Keil Silvia, Dittmar Thomas
Immunology and Tumor Biology, Center for Biomedical Education and Research (ZBAF), Witten/Herdecke University, 58448 Witten, Germany.
Int J Mol Sci. 2025 Jul 22;26(15):7033. doi: 10.3390/ijms26157033.
Snail and Zeb1 have been suggested as markers for the hybrid/mixed epithelial (E)/mesenchymal (M) state of cancer cells. Such cancer cells co-express E- and M-specific transcripts and possess cancer stem cell properties. M13HS-2/-8 tumor hybrid clones derived from human M13SV1-EGFP-Neo breast epithelial cells and human HS578T-Hyg breast cancer cells exhibited co-expression of Snail and Zeb1. To explore the impact of Snail on stemness/epithelial-to-mesenchymal transition (EMT)-related properties in M13HS-2/-8 tumor hybrid clones, Snail was knocked out (KO) using CRISPR/Cas9. Mammosphere formation, colony formation, Western blot analyses, cell migration, and invasion assays were conducted for the characterization of Snail knockout cells. Interestingly, Snail-KO in M13SV1-EGFP-Neo cells resulted in the up-regulation of vimentin and N-cadherin, suggesting EMT induction, which was associated with a significantly enhanced colony formation capacity. In contrast, EMT marker pattern and colony formation capacities of M13HS-2/-8 Snail-KO tumor hybrid clones remained unchanged. Notably, the mammosphere formation capacities of M13HS-2/-8 Snail-KO tumor hybrid clones were significantly reduced. The migratory behavior of all Snail-KO cells was not altered compared with their wild-type counterparts. In contrast, M13HS-2 hybrids and their M13HS-2 Snail-KO variant exhibited a markedly enhanced invasive capacity. Therefore, Snail plays a role as a mediator of stemness properties rather than mediating EMT.
蜗牛蛋白(Snail)和锌指E盒结合蛋白1(Zeb1)被认为是癌细胞杂交/混合上皮(E)/间充质(M)状态的标志物。这类癌细胞共表达E和M特异性转录本,并具有癌症干细胞特性。源自人M13SV1-EGFP-Neo乳腺上皮细胞和人HS578T-Hyg乳腺癌细胞的M13HS-2/-8肿瘤杂交克隆显示出Snail和Zeb1的共表达。为了探究Snail对M13HS-2/-8肿瘤杂交克隆中干性/上皮-间质转化(EMT)相关特性的影响,使用CRISPR/Cas9敲除(KO)了Snail。进行了乳腺球形成、集落形成、蛋白质免疫印迹分析、细胞迁移和侵袭实验,以对Snail敲除细胞进行表征。有趣的是,M13SV1-EGFP-Neo细胞中的Snail基因敲除导致波形蛋白和N-钙黏蛋白上调,提示诱导了EMT,这与集落形成能力显著增强有关。相比之下,M13HS-2/-8 Snail基因敲除肿瘤杂交克隆的EMT标志物模式和集落形成能力保持不变。值得注意的是,M13HS-2/-8 Snail基因敲除肿瘤杂交克隆的乳腺球形成能力显著降低。与野生型对应细胞相比,所有Snail基因敲除细胞的迁移行为均未改变。相反,M13HS-2杂交细胞及其M13HS-2 Snail基因敲除变体表现出明显增强的侵袭能力。因此,Snail作为干性特性的调节因子发挥作用,而非介导EMT。