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水稻多聚泛素基因启动子的表达增强

Expression enhancement of a rice polyubiquitin gene promoter.

作者信息

Sivamani Elumalai, Qu Rongda

机构信息

Department of Crop Science, North Carolina State University, Raleigh, NC 27695-7620, USA.

出版信息

Plant Mol Biol. 2006 Jan;60(2):225-39. doi: 10.1007/s11103-005-3853-z.

Abstract

An 808 bp promoter from a rice polyubiquitin gene, rubi3, has been isolated. The rubi3 gene contained an open reading frame of 1,140 bp encoding a pentameric polyubiquitin arranged as five tandem, head-to-tail repeats of 76 aa. The 1,140 bp 5' UTR intron of the gene enhanced its promoter activity in transient expression assays by 20-fold. Translational fusion of the GUS reporter gene to the coding sequence of the ubiquitin monomer enhanced GUS enzyme activity in transient expression assays by 4.3-fold over the construct containing the original rubi3 promoter (including the 5' UTR intron) construct. The enhancing effect residing in the ubiquitin monomer coding sequence has been narrowed down to the first 9 nt coding for the first three amino acid residues of the ubiquitin protein. Mutagenesis at the third nucleotide of this 9 nt sequence still maintains the enhancing effect, but leads to translation of the native GUS protein rather than a fusion protein. The resultant 5' regulatory sequence, consisting of the rubi3 promoter, 5' UTR exon and intron, and the mutated first 9 nt coding sequence, has an activity nearly 90-fold greater than the rubi3 promoter only (without the 5' UTR intron), and 2.2-fold greater than the maize Ubi1 gene promoter (including its 5' UTR intron). The newly created expression vector is expected to enhance transgene expression in monocot plants. Considering the high conservation of the polyubiquitin gene structure in higher plants, the observed enhancement in gene expression may apply to 5' regulatory sequences of other plant polyubiquitin genes.

摘要

已分离出水稻多聚泛素基因rubi3的一段808 bp的启动子。rubi3基因包含一个1140 bp的开放阅读框,编码一个由五个76个氨基酸的串联、头对尾重复序列组成的五聚体多聚泛素。该基因1140 bp的5'UTR内含子在瞬时表达分析中使其启动子活性增强了20倍。在瞬时表达分析中,GUS报告基因与泛素单体编码序列的翻译融合使GUS酶活性比含有原始rubi3启动子(包括5'UTR内含子)的构建体提高了4.3倍。泛素单体编码序列中的增强作用已缩小到编码泛素蛋白前三个氨基酸残基的前9个核苷酸。对该9 nt序列的第三个核苷酸进行诱变仍能保持增强作用,但导致天然GUS蛋白而非融合蛋白的翻译。由此产生的5'调控序列由rubi3启动子、5'UTR外显子和内含子以及突变的前9个核苷酸编码序列组成,其活性比仅rubi3启动子(无5'UTR内含子)高近90倍,比玉米Ubi1基因启动子(包括其5'UTR内含子)高2.2倍。新构建的表达载体有望增强单子叶植物中的转基因表达。考虑到高等植物中多聚泛素基因结构的高度保守性,观察到的基因表达增强可能适用于其他植物多聚泛素基因的5'调控序列。

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