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A high-throughput bimolecular fluorescence complementation protein-protein interaction screen identifies functional Arabidopsis CDKA/B-CYCD4/5 complexes

机译:高通量双分子荧光互补蛋白-蛋白相互作用筛选可鉴定功能性拟南芥CDKA / B-CYCD4 / 5复合物

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摘要

The eukaryotic cell cycle is a process controlled by protein assemblies, of which the key subunits are serine-threonine cyclin-dependent kinases (CDKs). Timely association and dissociation of these assemblies ensure that the cell division program is executed correctly. The challenge to unravel the rules of the plant cell cycle results from the multiplicity of the process-regulating genes that emerged through genome duplications during the evolution of flowering plants. Despite the increasing knowledge on the plant cell cycle control, little is known about the composition of the different CDK-Cyclin complexes and their spatiotemporal occurrence. The binary interactions of the previously annotated 58 Arabidopsis thaliana core cell cycle proteins were tested in two high-throughput protein-protein interaction (PPI) assays: the bimolecular fluorescence complementation (BiFC) and the yeast two-hybrid. The resulting PPI network was integrated with available cycle phase-dependent gene expression data and subcellular localization information, revealing distinct cell cycle clusters acting at different cell division stages. Additionally, the BiFC assay revealed that three D-type cyclins, CYCD4;1, CYCD4;2 and CYCD5;1, form active kinase complexes with CDKA;1 and CDKB1;1 in vivo because they induce cell divisions in differentiated tobacco (Nicotiana benthamiana) epidermal cells. We demonstrate that these complexes promote cell proliferation in Arabidopsis and we discuss their putative mode of action in plant development.
机译:真核细胞周期是受蛋白质装配体控制的过程,其关键亚基是丝氨酸-苏氨酸细胞周期蛋白依赖性激酶(CDK)。这些程序集的及时关联和解除关联可确保正确执行细胞分裂程序。揭示植物细胞周期规则的挑战来自于开花植物进化过程中通过基因组复制而出现的多种过程调节基因。尽管对植物细胞周期控制的了解越来越多,但对不同CDK-细胞周期蛋白复合物的组成及其时空发生的了解却很少。在两个高通量蛋白质-蛋白质相互作用(PPI)分析中测试了先前注释的58个拟南芥核心细胞周期蛋白的二元相互作用:双分子荧光互补(BiFC)和酵母菌双杂交。所得的PPI网络已与可用的周期依赖基因表达数据和亚细胞定位信息整合在一起,揭示了在不同细胞分裂阶段起作用的不同细胞周期簇。此外,BiFC分析显示,三个D型细胞周期蛋白CYCD4; 1,CYCD4; 2和CYCD5; 1在体内与CDKA; 1和CDKB1; 1形成活性激酶复合物,因为它们诱导分化烟草中的细胞分裂(本氏烟草) )表皮细胞。我们证明了这些复合物促进拟南芥中的细胞增殖,我们讨论了它们在植物发育中的假定作用方式。

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