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:TNFAIP2 deficiency drives formation of an immunosuppressive tumor microenvironment and confers resistance to anti-PD-1 therapy in skin cutaneous melanoma.
TNFAIP2 deficiency drives formation of an immunosuppressive tumor microenvironment and confers resistance to anti-PD-1 therapy in skin cutaneous melanoma.
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据报道,TNFα诱导蛋白2(TNFAIP2)在恶性肿瘤的发生和进展中发挥重要作用。然而,其在皮肤黑色素瘤(SKCM)中的功能在很大程度上仍不清楚,亟需探索。对公开数据库的分析显示,与正常对照相比,TNFAIP2在SKCM组织中显著下调(P < 0.001),且其表达是SKCM诊断的重要指标(AUC = 0.742)。TNFAIP2低表达的患者往往处于晚期临床阶段且预后不良(P < 0.01),这一结果在我们的队列中得到了验证。随后的富集分析显示,TNFAIP2高表达与低表达的SKCM组织之间的差异表达基因在多个肿瘤免疫特征中高度富集,尤其是免疫检查点信号通路。免疫浸润评估表明,TNFAIP2上调预示CD8 + T细胞、B细胞、NK细胞和M1巨噬细胞浸润增加,并预测SKCM对免疫检查点阻断(ICB)治疗有良好反应。在SKCM小鼠模型中,TNFAIP2过表达抑制了肿瘤生长和肺转移,这一效应在免疫健全小鼠中更为显著;值得注意的是,这些小鼠肿瘤微环境中CD8 + T细胞和M1巨噬细胞的浸润增加。
此外,TNFAIP2过表达明显增加了SKCM对抗PD-1免疫治疗的敏感性。上述结果表明TNFAIP2具有抑瘤作用,可能是一个有前景的靶点,用于提高SKCM中ICB治疗的疗效。
TNFα-induced protein 2 (TNFAIP2) reportedly plays a significant role in the initiation and progression of malignancy.
However, its function in skin cutaneous melanoma (SKCM) is largely unknown and urgently needs to be explored. Analysis of a publicly available database revealed that TNFAIP2 was significantly downregulated in SKCM tissues vs. normal controls (P < 0. 001) and that its expression was a significant indicator for SKCM diagnosis (AUC = 0. 742). Patients with low TNFAIP2 expression tended to have tumors in advanced clinical stages with a poor prognosis (P < 0. 01), which was validated in our cohort. Subsequent enrichment analysis revealed that genes differentially expressed between SKCM tissues with high and low TNFAIP2 expression were highly enriched in with multiple tumor immune signatures, especially immune checkpoint signalling.
Immune infiltration estimation indicated that TNFAIP2 upregulation predicated increased infiltration of CD8 + T cells, B cells, NK cells, and M1 macrophages and predicted a favourable response to immune checkpoint blockade (ICB) treatment in SKCM. In the SKCM mouse model, TNFAIP2 overexpression suppressed tumor growth and lung metastasis, and this effect was even more pronounced in immunocompetent mice; notably, these mice presented increased infiltration of CD8 + T cells and M1 macrophages into the tumor microenvironment.
Moreover, TNFAIP2 overexpression clearly increased the sensitivity of SKCM to anti-PD-1 immunotherapy. The above results indicate the tumor-suppressive role of TNFAIP2, which may be a promising target for improving the efficacy of ICB treatment in SKCM.
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