Platelet-derived extracellular vesicles induced through different activation pathways drive melanoma progression by functional and transcriptional changes.

IF 8.2 2区 生物学 Q1 CELL BIOLOGY Cell Communication and Signaling Pub Date : 2024-12-18 DOI:10.1186/s12964-024-01973-4
Zeynep Tavukcuoglu, Umar Butt, Alessandra V Sousa de Faria, Johannes Oesterreicher, Wolfgang Holnthoner, Saara Laitinen, Mari Palviainen, Pia R-M Siljander
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Abstract

Background: Beyond their conventional roles in hemostasis and wound healing, platelets have been shown to facilitate hematogenous metastasis by interacting with cancer cells. Depending on the activation route, platelets also generate different platelet-derived extracellular vesicles (PEVs) that may educate cancer cells in the circulation or within the tumor microenvironment. We engaged different platelet-activating receptors, including glycoprotein VI and C-type lectin-like receptor 2, to generate a spectrum of PEV types. This allowed us to investigate the differential capacity of PEVs to alter cancer hallmark functions such as proliferation, invasion, and pro-angiogenic potential using melanoma as a model. Additionally, we analyzed changes in the cell transcriptomes and cancer EV profiles.

Methods: Two human melanoma cell lines (MV3 and A2058) with differential metastatic potential were studied in the 3D spheroid cultures. Human platelets were activated with collagen related peptide (CRP), fucoidan from Fucus vesiculosus (FFV), thrombin & collagen co-stimulus and Ca2+ ionophore, and PEVs were isolated by size-exclusion chromatography followed by ultrafiltration. Spheroids or cells were treated with PEVs and used in functional assays of proliferation, invasion, and endothelial tube formation as well as for the analysis of cancer EV production and their tetraspanin profiles. Differentially expressed genes and enriched signaling pathways in the PEV-treated spheroids were analyzed at 6 h and 24 h by RNA sequencing.

Results: Among the studied PEVs, those generated by CRP and FFV exhibited the most pronounced effects on altering cancer hallmark functions. Specifically, CRP and FFV PEVs increased proliferation in both MV3 and A2058 spheroids. Distinct tetraspanin signatures of melanoma EVs were induced by all PEV types. While the PI3K-Akt and MAPK signaling pathways were activated by both CRP and FFV PEVs, they differently upregulated the immunomodulatory TGF-β and type-I interferon signaling pathways, respectively.

Conclusions: Our study revealed both shared and distinct, cancer-promoting functions of PEVs, which contributed to the transcriptome and metastatic capabilities of the melanoma spheroids. Inhibiting the platelet receptors that modulate the PEVs' cancer-promoting properties may open up new strategies for identifying promising treatment targets for cancer therapy.

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通过不同激活途径诱导的血小板来源的细胞外囊泡通过功能和转录变化驱动黑色素瘤的进展。
背景:除了止血和伤口愈合的传统作用外,血小板已被证明通过与癌细胞相互作用促进血液转移。根据激活途径的不同,血小板还会产生不同的血小板来源的细胞外囊泡(PEVs),这些细胞外囊泡可能会在循环或肿瘤微环境中教育癌细胞。我们使用了不同的血小板激活受体,包括糖蛋白VI和c型凝集素样受体2,以产生PEV类型的光谱。这使我们能够以黑色素瘤为模型,研究pev改变癌症标志功能(如增殖、侵袭和促血管生成潜能)的不同能力。此外,我们分析了细胞转录组和癌症EV谱的变化。方法:对两种具有不同转移潜力的人黑色素瘤细胞系(MV3和A2058)进行三维球形培养研究。用胶原蛋白相关肽(CRP)、墨角藻多糖(FFV)、凝血酶和胶原共刺激物以及Ca2+离子载体激活人血小板,并采用超滤-粒径排除层析法分离pev。球体或细胞用pev处理,并用于增殖、侵袭和内皮管形成的功能分析,以及分析癌症EV的产生及其四聚氰胺谱。在pev处理的球体中,6 h和24 h通过RNA测序分析差异表达基因和富集的信号通路。结果:在研究的pev中,CRP和FFV产生的pev对改变癌症标志功能的影响最为显著。具体来说,CRP和FFV pev增加了MV3和A2058球体的增殖。所有PEV类型均可诱导黑色素瘤EVs的明显四白蛋白特征。虽然PI3K-Akt和MAPK信号通路都被CRP和FFV pev激活,但它们分别不同地上调免疫调节TGF-β和i型干扰素信号通路。结论:我们的研究揭示了pev的共同和独特的促癌功能,这有助于黑色素瘤球体的转录组和转移能力。抑制调节pev促癌特性的血小板受体可能为确定有希望的癌症治疗靶点开辟新的策略。
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来源期刊
CiteScore
11.00
自引率
0.00%
发文量
180
期刊介绍: Cell Communication and Signaling (CCS) is a peer-reviewed, open-access scientific journal that focuses on cellular signaling pathways in both normal and pathological conditions. It publishes original research, reviews, and commentaries, welcoming studies that utilize molecular, morphological, biochemical, structural, and cell biology approaches. CCS also encourages interdisciplinary work and innovative models, including in silico, in vitro, and in vivo approaches, to facilitate investigations of cell signaling pathways, networks, and behavior. Starting from January 2019, CCS is proud to announce its affiliation with the International Cell Death Society. The journal now encourages submissions covering all aspects of cell death, including apoptotic and non-apoptotic mechanisms, cell death in model systems, autophagy, clearance of dying cells, and the immunological and pathological consequences of dying cells in the tissue microenvironment.
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