Department of Pathology and Laboratory Medicine, The Warren Alpert Medical School, Brown University, Providence, RI 02912, USA; Legorreta Cancer Center, The Warren Alpert Medical School, Brown University, Providence, RI 02912, USA.
Department of Translational Molecular Pathology, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.
Cell Rep. 2023 Dec 26;42(12):113470. doi: 10.1016/j.celrep.2023.113470. Epub 2023 Nov 20.
Epithelial-mesenchymal transition (EMT) empowers epithelial cells with mesenchymal and stem-like attributes, facilitating metastasis, a leading cause of cancer-related mortality. Hybrid epithelial-mesenchymal (E/M) cells, retaining both epithelial and mesenchymal traits, exhibit heightened metastatic potential and stemness. The mesenchymal intermediate filament, vimentin, is upregulated during EMT, enhancing the resilience and invasiveness of carcinoma cells. The phosphorylation of vimentin is critical to its structure and function. Here, we identify that stabilizing vimentin phosphorylation at serine 56 induces multinucleation, specifically in hybrid E/M cells with stemness properties but not epithelial or mesenchymal cells. Cancer stem-like cells are especially susceptible to vimentin-induced multinucleation relative to differentiated cells, leading to a reduction in self-renewal and stemness. As a result, vimentin-induced multinucleation leads to sustained inhibition of stemness properties, tumor initiation, and metastasis. These observations indicate that a single, targetable phosphorylation event in vimentin is critical for stemness and metastasis in carcinomas with hybrid E/M properties.
上皮-间充质转化 (EMT) 赋予上皮细胞间充质和干细胞样特性,促进转移,这是癌症相关死亡的主要原因。混合上皮-间充质 (E/M) 细胞保留了上皮和间充质特征,表现出更高的转移潜力和干细胞特性。中间丝波形蛋白在 EMT 期间上调,增强了癌细胞的弹性和侵袭性。波形蛋白的磷酸化对其结构和功能至关重要。在这里,我们发现稳定丝氨酸 56 上的波形蛋白磷酸化可诱导多核形成,特别是在具有干细胞特性的混合 E/M 细胞中,但不是上皮或间充质细胞。与分化细胞相比,癌症干细胞样细胞特别容易受到波形蛋白诱导的多核形成的影响,导致自我更新和干细胞特性减少。因此,波形蛋白诱导的多核形成导致干细胞特性、肿瘤起始和转移的持续抑制。这些观察结果表明,波形蛋白中的单个可靶向磷酸化事件对于具有混合 E/M 特性的癌中的干细胞特性和转移至关重要。