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水稻rubi3基因5'UTR内含子对转基因水稻细胞基因表达的转录和转录后增强作用。

Transcriptional and post-transcriptional enhancement of gene expression by the 5' UTR intron of rice rubi3 gene in transgenic rice cells.

作者信息

Samadder Partha, Sivamani Elumalai, Lu Jianli, Li Xianggan, Qu Rongda

机构信息

Department of Crop Science, North Carolina State University, 1126A Williams Hall, P.O. Box 7620, Raleigh, NC, 27695, USA.

出版信息

Mol Genet Genomics. 2008 Apr;279(4):429-39. doi: 10.1007/s00438-008-0323-8. Epub 2008 Jan 31.

Abstract

Introns play a very important role in regulating gene expression in eukaryotes. In plants, many introns enhance gene expression, and the effect of intron-mediated enhancement (IME) of gene expression is reportedly often more profound in monocots than in dicots. To further gain insight of IME in monocot plants, we quantitatively dissected the effect of the 5' UTR intron of the rice rubi3 gene at various gene expression levels in stably transformed suspension cell lines. The intron enhanced the GUS reporter gene activity in these lines by about 29-fold. Nuclear run-on experiments demonstrated a nearly twofold enhancement by the 5' UTR intron at the transcriptional level. RNA analysis by RealTime quantitative RT-PCR assays indicated the intron enhanced the steady state RNA level of the GUS reporter gene by nearly 20-fold, implying a strong role of the intron in RNA processing and/or export. The results also implicated a moderate role of the intron in enhancement at the translational level ( approximately 45%). Moreover, results from a transient assay experiment using a shortened exon 1 sequence revealed an important role of exon 1 of rubi3 in gene expression. It may also hint a divergence in IME mechanisms between plant and animal cells. These results demonstrated transcriptional enhancement by a plant intron, but suggested that post-transcriptional event(s) be the major source of IME.

摘要

内含子在真核生物基因表达调控中起着非常重要的作用。在植物中,许多内含子可增强基因表达,据报道,内含子介导的基因表达增强(IME)效应在单子叶植物中通常比在双子叶植物中更为显著。为了进一步深入了解单子叶植物中的IME,我们在稳定转化的悬浮细胞系中,在不同基因表达水平下定量分析了水稻rubi3基因5'UTR内含子的作用。该内含子使这些细胞系中的GUS报告基因活性增强了约29倍。核转录实验表明,5'UTR内含子在转录水平上使转录增强了近两倍。实时定量RT-PCR分析的RNA结果表明,该内含子使GUS报告基因的稳态RNA水平提高了近20倍,这意味着内含子在RNA加工和/或输出中发挥着重要作用。结果还表明,内含子在翻译水平的增强中也起到了一定作用(约45%)。此外,使用缩短的外显子1序列进行的瞬时分析实验结果表明,rubi3基因的外显子1在基因表达中起着重要作用。这也可能暗示植物和动物细胞在IME机制上存在差异。这些结果证明了植物内含子在转录水平上的增强作用,但表明转录后事件是IME的主要来源。

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