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Multiple regions of the Arabidopsis SAUR-AC1 gene control transcript abundance: the 3 untranslated region functions as an mRNA instability determinant.

机译:拟南芥SAUR-AC1基因的多个区域控制转录本的丰度:3非翻译区起着mRNA不稳定决定因素的作用。

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摘要

The small-auxin-up-RNA (SAUR) transcripts are rapidly induced by auxin and are among the most short-lived mRNAs in higher plants. In this study, we investigate the regulation of SAUR-AC1, a well characterized SAUR gene of Arabidopsis. Be examining the expression of chimeric genes in transgenic tobacco, we demonstrate that the promoter region of SAUR-AC1 mediates auxin induction. Sequences downstream of the promoter region were found to limit mRNA accumulation in a manner that was independent of auxin treatment. Both the coding region and the 3' untranslated region (UTR) of SAUR-AC1 independently contribute to this limitation. Effects on mRNA stability were assayed using chimeric genes under the control of the tetracycline-repressible Top10 promoter. mRNA half-life analysis following tetracycline treatment showed that the SAUR-AC1 coding region does not contain elements that decrease mRNA stability. In contrast, the 3' UTR was found to act as a potent mRNA instability determinant. This finding and the general utility of the Top10 system should provide the means to elucidate mRNA decay pathways that are potentially novel and specific for certain unstable transcripts.
机译:生长素小RNA(SAUR)转录物被生长素迅速诱导,并且是高等植物中寿命最短的mRNA之一。在这项研究中,我们调查了SAUR-AC1的调控,SAUR-AC1是拟南芥中一个很好表征的SAUR基因。通过检查嵌合基因在转基因烟草中的表达,我们证明SAUR-AC1的启动子区域介导生长素诱导。发现在启动子区域下游的序列以与生长素处理无关的方式限制mRNA的积累。 SAUR-AC1的编码区和3'非翻译区(UTR)均独立地对此限制做出了贡献。在四环素抑制性Top10启动子的控制下,使用嵌合基因分析了对mRNA稳定性的影响。四环素处理后的mRNA半衰期分析表明,SAUR-AC1编码区不包含降低mRNA稳定性的元素。相反,发现3'UTR充当有效的mRNA不稳定性决定因素。这一发现和Top10系统的一般用途应该提供阐明潜在地新颖且对某些不稳定转录本具有特异性的mRNA衰变途径的手段。

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