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:Deciphering the potential pathogeny of rare tracheal adenoid cystic carcinoma by single-cell RNA-sequencing.
Deciphering the potential pathogeny of rare tracheal adenoid cystic carcinoma by single-cell RNA-sequencing.
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我们的研究表明,TACC 可能起源于纤毛上皮细胞。外部因素引发的基因表达异常,以及 NK 细胞和 T 细胞的功能障碍,是 TACC 发生和进展的关键因素。开发针对 MIF-CD74 信号通路的药物可能会为 TACC 的治疗带来突破。
气管腺样囊性癌(TACC)是一种极为罕见的癌症类型,其特征为生长缓慢,但复发率和转移率高。由于对其分子特征了解有限,TACC的治疗受到极大阻碍。我们试图通过单细胞RNA测序(RNA-seq)对这种癌症进行深入分析,为TACC治疗策略的制定提供重要依据。
获取同一TACC患者的外周血、肿瘤组织和癌旁组织,并进行单细胞RNA-seq检测。通过生物信息学分析,鉴定具有关键生物学功能的细胞克隆,并确定其分子特征。采用荧光多重免疫组化(mIHC)确认异常表达的标志物。
RNA-seq和mIHC验证分别在一名和四名TACC患者中成功进行。所有测序细胞被分为上皮细胞、免疫细胞和基质细胞三大类。与肿瘤组织中的上皮细胞相关,在拟时间曲线起始处发现了表达常见干细胞标志物的纤毛细胞,表明它们可能与TACC的起源有关。进一步分析揭示,纤毛细胞中的八个基因可能值得进一步研究。此外,发现自然杀伤(NK)细胞和细胞毒性T细胞等免疫细胞的功能受损,这可能是TACC扩增的原因。值得注意的是,鉴定出一个伪装成基质细胞的独特间皮细胞亚群。这些细胞具有恶性表型,可能通过MIF-(CD74 + CXCR4或CD44)通路与巨噬细胞相互作用。mIHC证实了CD68 + CD74 +细胞的高密度及其与Vimentin + PANCK +细胞的近距离。这些发现表明,这些标志物可用于开发靶向TACC的药物。
Tracheal adenoid cystic carcinoma (TACC) is an extremely rare type of cancer, characterized by slow growth, but high rates of recurrence and metastasis. The treatment of TACC is greatly hampered by the limited understanding of its molecular characteristics. We sought to conduct an in-depth analysis of this type of cancer through single-cell RNA-sequencing (RNA-seq) to provide important evidence for the formulation of treatment strategies for TACC.
The peripheral blood, tumor tissue, and adjacent tissue of the same TACC patient was obtained and tested by single-cell RNA-seq. A bioinformatics analysis was conducted to identify the cell clones with key biological functions and determine their molecular characteristics. Fluorescent multiplex immunohistochemistry (mIHC) was used to confirm the markers with abnormal expression.
RNA-seq and mIHC verification were successfully performed in one and four TACC patients, respectively. All the sequenced cells were divided into three main categories of epithelial, immune, and stromal cells. In relation to the epithelial cells in the tumor tissue, ciliated cells expressing commonly observed stem-cell markers were found at the beginning of the pseudo-time curve, indicating that they might be related to the origin of the TACC. Further analysis revealed eight genes in the ciliated cells may warrant further investigation. Additionally, the function of immune cells like natural killer (NK) cells and cytotoxic T cells were found to be impaired, which might be the reason for the expansion of TACC. Notably, a distinct subgroup of mesothelial cells disguised as stromal cells was identified. These cells possessed a malignant phenotype and probably interact with macrophages through the MIF-(CD74 + CXCR4 or CD44) pathway. The high density of the CD68 + CD74 + cells and their close distance to the Vimentin + PANCK + cells was confirmed by mIHC. These findings suggest that these markers could be used in the development of drugs targeting TACC.
Our research showed that TACC might originate from ciliated epithelial cells. Abnormal gene expression triggered by external factors, along with the dysfunction of NK and T cells, are critical factors in the genesis and progression of TACC. Developing drugs that target MIF-CD74 signaling pathways may lead to breakthroughs in the treatment of TACC.
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