化疗耐药机制,我们分析了接受新辅助化疗(NAC)的结直肠癌(CRC)患者的单细胞RNA测序(scRNA-seq)数据。进行了综合分析,包括InferCNV、差异表达基因分析、通路富集、细胞通讯及SCENIC。高通量药物筛选识别出针对化疗耐药通路的潜在治疗候选药物,并在动物模型中探索了靶向KLF5/PI3K/AKT轴联合奥沙利铂的疗效。
NAC有效减轻了肿瘤负荷,并增强了响应性肿瘤中T_NK细胞的浸润。值得注意的是,NAC耐药细胞簇表现出脂肪酸相关代谢通路的激活,且免疫浸润有限。转录分析将KLF5鉴定为化疗耐药性的潜在驱动因子。基于这些发现,我们开发了一个与KLF5调节子相关的风险评分模型,该模型在预测结直肠癌患者预后方面具有显著潜力。机制上,KLF5激活PI3K/AKT通路赋予结直肠癌细胞化疗耐药性。通过高通量筛选,PI3K/AKT抑制剂GDC-0941作为一种有前景的治疗药物出现,在临床前模型中协同增强奥沙利铂疗效并克服耐药性。
Oxaliplatin-based neoadjuvant chemotherapy (NAC) is the standard treatment for advanced colorectal cancer (CRC), yet resistance to NAC poses a significant clinical challenge.
To investigate the mechanisms of chemoresistance, we analyzed single-cell RNA sequencing (scRNA-seq) data from CRC patients undergoing NAC. Comprehensive analyses, including InferCNV, differentially expressed genes analysis, pathway enrichment, cell communication, and SCENIC were performed. High-throughput drug screening identified potential therapeutic candidates targeting chemoresistance pathways, and the efficacy of targeting the KLF5/PI3K/AKT axis in combination with oxaliplatin was explored in animal models.
NAC effectively reduced tumor burden and enhanced T_NK cell infiltration in responsive tumors. Notably, NAC-resistant cell clusters exhibited activation of fatty acid-related metabolic pathways and demonstrated limited immune infiltration. Transcriptional analysis identified KLF5 as a potential driver of chemotherapy resistance. Based on these findings, we developed a KLF5 regulon-associated risk score model with significant potential for predicting CRC patient prognosis. Mechanistically, KLF5 activation of the PI3K/AKT pathway conferred chemoresistance in CRC cells. Through high-throughput screening, GDC-0941, a PI3K/AKT inhibitor, emerged as a promising therapeutic agent that synergistically enhanced oxaliplatin efficacy and overcame resistance in preclinical models.
Targeting the KLF5/PI3K/AKT axis may enhance chemotherapy efficacy and overcome drug resistance in CRC.
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