Strader Lucia C, Ritchie Siân, Soule Jonathan D, McGinnis Karen M, Steber Camille M
U.S. Department of Agriculture-Agricultural Research Service and Department of Crop and Soil Science and Graduate Program in Molecular Plant Sciences, Washington State University, Pullman, WA 99164-6420, USA.
Proc Natl Acad Sci U S A. 2004 Aug 24;101(34):12771-6. doi: 10.1073/pnas.0404287101. Epub 2004 Aug 12.
This article reports the genetic interaction of two F-box genes, SLEEPY1 (SLY1) and SNEEZY (SNE), in Arabidopsis thaliana gibberellin (GA) signaling. The SLY1 gene encodes an F-box subunit of a Skp1-cullin-F-box (SCF) E3 ubiquitin ligase complex that positively regulates GA signaling. The sly1-2 and sly1-10 mutants have recessive, GA-insensitive phenotypes including delayed germination, dwarfism, reduced fertility, and overaccumulation of the DELLA proteins RGA (Repressor of ga1-3), GAI (GA-Insensitive), and RGL2 (RGA-Like 2). The DELLA domain proteins are putative transcription factors that negatively regulate GA signaling. The requirement for SLY1 in GA-stimulated disappearance of DELLA proteins suggests that GA targets DELLA proteins for destruction via SCF(SLY1)-mediated ubiquitylation. Overexpression of SLY1 in sly1-2 and sly1-10 plants rescues the recessive GA-insensitive phenotype of these mutants. Surprisingly, antisense expression of SLY1 also suppresses these mutants. This result caused us to hypothesize that the SLY1 homologue SNE can functionally replace SLY1 in the absence of the recessive interfering sly1-2 or sly1-10 genes. This hypothesis was supported because overexpression of SNE in sly1-10 rescues the dwarf phenotype. In addition to rescuing the sly1-10 dwarf phenotype, SNE overexpression also restored normal RGA protein levels, suggesting that the SNE F-box protein can replace SLY1 in the GA-induced proteolysis of RGA. If the C-terminal truncation in the sly1-2 and sly1-10 alleles interferes with SNE rescue, we reasoned that overexpression of sly1-2 might interfere with wild-type SLY1 function. Indeed, overexpression of sly1-2 in wild-type Ler (Landsberg erecta) yields dwarf plants.
本文报道了拟南芥赤霉素(GA)信号传导中两个F-box基因SLEEPY1(SLY1)和SNEEZY(SNE)的遗传相互作用。SLY1基因编码Skp1- cullin - F-box(SCF)E3泛素连接酶复合体的一个F-box亚基,正向调控GA信号传导。sly1-2和sly1-10突变体具有隐性的GA不敏感表型,包括萌发延迟、矮化、育性降低以及DELLA蛋白RGA(ga1-3的阻遏物)、GAI(GA不敏感)和RGL2(RGA类似物2)的过度积累。DELLA结构域蛋白是假定的转录因子,负向调控GA信号传导。GA刺激下DELLA蛋白消失需要SLY1,这表明GA通过SCF(SLY1)介导的泛素化作用将DELLA蛋白作为靶标进行降解。在sly1-2和sly1-10植株中过表达SLY1可挽救这些突变体的隐性GA不敏感表型。令人惊讶的是,SLY1的反义表达也能抑制这些突变体。这一结果使我们推测,在不存在隐性干扰基因sly1-2或sly1-10的情况下,SLY1的同源物SNE在功能上可以替代SLY1。这一推测得到了支持,因为在sly1-10中过表达SNE可挽救矮化表型。除了挽救sly1-10矮化表型外,SNE过表达还恢复了正常的RGA蛋白水平,这表明SNE F-box蛋白在GA诱导的RGA蛋白水解过程中可以替代SLY1。如果sly1-2和sly1-10等位基因的C末端截短会干扰SNE的挽救作用,我们推断过表达sly1-2可能会干扰野生型SLY1的功能。事实上,在野生型Ler(Landsberg erecta)中过表达sly1-2会产生矮化植株。