Sutoh Keita, Yamauchi Daisuke
Department of Biological Sciences, Tokyo Metropolitan University, Minami-ohsawa 1-1, Hachioji-shi, Tokyo 192-0397, Japan.
Plant J. 2003 Jun;34(5):635-45. doi: 10.1046/j.1365-313x.2003.01753.x.
In germinating rice seeds, a cysteine proteinase (REP-1), synthesized in aleurone-layer cells, is a key enzyme in the degradation of the major storage protein, glutelin. The expression of the gene for REP-1 (Rep1) is induced by gibberellins (GAs) and repressed by abscisic acid (ABA). To identify GA-responsive elements in the Rep1 promoter, we developed a transient expression system in rice aleurone cells. Deletion and point-mutation analyses indicated that the GA-response complex was composed of TAACAGA, TAACGTA, and two copies of CAACTC. The two former sequences were identical to GAREs conserved in the promoter of genes for alpha-amylase and proteinases in cereals. The latter, termed as CAACTC regulatory elements (CAREs), were novel GAREs. Gain-of-function experiments revealed that two pairs of GARE and CARE were necessary and sufficient to confer GA inducibility. The sequences were also required for effective transactivation by the transcription factor OsGAMyb. Four copies of either GARE or CARE showed transactivation neither by OsGAMyb nor by GA induction. CARE and GARE were also found in the promoters of a rice alpha-amylase gene, RAmy1A, and a barley proteinase gene, EPB1, which are expressed in germinating seeds. Mutations of CARE in their promoters caused a loss of GA inducibility and GAMyb transactivation, suggesting that CARE is the regulatory element for GA-inducible expression of hydrolase genes in the germinating seeds.
在萌发的水稻种子中,一种在糊粉层细胞中合成的半胱氨酸蛋白酶(REP-1)是主要贮藏蛋白谷蛋白降解的关键酶。REP-1(Rep1)基因的表达受赤霉素(GAs)诱导,而被脱落酸(ABA)抑制。为了鉴定Rep1启动子中的GA应答元件,我们在水稻糊粉细胞中建立了一个瞬时表达系统。缺失和点突变分析表明,GA应答复合体由TAACAGA、TAACGTA和两个拷贝的CAACTC组成。前两个序列与谷物中α-淀粉酶和蛋白酶基因启动子中保守的GAREs相同。后者被称为CAACTC调控元件(CAREs),是新型的GAREs。功能获得实验表明,两对GARE和CARE对于赋予GA诱导性是必要且充分的。这些序列也是转录因子OsGAMyb进行有效反式激活所必需的。GARE或CARE的四个拷贝无论是在OsGAMyb作用下还是在GA诱导下均未表现出反式激活。在水稻α-淀粉酶基因RAmy1A和大麦蛋白酶基因EPB1的启动子中也发现了CARE和GARE,它们在萌发种子中表达。其启动子中CARE的突变导致GA诱导性丧失以及GAMyb反式激活作用丧失,这表明CARE是萌发种子中水解酶基因GA诱导性表达的调控元件。