Department of Life Science, Pohang University of Science and Technology, Pohang 37673, Korea.
Donnelly Centre, Departments of Molecular Genetics and Computer Science, University of Toronto, Toronto, Canada.
Mol Cells. 2017 Sep 30;40(9):621-631. doi: 10.14348/molcells.2017.0108. Epub 2017 Sep 20.
Vaccinia-related kinase 1 (VRK1) and VRK3 are members of the VRK family of serine/threonine kinases and are principally localized in the nucleus. Despite the crucial roles of VRK1/VRK3 in physiology and disease, the molecular and functional interactions of VRK1/VRK3 are poorly understood. Here, we identified over 200 unreported VRK1/VRK3-interacting candidate proteins by affinity purification and LC-MS/MS. The networks of VRK1 and VRK3 interactomes were found to be associated with important biological processes such as the cell cycle, DNA repair, chromatin assembly, and RNA processing. Interactions of interacting proteins with VRK1/VRK3 were confirmed by biochemical assays. We also found that phosphorylations of XRCC5 were regulated by both VRK1/VRK3, and that of CCNB1 was regulated by VRK3. In liver cancer cells and tissues, VRK1/VRK3 were highly upregulated and its depletion affected cell cycle progression in the different phases. VRK3 seemed to affect S phase progression and G2 or M phase entry and exit, whereas VRK1 affects G1/S transition in the liver cancer, which could be explained by different interacting candidate proteins. Thus, this study not only provides a resource for investigating the unidentified functions of VRK1/VRK3, but also an insight into the regulatory roles of VRK1/VRK3 in biological processes.
痘苗病毒相关激酶 1(VRK1)和 VRK3 是丝氨酸/苏氨酸激酶 VRK 家族的成员,主要定位于细胞核内。尽管 VRK1/VRK3 在生理和疾病中起着至关重要的作用,但 VRK1/VRK3 的分子和功能相互作用仍知之甚少。在这里,我们通过亲和纯化和 LC-MS/MS 鉴定了 200 多种未报道的 VRK1/VRK3 相互作用候选蛋白。发现 VRK1 和 VRK3 相互作用网络与重要的生物学过程相关,如细胞周期、DNA 修复、染色质组装和 RNA 处理。通过生化测定证实了相互作用蛋白与 VRK1/VRK3 的相互作用。我们还发现 XRCC5 的磷酸化受 VRK1/VRK3 调节,CCNB1 的磷酸化受 VRK3 调节。在肝癌细胞和组织中,VRK1/VRK3 高度上调,其耗竭影响不同阶段的细胞周期进程。VRK3 似乎影响 S 期进展和 G2 或 M 期进入和退出,而 VRK1 影响肝癌中的 G1/S 转换,这可以通过不同的相互作用候选蛋白来解释。因此,本研究不仅为研究 VRK1/VRK3 的未识别功能提供了资源,而且深入了解了 VRK1/VRK3 在生物学过程中的调节作用。