Woodward Andrew W, Ratzel Sarah E, Woodward Erin E, Shamoo Yousif, Bartel Bonnie
Department of Biochemistry and Cell Biology, Rice University, Houston, Texas 77005, USA.
Plant Physiol. 2007 Jun;144(2):976-87. doi: 10.1104/pp.107.100404. Epub 2007 Apr 20.
The ubiquitin-like protein RELATED TO UBIQUITIN (RUB) is conjugated to CULLIN (CUL) proteins to modulate the activity of Skp1-Cullin-F-box (SCF) ubiquitylation complexes. RUB conjugation to specific target proteins is necessary for the development of many organisms, including Arabidopsis (Arabidopsis thaliana). Here, we report the isolation and characterization of e1-conjugating enzyme-related1-1 (ecr1-1), an Arabidopsis mutant compromised in RUB conjugation. The ecr1-1 mutation causes a missense change located two amino acid residues from the catalytic site cysteine, which normally functions to form a thioester bond with activated RUB. A higher ratio of unmodified CUL1 relative to CUL1-RUB is present in ecr1-1 compared to wild type, suggesting that the mutation reduces ECR1 function. The ecr1-1 mutant is resistant to the auxin-like compound indole-3-propionic acid, produces fewer lateral roots than wild type, displays reduced adult height, and stabilizes a reporter fusion protein that is degraded in response to auxin, suggesting reduced auxin signaling in the mutant. In addition, ecr1-1 hypocotyls fail to elongate normally when seedlings are grown in darkness, a phenotype shared with certain other RUB conjugation mutants that is not general to auxin-response mutants. The suite of ecr1-1 molecular and morphological phenotypes reflects roles for RUB conjugation in many aspects of plant growth and development. Certain ecr1-1 elongation defects are restored by treatment with the ethylene-response inhibitor silver nitrate, suggesting that the short ecr1-1 root and hypocotyl result from aberrant ethylene accumulation. Further, silver nitrate supplementation in combination with various auxins and auxin-like compounds reveals that members of this growth regulator family may differentially rely on ethylene signaling to inhibit root growth.
类泛素蛋白泛素相关蛋白(RUB)与CULLIN(CUL)蛋白结合,以调节Skp1-Cullin-F-box(SCF)泛素化复合物的活性。RUB与特定靶蛋白的结合对于包括拟南芥(Arabidopsis thaliana)在内的许多生物体的发育是必需的。在这里,我们报告了e1结合酶相关蛋白1-1(ecr1-1)的分离和表征,这是一个在RUB结合方面受损的拟南芥突变体。ecr1-1突变导致一个错义变化,该变化位于催化位点半胱氨酸的两个氨基酸残基处,该半胱氨酸通常用于与活化的RUB形成硫酯键。与野生型相比,ecr1-1中未修饰的CUL1与CUL1-RUB的比例更高,这表明该突变降低了ECR1的功能。ecr1-1突变体对生长素类似物吲哚-3-丙酸具有抗性,产生的侧根比野生型少,成年植株高度降低,并稳定了一种报告融合蛋白,该蛋白在生长素响应下会被降解,这表明突变体中的生长素信号传导减少。此外,当幼苗在黑暗中生长时,ecr1-1下胚轴不能正常伸长,这是某些其他RUB结合突变体共有的表型,而不是生长素响应突变体的普遍表型。ecr1-1的一系列分子和形态表型反映了RUB结合在植物生长和发育的许多方面的作用。用乙烯响应抑制剂硝酸银处理可恢复ecr1-1的某些伸长缺陷,这表明ecr根和下胚轴短是由异常的乙烯积累导致的。此外,硝酸银补充剂与各种生长素和生长素类似物的组合表明,该生长调节因子家族的成员可能在不同程度上依赖乙烯信号传导来抑制根生长。