Department of Biochemistry, College of Medicine, Chungbuk National University, Cheongju, South Korea.
Oncogene. 2017 Feb 16;36(7):999-1011. doi: 10.1038/onc.2016.266. Epub 2016 Jul 18.
The tumor-suppressor RUNX3 has a critical role in a lineage determination, cell cycle arrest and apoptosis. Lozenge (Lz), a Drosophila homolog of mammalian RUNX family members, has integral roles in these processes and specifically in eye cell fate determination. To elucidate the genetic modifiers of Lz/RUNX3, we performed a large-scale functional screen in a fly mutant library. The screen revealed genetic interactions between the Lz, Rac and Hippo pathways. Analysis of interactions among these genes revealed that the defective phenotype resulting from activation of Yki, an end point effector of the Hippo pathway, was suppressed by Lz and enhanced by Rac-Trio. Molecular biological analysis using mammalian homologs reveled that LATS1/2-mediated YAP phosphorylation-facilitated dissociation of the YAP-TEAD4 complex and association of the YAP-RUNX3 complex. When cells were stimulated to proliferate, activated RAC-TRIO signaling inhibited LATS1/2-mediated YAP phosphorylation; consequently, YAP dissociated from RUNX3 and associated with TEAD, thereby replacing the YAP-RUNX3 complex with YAP-TEAD. RUNX3 contributed to both association and dissociation of YAP-TEAD complex, most likely through the formation of the YAP-TEAD-RUNX3 ternary complex. Ectopic expression of RUNX3 in MKN28 gastric cancer cells reduced tumorigenicity, and the tumor-suppressive activity of RUNX3 was associated with its ability to interact with YAP. These results identify a novel regulatory mechanism, mediated by the Hippo and RAC-TRIO pathways, that changes the binding partner of YAP.
抑癌基因 RUNX3 在谱系决定、细胞周期停滞和细胞凋亡中起着关键作用。果蝇同源物 Lozenge (Lz) 在这些过程中具有重要作用,特别是在眼睛细胞命运决定中。为了阐明 Lz/RUNX3 的遗传修饰因子,我们在果蝇突变体文库中进行了大规模的功能筛选。该筛选揭示了 Lz、Rac 和 Hippo 途径之间的遗传相互作用。对这些基因相互作用的分析表明,Hippo 途径末端效应物 Yki 激活导致的缺陷表型被 Lz 抑制,被 Rac-Trio 增强。使用哺乳动物同源物进行的分子生物学分析表明,LATS1/2 介导的 YAP 磷酸化促进了 YAP-TEAD4 复合物的解离和 YAP-RUNX3 复合物的形成。当细胞受到刺激增殖时,激活的 Rac-Trio 信号抑制 LATS1/2 介导的 YAP 磷酸化;因此,YAP 从 RUNX3 解离并与 TEAD 结合,从而用 YAP-TEAD 取代 YAP-RUNX3 复合物。RUNX3 有助于 YAP-TEAD 复合物的结合和解离,最有可能是通过形成 YAP-TEAD-RUNX3 三元复合物。在 MKN28 胃癌细胞中异位表达 RUNX3 降低了肿瘤发生能力,RUNX3 的肿瘤抑制活性与其与 YAP 相互作用的能力有关。这些结果确定了一种新的调节机制,由 Hippo 和 Rac-Trio 途径介导,该机制改变了 YAP 的结合伙伴。