Institute of Biochemistry and Biophysics, Polish Academy of Sciences, ul. Pawińskiego 5A, 02-106 Warsaw, Poland.
J Exp Bot. 2010 Mar;61(3):889-900. doi: 10.1093/jxb/erp356. Epub 2009 Dec 16.
Sulphur deficiency severely affects plant growth and their agricultural productivity leading to diverse changes in development and metabolisms. Molecular mechanisms regulating gene expression under low sulphur conditions remain largely unknown. AtSLIM1, a member of the EIN3-like (EIL) family was reported to be a central transcriptional regulator of the plant sulphur response, however, no direct interaction of this protein with any sulphur-responsive promoters was demonstrated. The focus of this study was on the analysis of a promoter region of UP9C, a tobacco gene strongly induced by sulphur limitation. Cloning and subsequent examination of this promoter resulted in the identification of a 20-nt sequence (UPE-box), also present in the promoters of several Arabidopsis genes, including three out of four homologues of UP9C. The UPE-box, consisting of two parallel tebs sequences (TEIL binding site), proved to be necessary to bind the transcription factors belonging to the EIL family and of a 5-nt conserved sequence at the 3'-end. The yeast one-hybrid analysis resulted in the identification of one transcription factor (NtEIL2) capable of binding to the UPE-box. The interactions of NtEIL2, and its homologue from Arabidopsis, AtSLIM1, with DNA were affected by mutations within the UPE-box. Transient expression assays in Nicotiana benthamiana have further shown that both factors, NtEIL2 and AtSLIM1, activate the UP9C promoter. Interestingly, activation by NtEIL2, but not by AtSLIM1, was dependent on the sulphur-deficiency of the plants.
硫缺乏严重影响植物生长及其农业生产力,导致发育和代谢的多种变化。在低硫条件下调节基因表达的分子机制在很大程度上尚不清楚。AtSLIM1,是 EIN3 样(EIL)家族的一员,被报道为植物硫反应的中央转录调节剂,然而,没有证明该蛋白与任何硫响应启动子的直接相互作用。本研究的重点是分析 UP9C 的启动子区域,烟草基因强烈诱导硫限制。克隆和随后检查该启动子导致鉴定 20-nt 序列(UPE-box),也存在于几个拟南芥基因的启动子中,包括 UP9C 的四个同源物中的三个。UPE-box,由两个平行的 tebs 序列(TEIL 结合位点)组成,被证明有必要结合属于 EIL 家族的转录因子和 3'-末端的 5-nt 保守序列。酵母单杂交分析鉴定出一种能够与 UPE-box 结合的转录因子(NtEIL2)。NtEIL2 及其拟南芥同源物 AtSLIM1 与 DNA 的相互作用受到 UPE-box 内突变的影响。在 Nicotiana benthamiana 中的瞬时表达分析进一步表明,两种因子,NtEIL2 和 AtSLIM1,均可激活 UP9C 启动子。有趣的是,NtEIL2 的激活,而不是 AtSLIM1 的激活,依赖于植物的硫缺乏。