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
{"title":"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","authors":"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","doi":"10.1101/2023.11.13.23298409","DOIUrl":null,"url":null,"abstract":"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.","PeriodicalId":478577,"journal":{"name":"medRxiv (Cold Spring Harbor Laboratory)","volume":"67 6","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-11-13","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Spatial proteo-transcriptomic profiling reveals the molecular landscape of borderline ovarian tumors and their invasive progression\",\"authors\":\"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. 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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. 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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.