Marrocco Katia, Lecureuil Alain, Nicolas Pierre, Guerche Philippe
Station de Génétique et d'Amélioration des Plantes, Institut National de la Recherche Agronomique, Route de Saint Cyr, 78026 Versailles cedex, France.
Plant Mol Biol. 2003 Jul;52(4):715-27. doi: 10.1023/a:1025056008926.
The yeast Skp1 protein is a component of the SCF complex, an E3 enzyme involved in the specific protein degradation pathway via ubiquitination. Skp1 binds to F-box proteins to trigger specific recognition of proteins targeted for degradation. SKP1-like genes have been found in a variety of eukaryotes including yeast, man, Caenorhabditis elegans and Arabidopsis thaliana. The Arabidopsis genome contains 20 SKP1-like genes called ASK (for Arabidopsis SKP1-like), among which only ASK1 has been characterized in detail. The analysis of the expression pattern of the ASK genes in Arabidopsis should provide key information for the understanding of the biological role of this family in protein degradation and in different cellular mechanisms. In this paper, we describe the expression profiles of 19 ASK promoter-GUS fusions in stable transformants of Arabidopsis, with a special emphasis on floral organ development. Four ASK promoters did not show any detectable expression in either inflorescences or seedlings. Our results on the ASK1 expression profile are consistent with previous reports. Several ASK promoters show clear tissue-specific expression (for instance in the connective of anthers or in the embryo). We also found that almost half (9/19) of ASK promoters direct a post-meiotic expression in the male gametophyte. Tight regulation of the expression of this gene family indicates a crucial role of the ubiquitin degradation pathway during development, particularly during male gametophyte development.
酵母Skp1蛋白是SCF复合体的一个组成部分,SCF复合体是一种E3酶,参与通过泛素化作用的特定蛋白质降解途径。Skp1与F-box蛋白结合,以触发对靶向降解蛋白质的特异性识别。在包括酵母、人类、秀丽隐杆线虫和拟南芥在内的多种真核生物中都发现了类似SKP1的基因。拟南芥基因组包含20个类似SKP1的基因,称为ASK(拟南芥SKP1类似物),其中只有ASK1得到了详细的表征。对拟南芥中ASK基因表达模式的分析应为理解该家族在蛋白质降解和不同细胞机制中的生物学作用提供关键信息。在本文中,我们描述了拟南芥稳定转化体中19个ASK启动子-GUS融合体的表达谱,特别强调了花器官的发育。四个ASK启动子在花序或幼苗中均未显示出任何可检测到的表达。我们关于ASK1表达谱的结果与先前的报道一致。几个ASK启动子表现出明显的组织特异性表达(例如在花药的连接组织或胚胎中)。我们还发现,几乎一半(9/19)的ASK启动子在雄配子体中指导减数分裂后的表达。该基因家族表达的严格调控表明泛素降解途径在发育过程中,特别是在雄配子体发育过程中起着关键作用。