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:Pan-cancer analysis reveals multifaceted roles of nonmyelinating Schwann cells in gastrointestinal cancers.
Pan-cancer analysis reveals multifaceted roles of nonmyelinating Schwann cells in gastrointestinal cancers.
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癌症神经科学已成为一个关键跨学科领域,为肿瘤进展机制提供了变革性见解。非髓鞘形成施万细胞(NMSC)是肿瘤微环境(TME)中不可或缺但研究不足的组成部分,在调节肿瘤恶性程度中表现出复杂作用。
在此,我们采用去卷积算法,通过利用 bulk RNA-seq 数据来量化 NMSC 富集程度。通过整合多组学和单细胞策略以及全面的生物信息学分析,我们描绘了 NMSC 介导的调控网络及其对胃肠道肿瘤的功能影响。NMSC 富集与核心癌症标志强烈相关,尤其是“激活侵袭和转移”和“诱导血管生成”。免疫分析显示,NMSC 是 TME 的多方面调节因子:与髓源性抑制细胞、NK 细胞和调节性 T 细胞正相关,但与 CD56dim NK 细胞、单核细胞和中性粒细胞负相关。基因组分析揭示了 NMSC 丰度与体细胞突变、拷贝数变异和甲基化模式之间的细微关联,而 microRNA 定位则突出了 NMSC 特异性网络。单细胞分辨率分析表明,NMSC 通过以细胞外基质为中心的信号轴与上皮细胞和成纤维细胞相互作用。
总体而言,我们的发现确立了 NMSC 作为多方面的 TME 协调者,为精准肿瘤学中靶向 NMSC 的诊断生物标志物和基质重编程治疗提供了机制依据。
Cancer neuroscience has emerged as a pivotal interdisciplinary field, offering transformative insights into tumor progression mechanisms. Nonmyelinating Schwann cells (NMSCs), integral yet understudied components of the tumor microenvironment (TME), exhibit complex roles in modulating tumor malignancy.
Here, we employed deconvolution algorithms to quantify NMSC enrichment by leveraging bulk RNA-seq data. By integrating multi-omics and single-cell strategies along with comprehensive bioinformatics analyses, we delineated NMSC-mediated regulatory networks and their functional impact on gastrointestinal tumors. NMSC enrichment strongly correlated with core cancer hallmarks, notably "Activating invasion and metastasis" and "Inducing angiogenesis". Immune profiling revealed NMSCs as multifaceted regulators of the TME: positively associated with myeloid-derived suppressor cells, natural killer cells, and regulatory T cells, but inversely correlated with CD56dim NK cells, monocytes, and neutrophils.
Genomic analyses uncovered nuanced associations between NMSC abundance and somatic mutations, copy number variation, and methylation patterns, while microRNA mapping highlighted NMSC-specific networks. Single-cell resolution analysis demonstrated that NMSCs engage epithelial cells and fibroblasts via extracellular matrix-centric signaling axes. Collectively, our findings establish NMSCs as multifaceted TME orchestrators, providing mechanistic rationale for NMSC-targeted diagnostic biomarkers and stromal reprogramming therapies in precision oncology.
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