Molecular Biology Institute of Barcelona IBMB-CSIC, Barcelona, Catalonia, Spain.
Department of Microbiology and Immunology, School of Pharmacy, Zagazig University, Zagazig, Egypt.
EMBO J. 2018 Aug 15;37(16). doi: 10.15252/embj.201798724. Epub 2018 Jun 27.
Cells sense myriad signals during G1, and a rapid response to prevent cell cycle entry is of crucial importance for proper development and adaptation. Cln3, the most upstream G1 cyclin in budding yeast, is an extremely short-lived protein subject to ubiquitination and proteasomal degradation. On the other hand, nuclear accumulation of Cln3 depends on chaperones that are also important for its degradation. However, how these processes are intertwined to control G1-cyclin fate is not well understood. Here, we show that Cln3 undergoes a challenging ubiquitination step required for both degradation and full activation. Segregase Cdc48/p97 prevents degradation of ubiquitinated Cln3, and concurrently stimulates its ER release and nuclear accumulation to trigger Start. Cdc48/p97 phosphorylation at conserved Cdk-target sites is important for recruitment of specific cofactors and, in both yeast and mammalian cells, to attain proper G1-cyclin levels and activity. Cdk-dependent modulation of Cdc48 would subjugate G1 cyclins to fast and reversible state switching, thus arresting cells promptly in G1 at developmental or environmental checkpoints, but also resuming G1 progression immediately after proliferative signals reappear.
细胞在 G1 期感知到无数信号,快速响应以防止细胞周期进入对于正常发育和适应至关重要。芽殖酵母中最上游的 G1 周期蛋白 Cln3 是一种极不稳定的蛋白质,会受到泛素化和蛋白酶体降解的影响。另一方面,Cln3 的核积累依赖于对其降解也很重要的伴侣。然而,这些过程如何相互交织以控制 G1 周期蛋白命运尚不清楚。在这里,我们表明 Cln3 经历了一个具有挑战性的泛素化步骤,这是降解和完全激活所必需的。分离酶 Cdc48/p97 可防止泛素化 Cln3 的降解,同时刺激其 ER 释放和核积累以引发起始。在保守的 Cdk 靶位点磷酸化 Cdc48/p97 对于募集特定的共因子很重要,并且在酵母和哺乳动物细胞中,对于获得适当的 G1 周期蛋白水平和活性也很重要。Cdk 依赖性的 Cdc48 调节将 G1 周期蛋白置于快速和可逆的状态转换之下,从而在发育或环境检查点迅速将细胞阻滞在 G1 期,但在增殖信号再次出现后也立即恢复 G1 进程。