Institute of Plant Biology, National Taiwan University, Taipei, Taiwan.
J Exp Bot. 2010 Oct;61(15):4249-61. doi: 10.1093/jxb/erq230. Epub 2010 Jul 19.
In rice, the class I small heat shock protein (sHSP-CI) genes were found to be selectively induced by L-azetidine-2-carboxylic acid (AZC) on chromosome 3 but not chromosome 1. Here it is shown that a novel cis-responsive element contributed to the differential regulation. By serial deletion and computational analysis, a 9 bp putative AZC-responsive element (AZRE), GTCCTGGAC, located between nucleotides -186 and -178 relative to the transcription initiation site of Oshsp17.3 was revealed. Deletion of this putative AZRE from the promoter abolished its ability to be induced by AZC. Moreover, electrophoretic mobility shift assay (EMSA) revealed that the AZRE interacted specifically with nuclear proteins from AZC-treated rice seedlings. Two AZRE-protein complexes were detected by EMSA, one of which could be competed out by a canonical heat shock element (HSE). Deletion of the AZRE also affected the HS response. Furthermore, transient co-expression of the heat shock factor OsHsfA4b with the AZRE in the promoter of Oshsp17.3 was effective. The requirement for the putative AZRE for AZC and HS responses in transgenic Arabidopsis was also shown. Thus, AZRE represents an alternative form of heat HSE, and its interaction with canonical HSEs through heat shock factors may be required to respond to HS and AZC.
在水稻中,I 类小热休克蛋白 (sHSP-CI) 基因被发现可被 L-氮杂环丁烷-2-羧酸 (AZC) 选择性诱导,而在染色体 1 上则不会。本文表明,一个新的顺式反应元件有助于差异调控。通过串联缺失和计算分析,发现了一个位于转录起始位点 Oshsp17.3 前 -186 至 -178 核苷酸处的 9 个碱基对的新型 AZC 反应元件 (AZRE),GTCCTGGAC。从启动子中缺失这个假定的 AZRE 会使其失去被 AZC 诱导的能力。此外,电泳迁移率变动分析 (EMSA) 显示,AZRE 与 AZC 处理的水稻幼苗中的核蛋白特异性相互作用。通过 EMSA 检测到两个 AZRE-蛋白复合物,其中一个可以被典型的热休克元件 (HSE) 竞争出来。AZRE 的缺失也会影响 HS 反应。此外,在 Oshsp17.3 的启动子中瞬时共表达热休克因子 OsHsfA4b 和 AZRE 是有效的。还证明了在拟南芥中转基因中,假定的 AZRE 对 AZC 和 HS 反应的要求。因此,AZRE 代表了一种替代形式的热 HSE,其与典型 HSE 之间的相互作用可能通过热休克因子来响应 HS 和 AZC。