Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06520-8114, USA.
Mol Biol Cell. 2011 Jul 1;22(13):2175-84. doi: 10.1091/mbc.E11-01-0031. Epub 2011 May 11.
The anaphase-promoting complex/cyclosome (APC/C) is an essential ubiquitin ligase that targets cell cycle proteins for proteasome-mediated degradation in mitosis and G1. The APC regulates a number of cell cycle processes, including spindle assembly, mitotic exit, and cytokinesis, but the full range of its functions is still unknown. To better understand cellular pathways controlled by the APC, we performed a proteomic screen to identify additional APC substrates. We analyzed cell cycle-regulated proteins whose expression peaked during the period when other APC substrates were expressed. Subsequent analysis identified several proteins, including the transcriptional repressors Nrm1 and Yhp1, as authentic APC substrates. We found that APC(Cdh1) targeted Nrm1 and Yhp1 for degradation in early G1 through Destruction-box motifs and that the degradation of these repressors coincided with transcriptional activation of MBF and Mcm1 target genes, respectively. In addition, Nrm1 was stabilized by phosphorylation, most likely by the budding yeast cyclin-dependent protein kinase, Cdc28. We found that expression of stabilized forms of Nrm1 and Yhp1 resulted in reduced cell fitness, due at least in part to incomplete activation of G1-specific genes. Therefore, in addition to its known functions, APC-mediated targeting of Nrm1 and Yhp1 coordinates transcription of multiple genes in G1 with other cell cycle events.
后期促进复合物/周期蛋白体(APC/C)是一种必需的泛素连接酶,可将细胞周期蛋白靶向到蛋白酶体中进行降解,从而完成有丝分裂和 G1 期的细胞周期进程。APC 调节许多细胞周期过程,包括纺锤体组装、有丝分裂退出和胞质分裂,但它的全部功能仍不清楚。为了更好地了解 APC 控制的细胞途径,我们进行了蛋白质组学筛选,以鉴定其他 APC 底物。我们分析了细胞周期调控蛋白,这些蛋白的表达在其他 APC 底物表达期间达到峰值。随后的分析确定了几种蛋白质,包括转录抑制剂 Nrm1 和 Yhp1,它们是 APC 的真正底物。我们发现,APC(Cdh1)通过 Destruction-box 基序靶向 Nrm1 和 Yhp1 进行降解,并且这些抑制剂的降解与 MBF 和 Mcm1 靶基因的转录激活分别重合。此外,Nrm1 的稳定性受到磷酸化的调节,很可能是由芽殖酵母细胞周期依赖性蛋白激酶 Cdc28 介导的。我们发现,Nrm1 和 Yhp1 的稳定形式的表达导致细胞适应性降低,这至少部分是由于 G1 特异性基因的不完全激活。因此,除了其已知的功能外,APC 介导的 Nrm1 和 Yhp1 的靶向作用协调了 G1 中多个基因的转录与其他细胞周期事件。