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Binding of GID1 to DELLAs promotes dissociation of GAF1 from DELLA in GA dependent manner

机译:GID1与DELLA的结合以GA依赖性方式促进GAF1与DELLA的解离

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摘要

Gibberellins (GAs) are important phytohormones for plant growth and development. DELLAs are members of the plant-specific GRAS protein family and act as repressors of GA signaling. DELLAs are rapidly degraded in the presence of GAs. GA-GID1-DELLA complexes are recognized and ubiquitinated by the SCFSLY complex. The sleepy1 (sly1) F-box mutant exhibits dwarfism and low-germination phenotypes due to high accumulation of DELLAs. Overexpression of GID1 in the sly1 mutant partially rescues these phenotypes without degradation of DELLAs suggesting that proteolysis independent regulation of DELLAs exists in GA signaling. But the molecular mechanisms of non-proteolytic regulation of DELLA are largely unknown. Recently we identified a DELLA binding transcription factor, GAI-ASSOCIATED FACTOR1 (GAF1). GAF1 also interacts with co-repressor TOPLESS RELATED (TPR) in nuclei. DELLAs and TPR act as coactivator and corepressor of GAF1, respectively. GAs converts the GAF1 complex from transcriptional activator to repressor via degradation of DELLAs. The overexpression of ΔPAM, lacking of DELLAs binding region of GAF1, partially rescue dwarf phenotypes of GA deficient or GA insensitive mutant. In this study, we investigate the relationship between non-proteolytic regulation of DELLAs and GA signaling via DELLA-GAF1 complex using modified yeast two-hybrid system.
机译:赤霉素(GAs)是植物生长发育的重要植物激素。 DELLAs是植物特异性GRAS蛋白家族的成员,并充当GA信号转导的阻遏物。在存在GA的情况下,DELLA会迅速降解。 GA-GID1-DELLA复合物被SCF SLY 复合物识别并泛素化。由于DELLA的大量积累,sleepy1(sly1)F-box突变体表现出矮化和低发芽表型。 sly1突变体中GID1的过表达部分拯救了这些表型,而不会降解DELLAs,这表明GA信号传导中存在DELLAs的蛋白水解独立调控。但是,DELLA的非蛋白水解调控的分子机制尚不清楚。最近,我们鉴定了一种DELLA结合转录因子GAI-ASSOCIATED FACTOR1(GAF1)。 GAF1还与细胞核中的共抑制子TOPLESS RELATED(TPR)相互作用。 DELLAs和TPR分别充当GAF1的共激活因子和核心降压因子。 GAs通过DELLAs的降解将GAF1复合物从转录激活因子转化为阻遏蛋白。 ΔPAM的过表达,GAF1的DELLAs结合区的缺乏,部分拯救了GA缺陷型或GA不敏感突变体的矮表型。在这项研究中,我们研究了使用修饰的酵母双杂交系统通过DELLA-GAF1复合物对DELLAs进行非蛋白水解调控与GA信号传导之间的关系。

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