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:Hybrid epithelial-mesenchymal status of lung cancer dictates metastatic success through differential interaction with NK cells.
Hybrid epithelial-mesenchymal status of lung cancer dictates metastatic success through differential interaction with NK cells.
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我们的研究表明,H 细胞在 NSCLC 的转移扩散中发挥核心作用。H 细胞的这种促转移优势得到了其与 NK 细胞相互作用改变以及 B7-H3 在维持其 H-CIC 组分中关键作用的支持,表明 B7-H3 是基于 NK 的联合治疗中的潜在靶点。
上皮间质转化(EMT)赋予癌细胞促转移特性,当细胞进入中间杂合(H)状态时,这种特性似乎最为有效,该状态以间质(M)和上皮(E)特征整合为特点。这种优势的原因尚不清楚,尤其是H细胞与NK细胞之间的相互作用是否发挥作用,完全未被探索。在此,我们表征了非小细胞肺癌(NSCLC)H细胞及其癌症起始细胞(CICs)亚群的促转移机制,剖析了与NK细胞的关键相互作用。
通过蛋白质组学评估的代表E、M或H状态的人肺癌细胞系及亚系,在体内分析了其成瘤和播散能力。通过迁移实验、细胞毒性脱颗粒实验以及共培养后CD133+ CICs调节的评估,在体外研究了与NK细胞的相互作用,并通过NK细胞中和实验在体内进行了验证。在一组手术切除的NSCLC病例(n=79)中,评估了EMT状态、NK细胞浸润与生存数据之间的相关性。
我们证明,H细胞具有有限的播散能力,但在体内启动转移的潜力最高。这一特性与其逃逸NK细胞监视的能力有关。机制上,H细胞表达低水平的NK吸引趋化因子(CXCL1和CXCL8),从而形成浸润不良的转移灶。相应地,对E、H、M细胞系的蛋白质组学和GO富集分析显示,相关分泌过程可能在EMT过程中发生变化。此外,H-CIC独特地表达高水平抑制性配体B7-H3,这保护H-CIC免受NK细胞介导的清除。体内中和实验证实,H细胞的促转移特性确实受NK细胞控制较差。最后,对患者的分析显示,在NSCLC临床标本中检测与低NK浸润相关的混合表型,可识别出一个预后不良的患者亚群。
Epithelial to mesenchymal transition (EMT) endows cancer cells with pro-metastatic properties, which appear most effective when cells enter an intermediate hybrid (H) state, characterized by integrated mesenchymal (M) and epithelial (E) traits. The reasons for this advantage are poorly known and, especially, it is totally unexplored whether the interplay between H-cells and NK cells could have a role. Here we characterize the pro-metastatic mechanics of non-small cell lung cancer (NSCLC) H-cells and their subset of cancer-initiating cells (CICs), dissecting crucial interactions with NK cells.
Human lung cancer cell lines and sublines representative of E, M, or H states, assessed by proteomics, were analyzed in vivo for their tumor-forming and disseminating capabilities. Interactions with NK cells were investigated in vitro using migration assays, cytotoxic degranulation assays, and evaluation of CD133+ CICs modulation after coculture, and validated in vivo through NK cell neutralization assays. Correlation between EMT status, NK cell infiltration, and survival data, was evaluated in a cohort of surgically resected NSCLC cases (n=79).
We demonstrated that H-cells, have limited dissemination capability but show the highest potential to initiate metastases in vivo. This property was related to their ability to escape NK cell surveillance. Mechanistically, H-cells expressed low levels of NK-attracting chemokines (CXCL1 and CXCL8), generating poorly infiltrated metastases. Accordingly, proteomics and GO enrichment analysis of E, H, M cell lines showed that the related secretory processes could change during EMT.Furthermore, H-CICs uniquely expressed high levels of the inhibitory ligand B7-H3, which protected H-CIC from NK cell-mediated clearance. In vivo neutralization assays confirmed that, indeed, the pro-metastatic properties of H-cells are poorly controlled by NK cells.Finally, the analysis of patients revealed that detection of hybrid phenotypes associated with low NK infiltration in NSCLC clinical specimens could identify a subset of patients with poor prognosis.
Our study demonstrates that H-cells play a central role in the metastatic spread in NSCLC. Such pro-metastatic advantage of H-cells is supported by their altered interaction with NK cells and by the critical role of B7-H3 in preserving their H-CIC component, indicating B7-H3 as a potential target in combined NK-based therapies.
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