Gubler F, Kalla R, Roberts J K, Jacobsen J V
Co-operative Research Centre for Plant Science, Canberra City, ACT, Australia.
Plant Cell. 1995 Nov;7(11):1879-91. doi: 10.1105/tpc.7.11.1879.
Functional analysis of a barley high-pI alpha-amylase gene promoter has identified a gibberellin (GA) response complex in the region between -174 and -108. The sequence of the central element, TAACAAA, is very similar to the c-Myb and v-Myb consensus binding site. We investigated the possibility that a GA-regulated Myb transactivates alpha-amylase gene expression in barley aleurone cells. A cDNA clone, GAmyb, which encodes a novel Myb, was isolated from a barley aleurone cDNA library. RNA blot analysis revealed that GAmyb expression in isolated barley aleurone layers is up-regulated by GA. The kinetics of GAmyb expression indicates that it is an early event in GA-regulated gene expression and precedes alpha-amylase gene expression. Cycloheximide blocked alpha-amylase gene expression but failed to block GAmyb gene expression, indicating that protein synthesis is not required for GAmyb gene expression. Gel mobility shift experiments with recombinant GAMyb showed that GAMyb binds specifically to the TAACAAA box in vitro. We demonstrated in transient expression experiments that GAMyb activates transcription of a high-pI alpha-amylase promoter fused to a beta-glucuronidase reporter gene in the absence of GA. Our results indicate that the GAMyb is the sole GA-regulated transcription factor required for transcriptional activation of the high-pI alpha-amylase promoter. We therefore postulate that GAMyb is a part of the GA-response pathway leading to alpha-amylase gene expression in aleurone cells.
对一个大麦高pIα-淀粉酶基因启动子的功能分析,在-174至-108区域鉴定出一个赤霉素(GA)应答复合体。中心元件TAACAAA的序列与c-Myb和v-Myb共有结合位点非常相似。我们研究了GA调节的Myb激活大麦糊粉层细胞中α-淀粉酶基因表达的可能性。从大麦糊粉层cDNA文库中分离出一个编码新型Myb的cDNA克隆GAmyb。RNA印迹分析显示,分离的大麦糊粉层中GAmyb的表达受GA上调。GAmyb表达的动力学表明,它是GA调节基因表达中的早期事件,且先于α-淀粉酶基因表达。放线菌酮阻断了α-淀粉酶基因表达,但未能阻断GAmyb基因表达,这表明GAmyb基因表达不需要蛋白质合成。用重组GAMyb进行的凝胶迁移率变动实验表明,GAMyb在体外能特异性结合TAACAAA框。我们在瞬时表达实验中证明,在没有GA的情况下,GAMyb能激活与β-葡萄糖醛酸酶报告基因融合的高pIα-淀粉酶启动子的转录。我们的结果表明,GAMyb是高pIα-淀粉酶启动子转录激活所需的唯一GA调节转录因子。因此,我们推测GAMyb是糊粉层细胞中导致α-淀粉酶基因表达的GA应答途径的一部分。