空间蛋白质转录组学分析揭示了交界性卵巢肿瘤及其侵袭性进展的分子景观

Lisa Schweizer, Rahul Krishnan, Aasa Shimizu, Andreas Metousis, Hilary Kenny, Rachelle Mendoza, Thierry M. Nordmann, Sarah Rauch, Lucy Kelliher, Janna Heide, Florian A. Rosenberger, Agnes Bilecz, Sanaa N. Borrego, Maximilian T. Strauss, Marvin Thielert, Edwin Rodriguez, Johannes B. Mueller-Reif, Mengjie Chen, S. Diane Yamada, Andreas Mund, Ricardo Lastra, Matthias Mann, Ernst Lengyel
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摘要

浆液性交界性肿瘤(SBT)是卵巢上皮性肿瘤病变,通常预后良好。然而,在10-15%的病例中,SBT会复发为低级别浆液性癌(LGSC),这种癌症具有深度侵袭性,对目前的标准化疗反应较差。虽然基因改变表明有一个共同的起源,但从SBT到LGSC的转变仍然知之甚少。本研究将空间蛋白质组学与空间转录组学相结合,从分子水平上阐明基质和肿瘤中SBT向LGSC的进化及其相应的转移。我们发现SBT向LGSC的转变发生在上皮室中,通过一个具有微乳头状特征的中间阶段(SBT- mp),这涉及到MAPK信号的逐渐增加。一个独特的蛋白质亚群和转录物与向侵袭性肿瘤生长的转变有关,包括神经元剪接因子NOVA2,它仅限于在LGSC及其相应的转移中表达。一项综合通路分析揭示了肿瘤细胞的异常分子信号,该信号由肿瘤微环境中血管生成和炎症的改变所支持。整合空间转录组学和蛋白质组学,然后敲除最多改变的基因或药物抑制最相关的靶点,证实了它们在调节侵袭性关键特征方面的功能意义。结合细胞类型的空间蛋白质组学和转录组学,我们可以阐明从SBT到LGSC的肿瘤发生序列。本文提出的方法是系统阐明肿瘤发生机制和寻找新的治疗策略的蓝图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatial proteo-transcriptomic profiling reveals the molecular landscape of borderline ovarian tumors and their invasive progression
Serous borderline tumors (SBT) are epithelial neoplastic lesions of the ovaries that commonly have a good prognosis. In 10-15% of cases, however, SBT will recur as low-grade serous cancer (LGSC), which is deeply invasive and responds poorly to current standard chemotherapy 1,2,3 . While genetic alterations suggest a common origin, the transition from SBT to LGSC remains poorly understood 4 . Here, we integrate spatial proteomics5 with spatial transcriptomics to elucidate the evolution from SBT to LGSC and its corresponding metastasis at the molecular level in both the stroma and the tumor. We show that the transition of SBT to LGSC occurs in the epithelial compartment through an intermediary stage with micropapillary features (SBT-MP), which involves a gradual increase in MAPK signaling. A distinct subset of proteins and transcripts was associated with the transition to invasive tumor growth, including the neuronal splicing factor NOVA2, which was limited to expression in LGSC and its corresponding metastasis. An integrative pathway analysis exposed aberrant molecular signaling of tumor cells supported by alterations in angiogenesis and inflammation in the tumor microenvironment. Integration of spatial transcriptomics and proteomics followed by knockdown of the most altered genes or pharmaceutical inhibition of the most relevant targets confirmed their functional significance in regulating key features of invasiveness. Combining cell-type resolved spatial proteomics and transcriptomics allowed us to elucidate the sequence of tumorigenesis from SBT to LGSC. The approach presented here is a blueprint to systematically elucidate mechanisms of tumorigenesis and find novel treatment strategies.
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