Department of Molecular Biosciences, University of Kansas, Lawrence, Kansas, USA.
Department of Biochemistry and Molecular Biology, University of Kansas Medical Center, Kansas City Kansas, USA.
J Biol Chem. 2021 Jan-Jun;296:100164. doi: 10.1074/jbc.RA120.014328. Epub 2020 Dec 10.
Ewing sarcoma is a pediatric bone cancer that expresses the chimeric protein EWSR1/FLI1. We previously demonstrated that EWSR1/FLI1 impairs the localization of Aurora B kinase to the midzone (the midline structure located between segregating chromosomes) during anaphase. While localization of Aurora B is essential for faithful cell division, it is unknown whether interference with midzone organization by EWSR1/FLI1 induces aneuploidy. To address this, we generated stable Tet-on inducible cell lines with EWSR1/FLI1, using CRISPR/Cas9 technology to integrate the transgene at the safe-harbor AAVS1 locus in DLD-1 cells. Induced cells expressing EWSR1/FLI1 displayed an increased incidence of aberrant localization of Aurora B, and greater levels of aneuploidy, compared with noninduced cells. Furthermore, the expression of EWSR1/FLI1-T79A, containing a threonine (Thr) to alanine (Ala) substitution at amino acid 79, failed to induce these phenotypes, indicating that Thr 79 is critical for EWSR1/FLI1 interference with mitosis. In contrast, the phosphomimetic mutant EWSR1/FLI1-T79D (Thr to aspartic acid (Asp)) retained the high activity as wild-type EWSR1/FLI1. Together, these findings suggest that phosphorylation of EWSR1/FLI1 at Thr 79 promotes the colocalization of EWSR1/FLI1 and Aurora B on the chromosomes during prophase and metaphase and, in addition, impairs the localization of Aurora B during anaphase, leading to induction of aneuploidy. This is the first demonstration of the mechanism for EWSR1/FLI1-dependent induction of aneuploidy associated with mitotic dysfunction and the identification of the phosphorylation of the Thr 79 of EWSR1/FLI1 as a critical residue required for this induction.
尤文肉瘤是一种儿科骨癌,表达嵌合蛋白 EWSR1/FLI1。我们之前的研究表明,EWSR1/FLI1 在后期将 Aurora B 激酶定位到赤道板(分裂染色体之间的中线结构)的过程中会产生损伤。虽然 Aurora B 的定位对于忠实的细胞分裂是必要的,但尚不清楚 EWSR1/FLI1 对赤道板结构的干扰是否会导致非整倍体。为了解决这个问题,我们使用 CRISPR/Cas9 技术,在 DLD-1 细胞的安全港 AAVS1 基因座中整合转基因,生成了 Tet-on 诱导的 EWSR1/FLI1 稳定细胞系。与未诱导的细胞相比,表达 EWSR1/FLI1 的诱导细胞显示出 Aurora B 异常定位的发生率增加,并且非整倍体水平更高。此外,含有氨基酸 79 位苏氨酸(Thr)到丙氨酸(Ala)取代的 EWSR1/FLI1-T79A 表达,未能诱导这些表型,表明 Thr 79 对 EWSR1/FLI1 干扰有丝分裂至关重要。相比之下,磷酸模拟突变体 EWSR1/FLI1-T79D(Thr 到天冬氨酸(Asp))保留了与野生型 EWSR1/FLI1 一样高的活性。总之,这些发现表明,EWSR1/FLI1 在 Thr 79 处的磷酸化促进了 EWSR1/FLI1 和 Aurora B 在前期和中期在染色体上的共定位,并且,此外,还会损害后期 Aurora B 的定位,导致非整倍体的诱导。这是首次证明 EWSR1/FLI1 依赖性非整倍体诱导与有丝分裂功能障碍有关的机制,并且确定 EWSR1/FLI1 的 Thr 79 磷酸化是诱导这种非整倍体所必需的关键残基。