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上游序列、CCAAT盒元件和热休克元件(HSE)对转基因烟草中嵌合热休克基因增强表达的协同效应。

Synergistic effect of upstream sequences, CCAAT box elements, and HSE sequences for enhanced expression of chimaeric heat shock genes in transgenic tobacco.

作者信息

Rieping M, Schöffl F

机构信息

University of Tübingen, Department of Genetics, FRG.

出版信息

Mol Gen Genet. 1992 Jan;231(2):226-32. doi: 10.1007/BF00279795.

DOI:10.1007/BF00279795
PMID:1736093
Abstract

The thermoregulated expression of the soybean heat shock (hs) gene Gmhsp17.3-B is regulated via the heat shock promoter elements (HSEs), but full promoter activity requires additional sequences located upstream of the HSE-containing region. Structural features within this putative enhancer region include a run of simple sequences which are also present upstream of HSE-like sequences of other soybean hs genes, and three perfect CCAAT box sequences located immediately upstream from the most distal HSE of the promoter. A series of heterologous and homologous promoter fusions linked to the chloramphenicol acetyl transferase (CAT) gene was constructed and examined in transgenic tobacco plants. The region containing the AT-rich domain of the 5' flanking region was unable to direct transcription from the TATA box of a truncated delta CaMV35S promoter. Heat-inducible CAT activity was detectable when additional sequences from the native promoter containing three CCAAT boxes and a single HSE were present in the constructions. Complete reconstitution of the native hs promoter/enhancer region increased hs specific CAT activities only very little, but deletion of CCAAT box sequences reduced CAT expression five-fold. Our results suggest that AT-rich sequences have a moderate effect on thermoinducible expression levels of the soybean heat shock gene and that CCAAT box sequences act cooperatively with HSEs to increase the hs promoter activity.

摘要

大豆热激(hs)基因Gmhsp17.3 - B的温度调节表达是通过热激启动子元件(HSEs)来调控的,但完整的启动子活性需要位于含HSE区域上游的其他序列。这个假定的增强子区域内的结构特征包括一段简单序列,其也存在于其他大豆hs基因的类HSE序列上游,以及位于启动子最远端HSE紧邻上游的三个完美的CCAAT框序列。构建了一系列与氯霉素乙酰转移酶(CAT)基因相连的异源和同源启动子融合体,并在转基因烟草植株中进行检测。5'侧翼区域富含AT的结构域不能指导截短的δCaMV35S启动子的TATA框进行转录。当构建体中存在来自天然启动子的包含三个CCAAT框和一个单一HSE的额外序列时,可检测到热诱导的CAT活性。天然hs启动子/增强子区域的完全重建仅使hs特异性CAT活性略有增加,但删除CCAAT框序列会使CAT表达降低五倍。我们的结果表明,富含AT的序列对大豆热激基因的热诱导表达水平有中等程度的影响,并且CCAAT框序列与HSEs协同作用以增加hs启动子活性。

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