School of Life and Health Sciences, University of Roehampton, London SW15 4JD, UK.
Department of Chemical Engineering, Universidad de La Frontera, Temuco, Chile.
Eur J Cell Biol. 2023 Sep;102(3):151334. doi: 10.1016/j.ejcb.2023.151334. Epub 2023 Jun 17.
The development of epithelial-to-mesenchymal transition (EMT) like features is emerging as a critical factor involved in the pathogenesis of acute myeloid leukaemia (AML). However, the extracellular signals and the signalling pathways in AML that may regulate EMT remain largely unstudied. We found that the bone marrow (BM) mesenchymal/fibroblastic cell line HS5 induces an EMT-like migratory phenotype in AML cells. AML cells underwent a strong increase of vimentin (VIM) levels that was not mirrored to the same extent by changes of expression of the other EMT core proteins SNAI1 and SNAI2. We validated these particular pattern of co-expression of core-EMT markers in AML cells by performing an in silico analysis using datasets of human tumours. Our data showed that in AML the expression levels of VIM does not completely correlate with the co-expression of core EMT markers observed in epithelial tumours. We also found that vs epithelial tumours, AML cells display a distinct patterns of co-expression of VIM and the actin binding and adhesion regulatory proteins that regulate F-actin dynamics and integrin-mediated adhesions involved in the invasive migration in cells undergoing EMT. We conclude that the BM stroma induces an EMT related pattern of migration in AML cells in a process involving a distinctive regulation of EMT markers and of regulators of cell adhesion and actin dynamics that should be further investigated. Understanding the tumour specific signalling pathways associated with the EMT process may contribute to the development of new tailored therapies for AML as well as in different types of cancers.
上皮-间充质转化 (EMT) 样特征的发展正成为急性髓系白血病 (AML) 发病机制中涉及的关键因素。然而,AML 中可能调节 EMT 的细胞外信号和信号通路在很大程度上仍未得到研究。我们发现骨髓 (BM) 间充质/成纤维细胞系 HS5 可诱导 AML 细胞发生 EMT 样迁移表型。AML 细胞中波形蛋白 (VIM) 的水平显著增加,而 EMT 核心蛋白 SNAI1 和 SNAI2 的表达变化则没有得到同样程度的反映。我们通过使用人类肿瘤数据集进行计算机分析验证了 AML 细胞中核心 EMT 标志物的这种特殊共表达模式。我们的数据表明,在 AML 中,VIM 的表达水平与上皮肿瘤中观察到的核心 EMT 标志物的共表达并不完全相关。我们还发现,与上皮肿瘤相比,AML 细胞显示出 VIM 与调节 F-肌动蛋白动力学和整合素介导黏附的肌动蛋白结合和黏附调节蛋白的独特共表达模式,这些蛋白参与 EMT 过程中的细胞侵袭性迁移。我们得出结论,BM 基质在涉及 EMT 标志物和细胞黏附及肌动蛋白动力学调节因子的独特调节的过程中,诱导 AML 细胞发生 EMT 相关的迁移模式,这些调节因子应进一步研究。了解与 EMT 过程相关的肿瘤特异性信号通路可能有助于为 AML 以及不同类型的癌症开发新的靶向治疗方法。