TP53 缺失通过上调 NF-κB-IFN-β-MHC-Ia 信号促进骨肉瘤对 NK 细胞的抵抗
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CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Hippo signalling pathway mediates oncogenic properties of NAB2::STAT6 in solitary fibrous tumour.
Hippo signalling pathway mediates oncogenic properties of NAB2::STAT6 in solitary fibrous tumour.
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NAB2::STAT6 通过失活 Hippo 通路促进 SFT 进展,揭示了一个潜在的可靶向脆弱点,并进一步拓展了我们对 NAB2::STAT6 驱动肿瘤发生的认识。
**目的:**孤立性纤维性肿瘤(SFT)是一种罕见间叶性肿瘤,其分子特征为NAB2::STAT6基因融合(GF)。该融合基因是一种异常转录调节因子,但其除激活EGR1之外的功能尚未充分阐明。
本研究旨在进一步揭示NAB2::STAT6的致癌作用并确定潜在治疗弱点。**方法:**通过异位表达NAB2::STAT6建立人间充质干细胞来源SFT模型(SFT-MSC),并采用基因表达微阵列评估该融合对转录组的影响。通过siRNA沉默YAP1/TAZ或使用达沙替尼药理抑制,对稳定SFT-MSC克隆开展功能实验。对16例肿瘤进行转录组分析,研究Hippo通路与EGR1转录特征的关联;以免疫组化评估44例患者样本中的核YAP1/TAZ表达,并以光学基因组图谱分析8份SFT标本的基因组结构变异(SV)。**结果:**异位表达NAB2::STAT6导致Hippo通路失调并促进恶性表型;敲低YAP1/TAZ或使用达沙替尼可部分逆转这一表型。SFT病例的总RNA测序确认Hippo信号转录性失活,并揭示Hippo与EGR1通路之间的网络联系。与原发肿瘤相比,复发SFT样本中核YAP1/TAZ染色更强。总体基因组稳定性表明,临床样本中的Hippo通路失调并非由SV驱动。**结论:**NAB2::STAT6通过使Hippo通路失活促进SFT进展,揭示了一个潜在可靶向的治疗弱点,并进一步拓展了对NAB2::STAT6驱动肿瘤发生机制的认识。
Solitary fibrous tumour (SFT) is a rare mesenchymal neoplasm molecularly defined by the NAB2::STAT6 gene fusion (GF), an aberrant transcriptional regulator whose functions beyond EGR1 activation remain incompletely understood. This study aimed to further elucidate the oncogenic role of NAB2::STAT6 and to identify potential therapeutic vulnerabilities.
Human mesenchymal stem cell derived SFT models (SFT-MSCs) were generated via ectopic expression of NAB2::STAT6 and analysed by gene expression microarray to assess the impact of this fusion on the transcriptomic profile. Stable SFT-MSC clones were subjected to functional assays following YAP1/TAZ silencing via siRNAs or pharmacological inhibition with dasatinib. Transcriptomic profiling of 16 tumours was performed to investigate correlations between Hippo pathway and EGR1 transcriptional signatures. Nuclear YAP1/TAZ expression was assessed by immunohistochemistry (IHC) in 44 patient samples, and genomic structural variations (SVs) were analyzed in 8 SFT specimens through Optical Genome Mapping.
NAB2::STAT6 ectopic expression led to Hippo pathway dysregulation and promoted a malignant phenotype, which was partially reversible upon YAP1/TAZ knockdown or dasatinib treatment. Total RNA-seq of SFT local cases confirmed transcriptional inactivation of Hippo signalling and revealed a network linking Hippo and EGR1 pathways. Stronger nuclear YAP1/TAZ staining was observed in relapsed SFT samples compared with primary tumors. The overall genomic stability precluded Hippo pathway deregulation via SVs in clinical samples.
NAB2::STAT6 promotes SFT progression by inactivating the Hippo pathway, unveiling a potential targetable vulnerability and further expanding our understanding of NAB2::STAT6-driven oncogenesis.
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