Fülöp Katalin, Tarayre Sylvie, Kelemen Zsolt, Horváth Gábor, Kevei Zoltán, Nikovics Krisztina, Bakó László, Brown Spencer, Kondorosi Adam, Kondorosi Eva
Institut des Sciences du Végétal, Gif sur Yvette, France.
Cell Cycle. 2005 Aug;4(8):1084-92. Epub 2005 Aug 18.
The anaphase-promoting complex (APC), a multisubunit E3 ubiquitin ligase, is an essential regulator of the cell cycle from metaphase until S phase in yeast and metazoans. APC mediates degradation of numerous cell cycle-related proteins, including mitotic cyclins and its activation and substrate-specificity are determined by two adaptor proteins, Cdc20 and Cdh1. Plants have multiple APC activators and the Cdh1-type proteins, in addition, are represented by two subclasses, known as Ccs52A and Ccs52B. The Arabidopsis genome contains five cdc20 genes as well as ccs52A1, ccs52A2 and ccs52B. In Schizosaccharomyces pombe, expression of the three Atccs52 genes elicited distinct phenotypes supporting nonredundant function of the AtCcs52 proteins. Consistent with these activities, the AtCcs52 proteins were able to bind both to the yeast and the Arabidopsis APCs. In synchronized Arabidopsis cell cultures the cdc20 transcripts were present from early G2 until the M-phase exit, ccs52B from G2/M to M while ccs52A1 and ccs52A2 were from late M until early G2, suggesting consecutive action of these APC activators in the plant cell cycle. The AtCcs52 proteins interacted with different subsets of mitotic cyclins, in accordance with their expression profiles, either in free- or CDK-bound forms. Expression of most APC subunits was constitutive, whereas cdc27a and cdc27b, corresponding to two forms of apc3, and ubc19 and ubc20 encoding E2-C type ubiquitin-conjugating enzymes displayed differences in their cell cycle regulation. These data indicate the existence of numerous APC(Cdc20/Ccs52/Cdc27) forms in Arabidopsis, which in conjunction with different E2 enzymes might have distinct or complementary functions at distinct stages of the cell cycle.
后期促进复合体(APC)是一种多亚基E3泛素连接酶,在酵母和后生动物中是从分裂中期到S期的细胞周期的重要调节因子。APC介导许多细胞周期相关蛋白的降解,包括有丝分裂周期蛋白,其激活和底物特异性由两种衔接蛋白Cdc20和Cdh1决定。植物有多种APC激活因子,此外,Cdh1型蛋白由两个亚类代表,称为Ccs52A和Ccs52B。拟南芥基因组包含五个cdc20基因以及ccs52A1、ccs52A2和ccs52B。在粟酒裂殖酵母中,三个拟南芥Atccs52基因的表达引发了不同的表型,支持AtCcs52蛋白的非冗余功能。与这些活性一致,AtCcs52蛋白能够与酵母和拟南芥的APC结合。在同步化的拟南芥细胞培养物中,cdc20转录本从G2早期一直存在到M期退出,ccs52B从G2/M期到M期,而ccs52A1和ccs52A2从M期末期到G2早期,这表明这些APC激活因子在植物细胞周期中连续起作用。AtCcs52蛋白根据其表达谱,以游离或CDK结合形式与有丝分裂周期蛋白的不同亚组相互作用。大多数APC亚基的表达是组成型的,而对应于apc3两种形式的cdc27a和cdc27b,以及编码E2-C型泛素结合酶的ubc19和ubc20在细胞周期调节中表现出差异。这些数据表明拟南芥中存在大量的APC(Cdc20/Ccs52/Cdc27)形式,它们与不同的E2酶一起可能在细胞周期的不同阶段具有不同或互补的功能。