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通过嵌合HSF1蛋白融合构建体的转基因表达对拟南芥热休克反应产生显性负效应。

Generation of dominant-negative effects on the heat shock response in Arabidopsis thaliana by transgenic expression of a chimaeric HSF1 protein fusion construct.

作者信息

Wunderlich Markus, Werr Wolfgang, Schöffl Friedrich

机构信息

Zentrum für Molekularbiologie der Pflanzen, Allgemeine Genetik, Universität Tübingen, 72076 Tübingen, Germany.

出版信息

Plant J. 2003 Aug;35(4):442-51. doi: 10.1046/j.1365-313x.2003.01815.x.

DOI:10.1046/j.1365-313x.2003.01815.x
PMID:12904207
Abstract

Upon heat stress, heat shock factors (HSFs) control the expression of heat shock protein (HSP) genes by transcriptional activation. The perplexing multiplicity of HSF genes in Arabidopsis- 21 potential genes have been identified - renders it difficult to identify mutant phenotypes. In this study, we have attempted to generate a transdominant-negative mutant of HSF by transgenic expression of a protein fusion construct, EN-HSF1, consisting of the Drosophila engrailed repressor domain (EN) and the complete Arabidopsis AtHSF1. Transgenic lines were screened for impaired ability to induce high levels of low-molecular-weight heat shock proteins (sHSPs). Two lines, EH14-6 and EH16-3, which showed quantitative differences in the expression of EN-HSF1, were further analysed for induction of thermotolerance and heat-stress-dependent mRNAs of a number of different HSF target genes encoding different HSP and HSF. The mRNA levels of all genes tested were moderately downregulated in EH14-6 but strongly reduced in EH16-3 plants compared to wild-type (Wt) and HSF1-overexpressing control plants. The inhibition of the induction of heat shock response correlated with impaired basal and acquired thermotolerance of the EH16-3 line. The kinetics of HSP expression suggest that the negative effect of EN-HSF1 is stronger in the early phase of the heat shock response, and that the reduction in mRNA levels is partially compensated at the translational level.

摘要

在热应激条件下,热休克因子(HSF)通过转录激活来控制热休克蛋白(HSP)基因的表达。拟南芥中HSF基因数量众多令人困惑——已鉴定出21个潜在基因——这使得鉴定突变体表型变得困难。在本研究中,我们试图通过转基因表达一种蛋白质融合构建体EN-HSF1来生成HSF的显性负突变体,该构建体由果蝇engrailed抑制域(EN)和完整的拟南芥AtHSF1组成。筛选转基因株系,以寻找诱导高水平低分子量热休克蛋白(sHSP)的能力受损的株系。对两个株系EH14-6和EH16-3进行了进一步分析,这两个株系在EN-HSF1的表达上存在定量差异,分析内容包括耐热性的诱导以及一些编码不同HSP和HSF的不同HSF靶基因的热应激依赖性mRNA。与野生型(Wt)和过表达HSF1的对照植株相比,在EH14-6中,所有测试基因的mRNA水平均适度下调,但在EH16-3植株中则大幅降低。热休克反应诱导的抑制与EH16-3株系的基础耐热性和获得性耐热性受损相关。HSP表达的动力学表明,EN-HSF1的负面影响在热休克反应的早期阶段更强,并且mRNA水平的降低在翻译水平上得到了部分补偿。

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