Samach A, Klenz J E, Kohalmi S E, Risseeuw E, Haughn G W, Crosby W L
Department of Botany, University of British Columbia, Vancouver, BC V6T1Z4, Canada.
Plant J. 1999 Nov;20(4):433-45. doi: 10.1046/j.1365-313x.1999.00617.x.
Genetic and molecular studies have suggested that the UNUSUAL FLORAL ORGANS (UFO) gene, from Arabidopsis thaliana, is expressed in all shoot apical meristems, and is involved in the regulation of a complex set of developmental events during floral development, including floral meristem and floral organ identity. Results from in situ hybridization using genes expressed early in floral development as probes indicate that UFO controls growth of young floral primordia. Transgenic constructs were used to provide evidence that UFO regulates floral organ identity by activating or maintaining transcription of the class B organ-identity gene APETALA 3, but not PISTILLATA. In an attempt to understand the biochemical mode of action of the UFO gene product, we show here that UFO is an F-box protein that interacts with Arabidopsis SKP1-like proteins, both in the yeast two-hybrid system and in vitro. In yeast and other organisms both F-box proteins and SKP1 homologues are subunits of specific ubiquitin E3 enzyme complexes that target specific proteins for degradation. The protein selected for degradation by the complex is specified by the F-box proteins. It is therefore possible that the role of UFO is to target for degradation specific proteins controlling normal growth patterns in the floral primordia, as well as proteins that negatively regulate APETALA 3 transcription.
遗传学和分子学研究表明,拟南芥中的异常花器官(UFO)基因在所有茎尖分生组织中均有表达,并参与调控花发育过程中一系列复杂的发育事件,包括花分生组织和花器官特征。使用花发育早期表达的基因作为探针进行原位杂交的结果表明,UFO控制着幼小花原基的生长。通过转基因构建体来提供证据,证明UFO通过激活或维持B类器官特征基因APETALA 3(而非PISTILLATA)的转录来调控花器官特征。为了了解UFO基因产物的生化作用模式,我们在此表明,UFO是一种F-box蛋白,在酵母双杂交系统和体外实验中均能与拟南芥SKP1样蛋白相互作用。在酵母和其他生物体中,F-box蛋白和SKP1同源物都是特定泛素E3酶复合物的亚基,这些复合物将特定蛋白质靶向降解。被该复合物选择进行降解的蛋白质由F-box蛋白指定。因此,UFO的作用可能是将控制花原基正常生长模式的特定蛋白质以及负调控APETALA 3转录的蛋白质靶向降解。