i3S-Institute for Research and Innovation in Health, University of Porto, Rua Alfredo Allen 208, Porto, 4200-135, Portugal.
IPATIMUP-Institute of Molecular Pathology and Immunology, University of Porto, Rua Júlio Amaral de Carvalho 45, Porto, 4200-135, Portugal.
Adv Sci (Weinh). 2023 Aug;10(24):e2300588. doi: 10.1002/advs.202300588. Epub 2023 Jun 20.
Alterations of the glycosylation machinery are common events in cancer, leading to the synthesis of aberrant glycan structures by tumor cells. Extracellular vesicles (EVs) play a modulatory role in cancer communication and progression, and interestingly, several tumor-associated glycans have already been identified in cancer EVs. Nevertheless, the impact of 3D tumor architecture in the selective packaging of cellular glycans into EVs has never been addressed. In this work, the capacity of gastric cancer cell lines with differential glycosylation is evaluated in producing and releasing EVs when cultured under conventional 2D monolayer or in 3D culture conditions. Furthermore, the proteomic content is identified and specific glycans are studied in the EVs produced by these cells, upon differential spatial organization. Here, it is observed that although the proteome of the analyzed EVs is mostly conserved, an EV differential packaging of specific proteins and glycans is found. In addition, protein-protein interaction and pathway analysis reveal individual signatures on the EVs released by 2D- and 3D-cultured cells, suggesting distinct biological functions. These protein signatures also show a correlation with clinical data. Overall, this data highlight the importance of tumor cellular architecture when assessing the cancer-EV cargo and its biological role.
糖基化机制的改变是癌症中的常见事件,导致肿瘤细胞合成异常的聚糖结构。细胞外囊泡 (EVs) 在癌症通讯和进展中发挥着调节作用,有趣的是,已经在癌症 EVs 中鉴定出几种与肿瘤相关的聚糖。然而,3D 肿瘤结构在将细胞糖基选择性包装到 EVs 中的作用从未得到解决。在这项工作中,评估了具有不同糖基化的胃癌细胞系在常规 2D 单层或 3D 培养条件下培养时产生和释放 EV 的能力。此外,在这些细胞产生的 EVs 中,在不同的空间组织下,对其蛋白质组学内容和特定糖进行了鉴定和研究。在这里,可以观察到,尽管分析的 EVs 的蛋白质组大部分是保守的,但发现了特定蛋白质和聚糖的 EV 差异包装。此外,蛋白质-蛋白质相互作用和途径分析揭示了 2D 和 3D 培养细胞释放的 EVs 上的个体特征,表明具有不同的生物学功能。这些蛋白质特征也与临床数据相关。总的来说,这些数据强调了在评估癌症-EV 货物及其生物学作用时肿瘤细胞结构的重要性。