Molnár Gergely, Bancoş Simona, Nagy Ferenc, Szekeres Miklós
Institute of Plant Biology, Biological Research Center of the Hungarian Academy of Sciences, P.O. Box 521, 6701 Szeged, Hungary.
Planta. 2002 May;215(1):127-33. doi: 10.1007/s00425-001-0723-z. Epub 2002 Jan 25.
Although many important aspects of plant development are controlled by brassinosteroids (BRs), the early molecular events of their hormonal action are largely unknown. Using a differential-display RT-PCR screen designed to detect early response transcripts, those regulated by BR treatment in the absence of de novo protein synthesis, we identified an Arabidopsis thaliana (L.) Heynh. gene (designated BRH1) that encodes a novel RING finger protein. As deduced from a complete cDNA clone, the 170-amino-acid sequence of BRH1 forms an N-terminal hydrophobic domain and a C-terminal RING-H2 signature. In wild-type Arabidopsis, the level of the BRH1 transcript was rapidly down-regulated by brassinolide, but this effect was abolished in a BR-insensitive mutant deficient in the BRI1 receptor. BRH1 mRNA abundance was not influenced by other phytohormones, but the pathogen elicitor chitin induced a rapid and transient accumulation of the transcript. Antisense expression of BRH1 resulted in transgenic Arabidopsis plants with thicker inflorescence stems and altered leaf morphology, whereas in sense overexpression lines no phenotypic effect could be observed. Considering the potential of the RING proteins to participate in regulatory protein complexes, BR-dependent expression of BRH1 may suggest its involvement in later hormonal effects.
尽管植物发育的许多重要方面受油菜素类固醇(BRs)调控,但其激素作用的早期分子事件仍 largely 未知。利用差异显示 RT-PCR 筛选来检测早期反应转录本,即在无从头蛋白质合成情况下受 BR 处理调控的转录本,我们鉴定出拟南芥(Arabidopsis thaliana (L.) Heynh.)中的一个基因(命名为 BRH1),它编码一种新型的泛素连接酶 E3 蛋白。从一个完整的 cDNA 克隆推导可知,BRH1 的 170 个氨基酸序列形成一个 N 端疏水结构域和一个 C 端 RING-H2 基序。在野生型拟南芥中,BRH1 转录本水平被油菜素内酯迅速下调,但在缺乏 BRI1 受体的 BR 不敏感突变体中这种效应消失。BRH1 mRNA 丰度不受其他植物激素影响,但病原体激发子几丁质可诱导该转录本迅速且短暂地积累。BRH1 的反义表达导致转基因拟南芥植株的花序茎变粗且叶形态改变,而在正义过表达株系中未观察到表型效应。鉴于泛素连接酶 E3 蛋白参与调控蛋白复合物的可能性,BR 依赖的 BRH1 表达可能表明其参与后期激素效应。