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融合蛋白驱动的IGF-IR/PI3K/AKT信号失调Hippo通路,促进黏液样脂肪肉瘤中YAP1和FUS-DDIT3的致癌协同作用。

Fusion protein-driven IGF-IR/PI3K/AKT signals deregulate Hippo pathway promoting oncogenic cooperation of YAP1 and FUS-DDIT3 in myxoid liposarcoma.

作者信息

Berthold Ruth, Isfort Ilka, Erkut Cihan, Heinst Lorena, Grünewald Inga, Wardelmann Eva, Kindler Thomas, Åman Pierre, Grünewald Thomas G P, Cidre-Aranaz Florencia, Trautmann Marcel, Fröhling Stefan, Scholl Claudia, Hartmann Wolfgang

机构信息

Division of Translational Pathology, Gerhard-Domagk-Institute of Pathology, Münster University Hospital, Münster, Germany.

Gerhard-Domagk-Institute of Pathology, Münster University Hospital, Münster, Germany.

出版信息

Oncogenesis. 2022 Apr 22;11(1):20. doi: 10.1038/s41389-022-00394-7.

Abstract

Myxoid liposarcoma (MLS) represents a common subtype of liposarcoma molecularly characterized by a recurrent chromosomal translocation that generates a chimeric FUS-DDIT3 fusion gene. The FUS-DDIT3 oncoprotein has been shown to be crucial in MLS pathogenesis. Acting as a transcriptional dysregulator, FUS-DDIT3 stimulates proliferation and interferes with adipogenic differentiation. As the fusion protein represents a therapeutically challenging target, a profound understanding of MLS biology is elementary to uncover FUS-DDIT3-dependent molecular vulnerabilities. Recently, a specific reliance on the Hippo pathway effector and transcriptional co-regulator YAP1 was detected in MLS; however, details on the molecular mechanism of FUS-DDIT3-dependent YAP1 activation, and YAP1´s precise mode of action remain unclear. In elaborate in vitro studies, employing RNA interference-based approaches, small-molecule inhibitors, and stimulation experiments with IGF-II, we show that FUS-DDIT3-driven IGF-IR/PI3K/AKT signaling promotes stability and nuclear accumulation of YAP1 via deregulation of the Hippo pathway. Co-immunoprecipitation and proximity ligation assays revealed nuclear co-localization of FUS-DDIT3 and YAP1/TEAD in FUS-DDIT3-expressing mesenchymal stem cells and MLS cell lines. Transcriptome sequencing of MLS cells demonstrated that FUS-DDIT3 and YAP1 co-regulate oncogenic gene signatures related to proliferation, cell cycle progression, apoptosis, and adipogenesis. In adipogenic differentiation assays, we show that YAP1 critically contributes to FUS-DDIT3-mediated adipogenic differentiation arrest. Taken together, our study provides mechanistic insights into a complex FUS-DDIT3-driven network involving IGF-IR/PI3K/AKT signals acting on Hippo/YAP1, and uncovers substantial cooperative effects of YAP1 and FUS-DDIT3 in the pathogenesis of MLS.

摘要

黏液样脂肪肉瘤(MLS)是脂肪肉瘤的一种常见亚型,其分子特征是存在一种反复出现的染色体易位,该易位产生嵌合的FUS-DDIT3融合基因。FUS-DDIT3癌蛋白已被证明在MLS发病机制中起关键作用。作为一种转录失调因子,FUS-DDIT3刺激细胞增殖并干扰脂肪生成分化。由于融合蛋白是一个具有治疗挑战性的靶点,因此深入了解MLS生物学对于揭示FUS-DDIT3依赖性分子弱点至关重要。最近,在MLS中检测到对Hippo通路效应器和转录共调节因子YAP1的特异性依赖;然而,FUS-DDIT3依赖性YAP1激活的分子机制细节以及YAP1的确切作用模式仍不清楚。在精心设计的体外研究中,我们采用基于RNA干扰的方法、小分子抑制剂以及IGF-II刺激实验,结果表明FUS-DDIT3驱动的IGF-IR/PI3K/AKT信号通过Hippo通路失调促进YAP1的稳定性和核积累。免疫共沉淀和邻近连接分析揭示了在表达FUS-DDIT3的间充质干细胞和MLS细胞系中,FUS-DDIT3与YAP1/TEAD在细胞核中共定位。MLS细胞的转录组测序表明,FUS-DDIT3和YAP1共同调节与增殖、细胞周期进程、凋亡和脂肪生成相关的致癌基因特征。在脂肪生成分化实验中,我们表明YAP1对FUS-DDIT3介导的脂肪生成分化阻滞起关键作用。综上所述,我们的研究为一个复杂的FUS-DDIT3驱动网络提供了机制性见解,该网络涉及作用于Hippo/YAP1的IGF-IR/PI3K/AKT信号,并揭示了YAP1和FUS-DDIT3在MLS发病机制中的显著协同作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9085/9033823/8e33aef5f494/41389_2022_394_Fig1_HTML.jpg

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