Nukina Kohei, Hayashi Akiyo, Shiomi Yasushi, Sugasawa Kaoru, Ohtsubo Motoaki, Nishitani Hideo
Graduate School of Life Science, University of Hyogo, Ako, Hyogo, Japan.
Biosignal Research Center, Kobe University, Kobe, Japan.
Genes Cells. 2018 Mar;23(3):200-213. doi: 10.1111/gtc.12563. Epub 2018 Feb 9.
CRL4 ubiquitin ligase plays an important role maintaining genome integrity during the cell cycle. A recent report suggested that Cdk1 negatively regulates CRL4 activity through phosphorylation of its receptor, Cdt2, but the involvement of phosphorylation remains unclear. To address this, we mutated all CDK consensus phosphorylation sites located in the C-terminal half region of Cdt2 (Cdt2-18A) and examined the effect on substrate degradation. We show that both cyclinA/Cdk2 and cyclinB/Cdk1 phosphorylated Cdt2 in vitro and that phosphorylation was reduced by the 18A mutation both in vitro and in vivo. The 18A mutation increased the affinity of Cdt2 to PCNA, and a high amount of Cdt2-18A was colocalized with PCNA foci during S phase in comparison with Cdt2-WT. Poly-ubiquitination activity to Cdt1 was concomitantly enhanced in cells expressing Cdt2-18A. Other CRL4 substrates, Set8 and thymine DNA glycosylase, begin to accumulate around late S phase to G2 phase, but the accumulation was prevented in Cdt2-18A cells. Furthermore, mitotic degradation of Cdt1 after UV irradiation was induced in these cells. Our results suggest that CDK-mediated phosphorylation of Cdt2 inactivates its ubiquitin ligase activity by reducing its affinity to PCNA, an important strategy for regulating the levels of key proteins in the cell cycle.
CRL4泛素连接酶在细胞周期中维持基因组完整性方面发挥着重要作用。最近的一份报告表明,Cdk1通过磷酸化其受体Cdt2对CRL4活性起负调控作用,但磷酸化的具体作用仍不清楚。为了解决这个问题,我们对位于Cdt2 C端半区的所有CDK共有磷酸化位点进行了突变(Cdt2-18A),并研究了其对底物降解的影响。我们发现,细胞周期蛋白A/Cdk2和细胞周期蛋白B/Cdk1在体外均能磷酸化Cdt2,且18A突变在体外和体内均降低了磷酸化水平。18A突变增加了Cdt2与增殖细胞核抗原(PCNA)的亲和力,与野生型Cdt2相比,在S期大量的Cdt2-18A与PCNA灶共定位。在表达Cdt2-18A的细胞中,对Cdt1的多聚泛素化活性也随之增强。其他CRL4底物,如Set8和胸腺嘧啶DNA糖基化酶,在S期末到G2期开始积累,但在Cdt2-18A细胞中这种积累被阻止。此外,这些细胞在紫外线照射后诱导了Cdt1的有丝分裂降解。我们的结果表明,CDK介导的Cdt2磷酸化通过降低其与PCNA的亲和力使其泛素连接酶活性失活,这是调节细胞周期中关键蛋白水平的重要策略。