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致癌 RELA 融合蛋白激活 Hedgehog 信号通路揭示幕上室管膜瘤中存在原发性纤毛依赖性脆弱性。

Activation of Hedgehog signaling by the oncogenic RELA fusion reveals a primary cilia-dependent vulnerability in supratentorial ependymoma.

机构信息

Department of Genetics, Ribeirão Preto Medical School, University of São Paulo, Ribeirão Preto, São Paulo, Brazil.

Department of Cell Biology, Harvard Medical School, Boston, Massachusetts, USA.

出版信息

Neuro Oncol. 2023 Jan 5;25(1):185-198. doi: 10.1093/neuonc/noac147.

Abstract

BACKGROUND

Supratentorial RELA fusion (ST-RELA) ependymomas (EPNs) are resistant tumors without an approved chemotherapeutic treatment. Unfortunately, the molecular mechanisms that lead to chemoresistance traits of ST-RELA remain elusive. The aim of this study was to assess RELA fusion-dependent signaling modules, specifically the role of the Hedgehog (Hh) pathway as a novel targetable vulnerability in ST-RELA.

METHODS

Gene expression was analyzed in EPN from patient cohorts, by microarray, RNA-seq, qRT-PCR, and scRNA-seq. Inhibitors against Smoothened (SMO) (Sonidegib) and Aurora kinase A (AURKA) (Alisertib) were evaluated. Protein expression, primary cilia formation, and drug effects were assessed by immunoblot, immunofluorescence, and immunohistochemistry.

RESULTS

Hh components were selectively overexpressed in EPNs induced by the RELA fusion. Single-cell analysis showed that the Hh signature was primarily confined to undifferentiated, stem-like cell subpopulations. Sonidegib exhibited potent growth-inhibitory effects on ST-RELA cells, suggesting a key role in active Hh signaling; importantly, the effect of Sonidegib was reversed by primary cilia loss. We, thus, tested the effect of AURKA inhibition by Alisertib, to induce cilia stabilization/reassembly. Strikingly, Alisertib rescued ciliogenesis and synergized with Sonidegib in killing ST-RELA cells. Using a xenograft model, we show that cilia loss is a mechanism for acquiring resistance to the inhibitory effect of Sonidegib. However, Alisertib fails to rescue cilia and highlights the need for other strategies to promote cilia reassembly, for treating ST-RELA tumors.

CONCLUSION

Our study reveals a crucial role for the Hh pathway in ST-RELA tumor growth, and suggests that rescue of primary cilia represents a vulnerability of the ST-RELA EPNs.

摘要

背景

幕上 RELA 融合(ST-RELA)室管膜瘤(EPNs)是一种耐药肿瘤,目前尚无批准的化疗治疗方法。不幸的是,导致 ST-RELA 化疗耐药特征的分子机制仍不清楚。本研究旨在评估 RELA 融合依赖性信号模块,特别是 Hedgehog(Hh)途径作为 ST-RELA 中一种新的可靶向脆弱性的作用。

方法

通过微阵列、RNA-seq、qRT-PCR 和 scRNA-seq 分析来自患者队列的 EPN 中的基因表达。评估了针对 Smoothened(SMO)(索拉非尼)和 Aurora 激酶 A(AURKA)(alisertib)的抑制剂。通过免疫印迹、免疫荧光和免疫组织化学评估蛋白表达、初级纤毛形成和药物作用。

结果

Hh 成分在 RELA 融合诱导的 EPNs 中选择性过表达。单细胞分析表明,Hh 特征主要局限于未分化的、干细胞样细胞亚群。索拉非尼对 ST-RELA 细胞表现出强大的生长抑制作用,表明其在活跃的 Hh 信号传导中起关键作用;重要的是,索拉非尼的作用可通过初级纤毛缺失而逆转。因此,我们测试了 Alisertib 抑制 AURKA 以诱导纤毛稳定/组装的效果。令人惊讶的是,Alisertib 挽救了纤毛发生,并与 Sonidegib 协同杀死 ST-RELA 细胞。使用异种移植模型,我们表明纤毛缺失是获得对 Sonidegib 抑制作用的耐药性的一种机制。然而,Alisertib 未能挽救纤毛,并强调需要其他策略来促进纤毛重排,以治疗 ST-RELA 肿瘤。

结论

我们的研究揭示了 Hh 途径在 ST-RELA 肿瘤生长中的关键作用,并表明初级纤毛的挽救代表了 ST-RELA EPNs 的脆弱性。

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