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Activity of U-snRNA genes with modified placement of promoter elements in transfected protoplasts and stably transformed tobacco.

机译:U-snRNA基因的活性与启动子元件在转染的原生质体和稳定转化的烟草中的修饰位置有关。

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摘要

In higher plants the promoter elements of pol II- and pol III-transcribed U-snRNA genes are identical, comprising a -30 TATA box and an upstream sequence element, USE. The USE and TATA are centred approximately four and three helical DNA turns apart in pol II and pol III genes, respectively, and it is this difference in the element spacing that determines the RNA polymerase specificity of the gene. In this study we have analyzed the effect of spacing mutations on activity of Arabidopsis U2 and U6 genes in transfected protoplasts of Nicotiana plumbaginifolia and in stably transformed tobacco. In the pol III-transcribed U6 gene the insertions and deletions of either odd or even numbers of half helical turns completely inactivate transcription in transfected protoplasts, consistent with the high conservation of the element spacing found in all plant U-snRNA genes. Surprisingly, while insertions of 50 base pairs (bp) or more into the spacer of the pol II-specific U2 gene inactivate transcription, a deletion of 5 bp or insertions of as much as 20 bp decrease transcription by only 40 to 70%. This relaxed requirement for the conserved element spacing is only seen in transfected protoplasts since the same mutant U2 genes are not transcribed in stably transformed tobacco when transcription takes place from the chromosome. The results provide some clues about possible factor interactions at the promoters of plant U-snRNA genes and also offer an example of major differences in transcription between transiently and stably transformed cells.
机译:在高等植物中,pol II和pol III转录的U-snRNA基因的启动子元件是相同的,包括-30个TATA盒和一个上游序列元件USE。 USE和TATA在pol II和pol III基因中分别居中大约四个和三个螺旋DNA中心,正是这种元素间距的差异决定了该基因的RNA聚合酶特异性。在这项研究中,我们已经分析了间隔突变对转染了烟草的原生质体和稳定转化的烟草中拟南芥U2和U6基因活性的影响。在pol III转录的U6基因中,奇数或偶数个半螺旋匝的插入和缺失完全失活了转染的原生质体中的转录,这与所有植物U-snRNA基因中元素间隔的高度保守性相符。出人意料的是,在pol II特异性U2基因的间隔区中插入50个碱基对(bp)或更多时,失活转录,而缺失5 bp或插入多达20 bp时,转录仅降低40%至70%。仅在转染的原生质体中才能看到对保守的元素间隔的这种宽松要求,因为当从染色体进行转录时,相同的突变U2基因不会在稳定转化的烟草中转录。结果提供了一些有关植物U-snRNA基因启动子上可能的因子相互作用的线索,也提供了瞬时和稳定转化的细胞之间转录差异的主要例子。

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