Giráldez Servando, Herrero-Ruiz Joaquín, Mora-Santos Mar, Japón Miguel Á, Tortolero Maria, Romero Francisco
Departamento de Microbiología, Facultad de Biología, Universidad de Sevilla. Apartado de correos 1095. 41080-Sevilla, Spain.
Instituto de Biomedicina de Sevilla (IBIS), Hospital Universitario Virgen del Rocío/CSIC/Universidad de Sevilla and Departamento de Anatomía Patológica, Hospital Universitario Virgen del Rocío, 41013 Sevilla, Spain.
Oncotarget. 2014 Jun 30;5(12):4370-83. doi: 10.18632/oncotarget.2021.
The intra-S-checkpoint is essential to control cell progression through S phase under normal conditions and in response to replication stress. When DNA lesions are detected, replication fork progression is blocked allowing time for repair to avoid genomic instability and the risk of cancer. DNA replication initiates at many origins of replication in eukaryotic cells, where a series of proteins form pre-replicative complexes (pre-RCs) that are activated to become pre-initiation complexes and ensure a single round of replication in each cell cycle. PLK1 plays an important role in the regulation of DNA replication, contributing to the regulation of pre-RCs formation by phosphorylating several proteins, under both normal and stress conditions. Here we report that PLK1 is ubiquitinated and degraded by SCFFBXW7α/proteasome. Moreover, we identified a new Cdc4 phosphodegron in PLK1, conserved from yeast to humans, whose mutation prevents PLK1 destruction. We established that endogenous SCFFBXW7α degrades PLK1 in the G1 and S phases of an unperturbed cell cycle and in S phase following UV irradiation. Furthermore, we showed that FBXW7α overexpression or UV irradiation prevented the loading of proteins onto chromatin to form pre-RCs and, accordingly, reduced cell proliferation. We conclude that PLK1 degradation mediated by SCFFBXW7α modulates the intra-S-phase checkpoint.
S期内检查点对于在正常条件下以及应对复制应激时控制细胞通过S期的进程至关重要。当检测到DNA损伤时,复制叉的进展会被阻断,从而留出修复时间以避免基因组不稳定和癌症风险。在真核细胞中,DNA复制在多个复制起点起始,一系列蛋白质在那里形成前复制复合物(pre-RCs),这些复合物被激活成为前起始复合物,并确保每个细胞周期只进行一轮复制。在正常和应激条件下,PLK1在DNA复制的调控中发挥重要作用,通过磷酸化多种蛋白质来促进前复制复合物的形成。在此,我们报道PLK1被SCFFBXW7α/蛋白酶体泛素化并降解。此外,我们在PLK1中鉴定出一个从酵母到人类都保守的新的Cdc4磷酸化降解结构域,其突变可阻止PLK1的降解。我们证实,内源性SCFFBXW7α在未受干扰的细胞周期的G1期和S期以及紫外线照射后的S期降解PLK1。此外,我们还表明,FBXW7α的过表达或紫外线照射会阻止蛋白质加载到染色质上形成前复制复合物,从而降低细胞增殖。我们得出结论,由SCFFBXW7α介导的PLK1降解调节S期内检查点。