Kim J K, Cao J, Wu R
Plant Science Center, Cornell University, Ithaca, NY 14853.
Mol Gen Genet. 1992 Apr;232(3):383-93. doi: 10.1007/BF00266241.
The alpha-amylase gene is known to be regulated by the plant hormone gibberellin (GA) in cereal aleurone cells. The accumulation of the mRNA corresponding to a rice high pI alpha-amylase gene, OSamy-c, was stimulated 20-fold by exogenous GA3 in half-seeds lacking embryos. Regulatory regions in the promoter of this high pI sub-family were analyzed. The OSamy-c 5' flanking sequence, spanning positions -231 to +29, was fused upstream of the beta-glucuronidase (GUS) gene coding region. The delivery of this plasmid into rice aleurone cells by the biolistic method resulted in a GA-stimulated synthesis of GUS. Gel retardation assays were performed to study protein-DNA interactions between putative regulatory sequences of OSamy-c and partially purified rice seed extracts. We identified multiple seed-specific protein factors that bind to proximal regions of the OSamy-c promoter between positions -231 and -162. Five different proteins were distinguished based on competitive binding studies. Three protein binding regions were located by footprinting analyses, one of which is located in the conserved sequence also found upstream of other GA-inducible genes. Two protein factors in rice aleurone cells that interact with the putative regulatory sequence do not require GA induction.
已知α-淀粉酶基因在谷物糊粉层细胞中受植物激素赤霉素(GA)调控。在无胚的半粒种子中,外源GA3可使与水稻高pIα-淀粉酶基因OSamy-c相对应的mRNA积累量增加20倍。对该高pI亚家族启动子中的调控区域进行了分析。将跨越-231至+29位的OSamy-c 5'侧翼序列融合到β-葡萄糖醛酸酶(GUS)基因编码区的上游。通过生物弹道法将该质粒导入水稻糊粉层细胞,导致GUS的GA刺激合成。进行凝胶阻滞试验以研究OSamy-c推定调控序列与部分纯化的水稻种子提取物之间的蛋白质-DNA相互作用。我们鉴定出了多个与OSamy-c启动子-231至-162位近端区域结合的种子特异性蛋白质因子。基于竞争性结合研究区分出了五种不同的蛋白质。通过足迹分析确定了三个蛋白质结合区域,其中一个位于其他GA诱导基因上游也存在的保守序列中。水稻糊粉层细胞中与推定调控序列相互作用的两个蛋白质因子不需要GA诱导。