Department of Oral Biology and Diagnostic Sciences, Augusta University, Augusta, GA, USA.
The Graduate School, Augusta University, Augusta, GA, USA.
Br J Cancer. 2020 Sep;123(7):1078-1088. doi: 10.1038/s41416-020-0976-6. Epub 2020 Jul 9.
EPS8 is a scaffolding protein that regulates proliferation, actin dynamics and receptor trafficking. Its expression is increased in cancer, enhancing mitogenesis, migration and tumorigenesis. Src phosphorylates EPS8 at four tyrosine residues, although the function is unknown. Here we investigated the pro-oncogenic role of EPS8 tyrosine phosphorylation at Src target sites in HNSCC.
Plasmids expressing EPS8 Src-mediated phosphorylation site mutants (Y485F, Y525F, Y602F, Y774F and all four combined [FFFF]) were expressed in cells containing a normal endogenous level of EPS8. In addition, cells were treated with dasatinib to inhibit Src activity. EPS8 downstream targets were evaluated by western blotting. Wound closure, proliferation, immunofluorescence and tumorgenicity assays were used to investigate the impact of phenylalanine mutations on EPS8 biological functions.
FOXM1, AURKA, and AURKB were decreased in cells expressing FFFF- and Y602F-EPS8 mutants, while cells harbouring the Y485F-, Y525F- and Y774F-EPS8 mutants showed no differences compared to controls. Consistent with this, dasatinib decreased the expression of EPS8 targets. Moreover, Y602F- and FFFF-EPS8 mutants reduced mitogenesis and motility. Strikingly though, FFFF- or Y602F-EPS8 mutants actually promoted tumorigenicity compared with control cells.
Phosphorylation of EPS8 at Y602 is crucial for signalling to the cell cycle and may provide insight to explain reduced efficacy of dasatinib treatment.
EPS8 是一种支架蛋白,可调节增殖、肌动蛋白动力学和受体运输。其在癌症中表达增加,增强有丝分裂、迁移和肿瘤发生。Src 在四个酪氨酸残基上磷酸化 EPS8,尽管其功能未知。在这里,我们研究了 Src 靶向 EPS8 酪氨酸磷酸化在头颈部鳞状细胞癌中的致癌作用。
在含有正常内源性 EPS8 水平的细胞中表达表达 EPS8 Src 介导的磷酸化位点突变体(Y485F、Y525F、Y602F、Y774F 和所有四个组合[FFFF])的质粒。此外,用达沙替尼处理细胞以抑制 Src 活性。通过 Western blot 评估 EPS8 下游靶标。伤口闭合、增殖、免疫荧光和致瘤性测定用于研究苯丙氨酸突变对 EPS8 生物学功能的影响。
在表达 FFFF-和 Y602F-EPS8 突变体的细胞中,FOXM1、AURKA 和 AURKB 减少,而携带 Y485F、Y525F 和 Y774F-EPS8 突变体的细胞与对照相比没有差异。与此一致,达沙替尼降低了 EPS8 靶标的表达。此外,Y602F-和 FFFF-EPS8 突变体减少了有丝分裂和运动性。然而,令人惊讶的是,与对照细胞相比,FFF-或 Y602F-EPS8 突变体实际上促进了肿瘤发生。
EPS8 在 Y602 上的磷酸化对于信号传递到细胞周期至关重要,并且可能提供了对解释达沙替尼治疗效果降低的深入了解。