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番茄果实成熟过程中乙烯对E4转录的调控涉及两个协同顺式元件。

Ethylene control of E4 transcription during tomato fruit ripening involves two cooperative cis elements.

作者信息

Xu R, Goldman S, Coupe S, Deikman J

机构信息

Department of Biology, 208 Mueller Laboratory, Pennsylvania State University Park 16802, USA.

出版信息

Plant Mol Biol. 1996 Sep;31(6):1117-27. doi: 10.1007/BF00040829.

Abstract

E4 gene transcription is controlled by ethylene during tomato fruit ripening. To define the ethylene-responsive promoter elements, we have tested the activity of mutations of the E4 promoter, and of chimeric genes in transient assay. Using a set of linker scan mutations of the region from -160 to -91, we determined that sequences located between -150 and -121 bp from the transcription start site are required for normal levels of ethylene-regulated transcription. However, E4 sequences from -193 to -40 were not able to confer ethylene-responsiveness to the minimal (-46) 35S promoter. The E4/E8 binding protein (E4/E8 BP) interacts with sequences in the 5'-flanking regions of both E4 and the coordinately regulated E8 gene, and its role in regulation of E4 transcription was investigated. The E4 binding site spans the E4 TATA box, and so mutations of this site were limited to those that did not disrupt the E4 TATA box. Mutations of this site which reduced affinity for the E4/E8 BP also resulted in reduced activity in transient assay, supporting a role for this element in normal regulation of the gene. Fusion of the 35S enhancer to E4 sequences from -85 to +65 did not result in an ethylene-responsive promoter, indicating that the E4/E8 BP-binding site is not sufficient for ethylene response. We conclude that at least two cis elements are required for ethylene-responsive transcription of the E4 gene during fruit ripening, one between -150 and -121 and the other between -40 and +65.

摘要

在番茄果实成熟过程中,E4基因的转录受乙烯调控。为了确定乙烯响应启动子元件,我们在瞬时分析中测试了E4启动子突变体和嵌合基因的活性。通过对-160至-91区域的一组接头扫描突变,我们确定转录起始位点上游-150至-121 bp之间的序列是乙烯调节转录正常水平所必需的。然而,-193至-40的E4序列不能赋予最小(-46)35S启动子乙烯响应性。E4/E8结合蛋白(E4/E8 BP)与E4以及协同调控的E8基因5'侧翼区域的序列相互作用,并研究了其在E4转录调控中的作用。E4结合位点跨越E4 TATA框,因此该位点的突变仅限于不破坏E4 TATA框的突变。降低对E4/E8 BP亲和力的该位点突变也导致瞬时分析中的活性降低,支持该元件在基因正常调控中的作用。将35S增强子与-85至+65的E4序列融合未产生乙烯响应启动子,表明E4/E8 BP结合位点不足以产生乙烯响应。我们得出结论,在果实成熟过程中,E4基因的乙烯响应转录至少需要两个顺式元件,一个在-150至-121之间,另一个在-40至+65之间。

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