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Insertion of Mu1 elements in the first intron of the Adh1-S gene of maize results in novel RNA processing events.

机译:Mu1元素插入玉米Adh1-S基因的第一个内含子会导致新的RNA加工事件。

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摘要

Maize transposable elements, when inserted in or near genes, alter expression by several transcriptional and post-transcriptional mechanisms. Three independent, unstable insertions of the transposable element Mutator (Mu) into the first intron of the Alcohol dehydrogenase-1 (Adh1) gene have been shown to decrease expression [Strommer et al. (1982). Nature 300, 542-544]. We have developed an approach to elucidate the underlying molecular mechanisms responsible for the mutant phenotypes. Mu1 elements were inserted into Adh1-S intron 1 in vitro to create plasmid facsimiles of the mutant alleles. The Mu1 element was also inserted at novel positions within intron 1 to create new mutations. The Mu1/intron constructions were placed between the Adh1-S promoter/exon 1 segment and a reporter gene (firefly luciferase or beta-glucuronidase), and these chimeric gene constructs were tested in transient assays in maize protoplasts. When compared with the appropriate control, the Mu1 insertions decreased reporter gene expression to levels approximating the alcohol dehydrogenase enzyme activities observed for the Adh1-S mutants in vivo. The Mu1 insertions also showed a polarity effect with luciferase expression increasing as the insertions were placed nearer the 3' splice junction. In addition, Mu1 insertions within a different intron, actin intron 3, also significantly reduced luciferase expression, indicating that Mu1 insertions within introns are likely to diminish expression in many genes. The presence of the Mu1 sequences was correlated with decreased levels of steady-state luciferase transcript. Deletion analysis of the Mu1 element and RNase mapping indicate that the transposable element contains RNA processing signals in its central region that are largely responsible for the decrease in expression.
机译:玉米转座因子插入基因中或附近时,会通过几种转录和转录后机制改变表达。转座因子突变体(Mu)在酒精脱氢酶1(Adh1)基因的第一个内含子中的三个独立的不稳定插入已显示会降低表达[Strommer等。 (1982)。 Nature 300,542-544]。我们已经开发出一种方法来阐明负责突变表型的潜在分子机制。将Mu1元件体外插入Adh1-S内含子1中,以创建突变等位基因的质粒fascimiles。 Mu1元件也插入内含子1的新位置以产生新的突变。将Mu1 /内含子构建体置于Adh1-S启动子/外显子1片段与报道基因(萤火虫荧光素酶或β-葡萄糖醛酸苷酶)之间,并在玉米原生质体中通过瞬时测定法测试了这些嵌合基因构建体。当与适当的控件进行比较时,Mu1插入将报告基因的表达降低到与体内Adh1-S突变体观察到的醇脱氢酶活性近似的水平。 Mu1插入物还显示出极性效应,荧光素酶表达随着插入物靠近3'剪接点的增加而增加。另外,在不同内含子肌动蛋白内含子3中的Mu1插入也显着降低了萤光素酶的表达,这表明内含子中的Mu1插入可能会减少许多基因的表达。 Mu1序列的存在与稳态荧光素酶转录物水平的降低有关。 Mu1元素和RNase映射的缺失分析表明,转座因子在其中央区域包含RNA处理信号,这主要是造成表达下降的原因。

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