Department of Biochemistry and Molecular Biology, University of Southern California Keck School of Medicine, Los Angeles, CA 90033, USA.
Genes Dev. 2010 Nov 15;24(22):2531-42. doi: 10.1101/gad.1984210. Epub 2010 Oct 21.
Although the PR-Set7/Set8/KMT5a histone H4 Lys 20 monomethyltransferase (H4K20me1) plays an essential role in mammalian cell cycle progression, especially during G2/M, it remained unknown how PR-Set7 itself was regulated. In this study, we discovered the mechanisms that govern the dynamic regulation of PR-Set7 during mitosis, and that perturbation of these pathways results in defective mitotic progression. First, we found that PR-Set7 is phosphorylated at Ser 29 (S29) specifically by the cyclin-dependent kinase 1 (cdk1)/cyclinB complex, primarily from prophase through early anaphase, subsequent to global accumulation of H4K20me1. While S29 phosphorylation did not affect PR-Set7 methyltransferase activity, this event resulted in the removal of PR-Set7 from mitotic chromosomes. S29 phosphorylation also functions to stabilize PR-Set7 by directly inhibiting its interaction with the anaphase-promoting complex (APC), an E3 ubiquitin ligase. The dephosphorylation of S29 during late mitosis by the Cdc14 phosphatases was required for APC(cdh1)-mediated ubiquitination of PR-Set7 and subsequent proteolysis. This event is important for proper mitotic progression, as constitutive phosphorylation of PR-Set7 resulted in a substantial delay between metaphase and anaphase. Collectively, we elucidated the molecular mechanisms that control PR-Set7 protein levels during mitosis, and demonstrated that its orchestrated regulation is important for normal mitotic progression.
尽管 PR-Set7/Set8/KMT5a 组蛋白 H4 赖氨酸 20 单甲基转移酶(H4K20me1)在哺乳动物细胞周期进程中发挥着重要作用,尤其是在 G2/M 期,但 PR-Set7 自身如何被调控仍不清楚。在这项研究中,我们发现了调控 PR-Set7 在有丝分裂过程中动态变化的机制,这些机制的失调会导致有丝分裂进程出现缺陷。首先,我们发现 PR-Set7 可被周期蛋白依赖性激酶 1(cdk1)/周期蛋白 B 复合物特异性地磷酸化于丝氨酸 29 (S29),主要发生在从前期到早后期,随后是 H4K20me1 的全局积累。虽然 S29 磷酸化并不影响 PR-Set7 甲基转移酶的活性,但这一事件导致 PR-Set7 从有丝分裂染色体上脱离。S29 磷酸化还通过直接抑制其与后期促进复合物(APC)的相互作用,从而起到稳定 PR-Set7 的作用,APC 是一种 E3 泛素连接酶。在有丝分裂后期,CDC14 磷酸酶对 S29 的去磷酸化作用对于 APC(cdh1)介导的 PR-Set7 泛素化和随后的蛋白水解作用是必需的。这一事件对于有丝分裂的正常进程非常重要,因为 PR-Set7 的组成性磷酸化导致了中期和后期之间的显著延迟。总的来说,我们阐明了控制有丝分裂过程中 PR-Set7 蛋白水平的分子机制,并证明了其协调调控对正常有丝分裂进程的重要性。