Düster Robert, Ji Yanlong, Pan Kuan-Ting, Urlaub Henning, Geyer Matthias
Institute of Structural Biology, University of Bonn, Venusberg-Campus 1, 53127 Bonn, Germany.
Max Planck Institute for Multidisciplinary Sciences, Bioanalytical Mass Spectrometry, 37077 Göttingen, Germany.
Open Biol. 2022 Mar;12(3):210381. doi: 10.1098/rsob.210381. Epub 2022 Mar 16.
Cyclin-dependent kinases (CDKs) are key players in cell cycle regulation and transcription. The CDK-family member Cdk10 is important for neural development and can act as a tumour suppressor, but the underlying molecular mechanisms are largely unknown. Here, we provide an in-depth analysis of Cdk10 substrate specificity and function. Using recombinant Cdk10/CycQ protein complexes, we characterize RNA pol II CTD, c-MYC and RB1 as protein substrates. Using an analogue-sensitive mutant kinase, we identify 89 different Cdk10 phosphosites in HEK cells originating from 66 different proteins. Among these, proteins involved in cell cycle, translation, stress response, growth signalling, as well as rRNA, and mRNA transcriptional regulation, are found. Of a set of pan-selective CDK- and Cdk9-specific inhibitors tested, all inhibited Cdk10/CycQ at least five times weaker than their proposed target kinases. We also identify Cdk10 as an substrate of Cdk1 and Cdk5 at multiple sites, allowing for a potential cross-talk between these CDKs. With this functional characterization, Cdk10 adopts a hybrid position in both cell cycle and transcriptional regulation.
细胞周期蛋白依赖性激酶(CDKs)是细胞周期调控和转录的关键因子。CDK家族成员Cdk10对神经发育很重要,并且可以作为肿瘤抑制因子,但其潜在的分子机制在很大程度上尚不清楚。在这里,我们对Cdk10的底物特异性和功能进行了深入分析。使用重组Cdk10/CycQ蛋白复合物,我们将RNA聚合酶II C末端结构域(CTD)、c-MYC和RB1鉴定为蛋白底物。使用一种对类似物敏感的突变激酶,我们在HEK细胞中鉴定出源自66种不同蛋白质的89个不同的Cdk10磷酸化位点。其中,发现了参与细胞周期、翻译、应激反应、生长信号传导以及rRNA和mRNA转录调控的蛋白质。在测试的一组泛选择性CDK和Cdk9特异性抑制剂中,所有抑制剂对Cdk10/CycQ的抑制作用比对其假定的靶激酶至少弱五倍。我们还确定Cdk10在多个位点是Cdk1和Cdk5的底物,这使得这些CDK之间可能存在相互作用。通过这种功能表征,Cdk10在细胞周期和转录调控中处于混合地位。