Morazzo Sofia, Fernandes Soraia, Fortea Marina, Skálová Helena, Pereira-Sousa Daniel, Cassani Marco, Vrzalová Kamila, Kafka Filip, Vrbský Jan, Soulez Mathilde, Meloche Sylvain, Morten-Seternes Ole, Bosáková Veronika, Shin Jaeyoung, Frič Jan, Haase Kristina, Forte Giancarlo
International Clinical Research Center (ICRC), St Anne's University Hospital, Brno, Czechia.
Department of Biology, Faculty of Medicine, Masaryk University, Brno, Czechia.
Front Oncol. 2025 Aug 27;15:1563969. doi: 10.3389/fonc.2025.1563969. eCollection 2025.
Triple-negative breast cancer (TNBC) is the most aggressive subtype of breast cancer, in which epithelial-to-mesenchymal transition (EMT) plasticity is required for successful metastasis. ERK3 has been implicated in promoting breast cancer migration and invasion, but the mechanisms remain elusive. Here, we investigated ERK3 expression across patient-derived datasets and explored its role in promoting EMT plasticity using different 2D and 3D models to investigate cell-extracellular matrix adhesion, migration and invasion, anchorage-independent growth, extravasation and colonization. We have established an association between ERK3 overexpression and aggressive breast cancer phenotypes, higher tumour plasticity, as informed by its grade, and poor clinical outcomes. Based on the hypothesis that ERK3 contributes to TNBC progression by supporting a partial-EMT state, we showed that ERK3 contributes to different steps of the metastatic process, especially by enabling collective migration but also by modulating other functional aspects related to an active EMT program. In conclusion, our results demonstrate that ERK3 contributes to TNBC progression and potentially metastasis by promoting EMT plasticity and collective migration.
三阴性乳腺癌(TNBC)是最具侵袭性的乳腺癌亚型,其中上皮-间质转化(EMT)可塑性是成功转移所必需的。ERK3已被证明与促进乳腺癌的迁移和侵袭有关,但其机制仍不清楚。在这里,我们研究了患者来源数据集中ERK3的表达,并使用不同的二维和三维模型探讨了其在促进EMT可塑性中的作用,以研究细胞与细胞外基质的粘附、迁移和侵袭、非锚定依赖性生长、外渗和定植。我们已经建立了ERK3过表达与侵袭性乳腺癌表型、更高的肿瘤可塑性(由其分级可知)和不良临床结果之间的关联。基于ERK3通过支持部分EMT状态促进TNBC进展的假设,我们表明ERK3有助于转移过程的不同步骤,特别是通过促进集体迁移,还通过调节与活跃EMT程序相关的其他功能方面。总之,我们的结果表明,ERK3通过促进EMT可塑性和集体迁移,有助于TNBC的进展和潜在转移。