Suzuki Kazuhiro, Sako Kosuke, Akiyama Kazuhiro, Isoda Michitaka, Senoo Chiharu, Nakajo Nobushige, Sagata Noriyuki
Department of Biology, Graduate School of Sciences, Kyushu University, Hakozaki 6-10-1, Fukuoka 812-8581, Japan.
Sci Rep. 2015 Jan 21;5:7929. doi: 10.1038/srep07929.
The cyclin B-dependent protein kinase Cdk1 is a master regulator of mitosis and phosphorylates numerous proteins on the minimal consensus motif Ser/Thr-Pro (S/T-P). At least in several proteins, however, not well-defined motifs lacking a Pro in the +1 position, referred herein to as non-S/T-P motifs, have been shown to be phosphorylated by Cdk1. Here we show that non-S/T-P motifs in fact form consensus sequences for Cdk1 and probably play roles in mitotic regulation of physiologically important proteins. First, we show, by in vitro kinase assays, that previously identified non-S/T-P motifs all harbour one or more C-terminal Arg/Lys residues essential for their phosphorylation by Cdk1. Second, using Arg/Lys-scanning oriented peptide libraries, we demonstrate that Cdk1 phosphorylates a minimal sequence S/T-X-X-R/K and more favorable sequences (P)-X-S/T-X-R/K as its non-S/T-P consensus motifs. Third, on the basis of these results, we find that highly conserved linkers (typically, T-G-E-K-P) of C2H2 zinc finger proteins and a nuclear localization signal-containing sequence (matching P-X-S-X-[R/K]5) of the cytokinesis regulator Ect2 are inhibitorily phosphorylated by Cdk1, well accounting for the known mitotic regulation and function of the respective proteins. We suggest that non-S/T-P Cdk1 consensus motifs identified here may function to regulate many other proteins during mitosis.
细胞周期蛋白B依赖性蛋白激酶Cdk1是有丝分裂的主要调节因子,可在最小共有基序Ser/Thr-Pro(S/T-P)上磷酸化众多蛋白质。然而,至少在几种蛋白质中,已证明Cdk1可磷酸化在+1位置缺乏脯氨酸的不明确基序,本文中称为非S/T-P基序。在这里,我们表明非S/T-P基序实际上构成了Cdk1的共有序列,并且可能在生理上重要蛋白质的有丝分裂调节中发挥作用。首先,我们通过体外激酶分析表明,先前鉴定的非S/T-P基序均含有一个或多个对其被Cdk1磷酸化至关重要的C末端Arg/Lys残基。其次,使用Arg/Lys扫描定向肽库,我们证明Cdk1将最小序列S/T-X-X-R/K和更有利的序列(P)-X-S/T-X-R/K磷酸化为其非S/T-P共有基序。第三,基于这些结果,我们发现C2H2锌指蛋白的高度保守接头(通常为T-G-E-K-P)和胞质分裂调节因子Ect2的含核定位信号序列(与P-X-S-X-[R/K]5匹配)被Cdk1抑制性磷酸化,很好地解释了各自蛋白质已知的有丝分裂调节和功能。我们认为,这里鉴定的非S/T-P Cdk1共有基序可能在有丝分裂期间调节许多其他蛋白质发挥作用。