Department of Plant Systems Biology, VIB, Ghent, Belgium.
Mol Syst Biol. 2010 Aug 10;6:397. doi: 10.1038/msb.2010.53.
Cell proliferation is the main driving force for plant growth. Although genome sequence analysis revealed a high number of cell cycle genes in plants, little is known about the molecular complexes steering cell division. In a targeted proteomics approach, we mapped the core complex machinery at the heart of the Arabidopsis thaliana cell cycle control. Besides a central regulatory network of core complexes, we distinguished a peripheral network that links the core machinery to up- and downstream pathways. Over 100 new candidate cell cycle proteins were predicted and an in-depth biological interpretation demonstrated the hypothesis-generating power of the interaction data. The data set provided a comprehensive view on heterodimeric cyclin-dependent kinase (CDK)-cyclin complexes in plants. For the first time, inhibitory proteins of plant-specific B-type CDKs were discovered and the anaphase-promoting complex was characterized and extended. Important conclusions were that mitotic A- and B-type cyclins form complexes with the plant-specific B-type CDKs and not with CDKA;1, and that D-type cyclins and S-phase-specific A-type cyclins seem to be associated exclusively with CDKA;1. Furthermore, we could show that plants have evolved a combinatorial toolkit consisting of at least 92 different CDK-cyclin complex variants, which strongly underscores the functional diversification among the large family of cyclins and reflects the pivotal role of cell cycle regulation in the developmental plasticity of plants.
细胞增殖是植物生长的主要驱动力。尽管基因组序列分析揭示了植物中存在大量的细胞周期基因,但对于指导细胞分裂的分子复合物知之甚少。在一项靶向蛋白质组学方法中,我们绘制了拟南芥细胞周期控制中心的核心复合物机器。除了核心复合物的中央调控网络外,我们还区分了将核心机制与上下游途径联系起来的外围网络。预测了超过 100 种新的候选细胞周期蛋白,并进行了深入的生物学解释,证明了互作数据具有产生假说的能力。该数据集提供了植物中异二聚体细胞周期蛋白依赖性激酶(CDK)-细胞周期蛋白复合物的全面视图。首次发现了植物特异性 B 型 CDK 的抑制蛋白,并对有丝分裂后期促进复合物进行了表征和扩展。重要的结论是,有丝分裂 A 型和 B 型细胞周期蛋白与植物特异性 B 型 CDK 形成复合物,而不是与 CDKA;1,并且 D 型细胞周期蛋白和 S 期特异性 A 型细胞周期蛋白似乎仅与 CDKA;1 相关。此外,我们可以证明植物已经进化出了一种由至少 92 种不同的 CDK-细胞周期蛋白复合物变体组成的组合工具包,这强烈强调了细胞周期调控在植物发育可塑性中的关键作用,反映了细胞周期调控在植物发育可塑性中的关键作用。